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Articles 511 - 540 of 606

Full-Text Articles in Medical Cell Biology

The Ep300/Tp53 Pathway, A Suppressor Of The Hippo And Canonical Wnt Pathways, Is Activated In Human Hearts With Arrhythmogenic Cardiomyopathy In The Absence Of Overt Heart Failure, Leila Rouhi, Siyang Fan, Sirisha M Cheedipudi, Aitana Braza-Boïls, Maria Sabater Molina, Yan Yao, Matthew J Robertson, Cristian Coarfa, Juan R Gimeno, Pilar Molina, Priyatansh Gurha, Esther Zorio, Ali J Marian May 2022

The Ep300/Tp53 Pathway, A Suppressor Of The Hippo And Canonical Wnt Pathways, Is Activated In Human Hearts With Arrhythmogenic Cardiomyopathy In The Absence Of Overt Heart Failure, Leila Rouhi, Siyang Fan, Sirisha M Cheedipudi, Aitana Braza-Boïls, Maria Sabater Molina, Yan Yao, Matthew J Robertson, Cristian Coarfa, Juan R Gimeno, Pilar Molina, Priyatansh Gurha, Esther Zorio, Ali J Marian

Faculty, Staff and Students Publications

AIMS: Arrhythmogenic cardiomyopathy (ACM) is a primary myocardial disease that typically manifests with cardiac arrhythmias, progressive heart failure, and sudden cardiac death (SCD). ACM is mainly caused by mutations in genes encoding desmosome proteins. Desmosomes are cell-cell adhesion structures and hubs for mechanosensing and mechanotransduction. The objective was to identify the dysregulated molecular and biological pathways in human ACM in the absence of overt heart failure.

METHODS AND RESULTS: Transcriptomes in the right ventricular endomyocardial biopsy samples from three independent individuals carrying truncating mutations in the DSP gene and five control samples were analysed by RNA-Seq (discovery group). These cases …


Intraovarian, Isoform-Specific Transcriptional Roles Of Progesterone Receptor In Ovulation, Kirsten M Smith, Doan T Dinh, Lisa K Akison, Matilda Nicholls, Kylie R Dunning, Atsushi Morimoto, John P Lydon, Darryl L Russell, Rebecca L Robker May 2022

Intraovarian, Isoform-Specific Transcriptional Roles Of Progesterone Receptor In Ovulation, Kirsten M Smith, Doan T Dinh, Lisa K Akison, Matilda Nicholls, Kylie R Dunning, Atsushi Morimoto, John P Lydon, Darryl L Russell, Rebecca L Robker

Faculty, Staff and Students Publications

Progesterone receptor (PGR) activity is obligatory for mammalian ovulation; however, there is no established direct functional pathway explaining how progesterone receptor completely and specifically regulates oocyte release. This study examined the overarching cell- and isoform-specific effects of the PGR within each cellular compartment of the ovary, using mice null for the PGR (PRKO), as well as isoform-specific null mice. The PGR was expressed in ovarian granulosa and stromal cells and although PRKO ovaries showed no visible histological changes in preovulatory ovarian morphology, follicle rupture did not occur. Reciprocal ovarian transplant experiments established the necessity of ovarian PGR expression for ovulation. …


Phgdh Heterogeneity Potentiates Cancer Cell Dissemination And Metastasis, Matteo Rossi, Patricia Altea-Manzano, Margherita Demicco, Ginevra Doglioni, Laura Bornes, Marina Fukano, Anke Vandekeere, Alejandro M Cuadros, Juan Fernández-García, Carla Riera-Domingo, Cristina Jauset, Mélanie Planque, H Furkan Alkan, David Nittner, Dongmei Zuo, Lindsay A Broadfield, Sweta Parik, Antonino Alejandro Pane, Francesca Rizzollo, Gianmarco Rinaldi, Tao Zhang, Shao Thing Teoh, Arin B Aurora, Panagiotis Karras, Ines Vermeire, Dorien Broekaert, Joke Van Elsen, Maximilian M L Knott, Martin F Orth, Sofie Demeyer, Guy Eelen, Lacey E Dobrolecki, Ayse Bassez, Thomas Van Brussel, Karl Sotlar, Michael T Lewis, Harald Bartsch, Manfred Wuhrer, Peter Van Veelen, Peter Carmeliet, Jan Cools, Sean J Morrison, Jean-Christophe Marine, Diether Lambrechts, Massimiliano Mazzone, Gregory J Hannon, Sophia Y Lunt, Thomas G P Grünewald, Morag Park, Jacco Van Rheenen, Sarah-Maria Fendt May 2022

Phgdh Heterogeneity Potentiates Cancer Cell Dissemination And Metastasis, Matteo Rossi, Patricia Altea-Manzano, Margherita Demicco, Ginevra Doglioni, Laura Bornes, Marina Fukano, Anke Vandekeere, Alejandro M Cuadros, Juan Fernández-García, Carla Riera-Domingo, Cristina Jauset, Mélanie Planque, H Furkan Alkan, David Nittner, Dongmei Zuo, Lindsay A Broadfield, Sweta Parik, Antonino Alejandro Pane, Francesca Rizzollo, Gianmarco Rinaldi, Tao Zhang, Shao Thing Teoh, Arin B Aurora, Panagiotis Karras, Ines Vermeire, Dorien Broekaert, Joke Van Elsen, Maximilian M L Knott, Martin F Orth, Sofie Demeyer, Guy Eelen, Lacey E Dobrolecki, Ayse Bassez, Thomas Van Brussel, Karl Sotlar, Michael T Lewis, Harald Bartsch, Manfred Wuhrer, Peter Van Veelen, Peter Carmeliet, Jan Cools, Sean J Morrison, Jean-Christophe Marine, Diether Lambrechts, Massimiliano Mazzone, Gregory J Hannon, Sophia Y Lunt, Thomas G P Grünewald, Morag Park, Jacco Van Rheenen, Sarah-Maria Fendt

Faculty, Staff and Students Publications

Cancer metastasis requires the transient activation of cellular programs enabling dissemination and seeding in distant organs1. Genetic, transcriptional and translational heterogeneity contributes to this dynamic process2,3. Metabolic heterogeneity has also been observed4, yet its role in cancer progression is less explored. Here, we discover that loss of phosphoglycerate dehydrogenase (PHGDH) potentiates metastatic dissemination. Specifically, we find that heterogeneous or low PHGDH expression in primary tumors of breast cancer patients is associated with decreased metastasis free survival time. In mice, circulating tumor cells and early metastatic lesions are enriched with PHGDH low cancer …


The Disordered N-Terminal Domain Of Dnmt3a Recognizes H2ak119ub And Is Required For Postnatal Development, Tianpeng Gu, Dapeng Hao, Junsung Woo, Teng-Wei Huang, Lei Guo, Xueqiu Lin, Anna G Guzman, Ayala Tovy, Carina Rosas, Mira Jeong, Yubin Zhou, Benjamin Deneen, Yun Huang, Wei Li, Margaret A Goodell May 2022

The Disordered N-Terminal Domain Of Dnmt3a Recognizes H2ak119ub And Is Required For Postnatal Development, Tianpeng Gu, Dapeng Hao, Junsung Woo, Teng-Wei Huang, Lei Guo, Xueqiu Lin, Anna G Guzman, Ayala Tovy, Carina Rosas, Mira Jeong, Yubin Zhou, Benjamin Deneen, Yun Huang, Wei Li, Margaret A Goodell

Faculty, Staff and Students Publications

DNA methyltransferase 3a (DNMT3A) plays a crucial role during mammalian development. Two isoforms of DNMT3A are differentially expressed from stem cells to somatic tissues, but their individual functions remain largely uncharacterized. Here we report that the long isoform DNMT3A1, but not the short DNMT3A2, is essential for mouse postnatal development. DNMT3A1 binds to and regulates bivalent neurodevelopmental genes in the brain. Strikingly, Dnmt3a1 knockout perinatal lethality could be partially rescued by DNMT3A1 restoration in the nervous system. We further show that the intrinsically disordered N terminus of DNMT3A1 is required for normal development and DNA methylation at DNMT3A1-enriched regions. Mechanistically, …


Spata7 Is Required For Maintenance Of The Retinal Connecting Cilium, Jiaxiong Lu, Kaitlyn Xiong, Xinye Qian, Jongsu Choi, Yoon-Kyung Shim, Jacob Burnett, Graeme Mardon, Rui Chen Apr 2022

Spata7 Is Required For Maintenance Of The Retinal Connecting Cilium, Jiaxiong Lu, Kaitlyn Xiong, Xinye Qian, Jongsu Choi, Yoon-Kyung Shim, Jacob Burnett, Graeme Mardon, Rui Chen

Faculty, Staff and Students Publications

SPATA7, an early onset LCA3 retinal disease gene, encodes a putative scaffold protein that is essential for the proper assembly of the connecting cilium (CC) complex in photoreceptors. Previous studies have shown that SPATA7 interacts with other photoreceptor-specific ciliary proteins, such as RPGR and RPGRIP1, and maintains the integrity of CC integrity. However, although it is known that Spata7 is required for early formation of the CC, it is unclear if Spata7 is also required for the maintenance of the CC. To investigate Spata7 function in the retina at the adult stage, loss of function was induced in the …


A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Georgia Pitsava, Marcia L Feldkamp, Nathan Pankratz, John Lane, Denise M Kay, Kristin M Conway, Charlotte Hobbs, Gary M Shaw, Jennita Reefhuis, Mary M Jenkins, Lynn M Almli, Cynthia Moore, Martha Werler, Marilyn L Browne, Chris Cunniff, Andrew F Olshan, Faith Pangilinan, Lawrence C Brody, Robert J Sicko, Richard H Finnell, Michael J Bamshad, Daniel Mcgoldrick, Deborah A Nickerson, James C Mullikin, Paul A Romitti, James L Mills Apr 2022

A Non-Coding Insertional Mutation Of Grhl2 Causes Gene Over-Expression And Multiple Structural Anomalies Including Cleft Palate, Spina Bifida And Encephalocele, Georgia Pitsava, Marcia L Feldkamp, Nathan Pankratz, John Lane, Denise M Kay, Kristin M Conway, Charlotte Hobbs, Gary M Shaw, Jennita Reefhuis, Mary M Jenkins, Lynn M Almli, Cynthia Moore, Martha Werler, Marilyn L Browne, Chris Cunniff, Andrew F Olshan, Faith Pangilinan, Lawrence C Brody, Robert J Sicko, Richard H Finnell, Michael J Bamshad, Daniel Mcgoldrick, Deborah A Nickerson, James C Mullikin, Paul A Romitti, James L Mills

Faculty, Staff and Students Publications

BACKGROUND: Sacral agenesis (SA) consists of partial or complete absence of the caudal end of the spine and often presents with additional birth defects. Several studies have examined gene variants for syndromic forms of SA, but only one has examined exomes of children with non-syndromic SA.

METHODS: Using buccal cell specimens from families of children with non-syndromic SA, exomes of 28 child-parent trios (eight with and 20 without a maternal diagnosis of pregestational diabetes) and two child-father duos (neither with diagnosis of maternal pregestational diabetes) were exome sequenced.

RESULTS: Three children had heterozygous missense variants in ID1 (Inhibitor of DNA …


Perturbed Hematopoiesis In Individuals With Germline Dnmt3a Overgrowth Tatton-Brown-Rahman Syndrome, Ayala Tovy, Carina Rosas, Amos S Gaikwad, Geraldo Medrano, Linda Zhang, Jaime M Reyes, Yung-Hsin Huang, Tastuhiko Arakawa, Kristen Kurtz, Shannon E Conneely, Anna G Guzman, Rogelio Aguilar, Anne Gao, Chun-Wei Chen, Jean J Kim, Melissa T Carter, Amaia Lasa-Aranzasti, Irene Valenzuela, Lionel Van Maldergem, Lorenzo Brunetti, M John Hicks, Andrea N Marcogliese, Margaret A Goodell, Rachel E Rau Apr 2022

Perturbed Hematopoiesis In Individuals With Germline Dnmt3a Overgrowth Tatton-Brown-Rahman Syndrome, Ayala Tovy, Carina Rosas, Amos S Gaikwad, Geraldo Medrano, Linda Zhang, Jaime M Reyes, Yung-Hsin Huang, Tastuhiko Arakawa, Kristen Kurtz, Shannon E Conneely, Anna G Guzman, Rogelio Aguilar, Anne Gao, Chun-Wei Chen, Jean J Kim, Melissa T Carter, Amaia Lasa-Aranzasti, Irene Valenzuela, Lionel Van Maldergem, Lorenzo Brunetti, M John Hicks, Andrea N Marcogliese, Margaret A Goodell, Rachel E Rau

Faculty, Staff and Students Publications

Tatton-Brown-Rahman syndrome (TBRS) is an overgrowth disorder caused by germline heterozygous mutations in the DNA methyltransferase DNMT3A. DNMT3A is a critical regulator of hematopoietic stem cell (HSC) differentiation and somatic DNMT3A mutations are frequent in hematologic malignancies and clonal hematopoiesis. Yet, the impact of constitutive DNMT3A mutation on hematopoiesis in TBRS is undefined. In order to establish how constitutive mutation of DNMT3A impacts blood development in TBRS we gathered clinical data and analyzed blood parameters in 18 individuals with TBRS. We also determined the distribution of major peripheral blood cell lineages by flow cytometric analyses. Our analyses revealed non-anemic macrocytosis, …


Development And Characterization Of Anti-Galectin-9 Antibodies That Protect T Cells From Galectin-9-Induced Cell Death, Riyao Yang, Linlin Sun, Ching-Fei Li, Yu-Han Wang, Weiya Xia, Boning Liu, Yu-Yi Chu, Laura Bover, Long Vien, Mien-Chie Hung Apr 2022

Development And Characterization Of Anti-Galectin-9 Antibodies That Protect T Cells From Galectin-9-Induced Cell Death, Riyao Yang, Linlin Sun, Ching-Fei Li, Yu-Han Wang, Weiya Xia, Boning Liu, Yu-Yi Chu, Laura Bover, Long Vien, Mien-Chie Hung

Faculty, Staff and Student Publications

Antibodies that target immune checkpoint proteins such as programmed cell death protein 1, programmed death ligand 1, and cytotoxic T-lymphocyte-associated antigen 4 in human cancers have achieved impressive clinical success; however, a significant proportion of patients fail to respond to these treatments. Galectin-9 (Gal-9), a β-galactoside-binding protein, has been shown to induce T-cell death and facilitate immunosuppression in the tumor microenvironment by binding to immunomodulatory receptors such as T-cell immunoglobulin and mucin domain-containing molecule 3 and the innate immune receptor dectin-1, suggesting that it may have potential as a target for cancer immunotherapy. Here, we report the development of two …


Cistrome And Transcriptome Analysis Identifies Unique Androgen Receptor (Ar) And Ar-V7 Splice Variant Chromatin Binding And Transcriptional Activities, Paul Basil, Matthew J Robertson, William E Bingman, Amit K Dash, William C Krause, Ayesha A Shafi, Badrajee Piyarathna, Cristian Coarfa, Nancy L Weigel Mar 2022

Cistrome And Transcriptome Analysis Identifies Unique Androgen Receptor (Ar) And Ar-V7 Splice Variant Chromatin Binding And Transcriptional Activities, Paul Basil, Matthew J Robertson, William E Bingman, Amit K Dash, William C Krause, Ayesha A Shafi, Badrajee Piyarathna, Cristian Coarfa, Nancy L Weigel

Faculty, Staff and Students Publications

The constitutively active androgen receptor (AR) splice variant, AR-V7, plays an important role in resistance to androgen deprivation therapy in castration resistant prostate cancer (CRPC). Studies seeking to determine whether AR-V7 is a partial mimic of the AR, or also has unique activities, and whether the AR-V7 cistrome contains unique binding sites have yielded conflicting results. One limitation in many studies has been the low level of AR variant compared to AR. Here, LNCaP and VCaP cell lines in which AR-V7 expression can be induced to match the level of AR, were used to compare the activities of AR and …


Defining The Mammalian Coactivation Of Hepatic 12-H Clock And Lipid Metabolism, Huan Meng, Naomi M Gonzales, Sung Yun Jung, Yue Lu, Nagireddy Putluri, Bokai Zhu, Clifford C Dacso, David M Lonard, Bert W O'Malley Mar 2022

Defining The Mammalian Coactivation Of Hepatic 12-H Clock And Lipid Metabolism, Huan Meng, Naomi M Gonzales, Sung Yun Jung, Yue Lu, Nagireddy Putluri, Bokai Zhu, Clifford C Dacso, David M Lonard, Bert W O'Malley

Faculty, Staff and Students Publications

The 12-h clock coordinates lipid homeostasis, energy metabolism, and stress rhythms via the transcriptional regulator XBP1. However, the biochemical and physiological bases for integrated control of the 12-h clock and diverse metabolic pathways remain unclear. Here, we show that steroid receptor coactivator SRC-3 coactivates XBP1 transcription and regulates hepatic 12-h cistrome and gene rhythmicity. Mice lacking SRC-3 show abnormal 12-h rhythms in hepatic transcription, metabolic functions, systemic energetics, and rate-limiting lipid metabolic processes, including triglyceride, phospholipid, and cardiolipin pathways. Notably, 12-h clock coactivation is not only preserved, with its cistromic activation priming ahead of the zeitgeber cue of light, but …


Ezh2 And Endometrial Cancer Development: Insights From A Mouse Model, Xin Fang, Nan Ni, Xiaofang Wang, Yanan Tian, Ivan Ivanov, Monique Rijnkels, Kayla J Bayless, John P Lydon, Qinglei Li Mar 2022

Ezh2 And Endometrial Cancer Development: Insights From A Mouse Model, Xin Fang, Nan Ni, Xiaofang Wang, Yanan Tian, Ivan Ivanov, Monique Rijnkels, Kayla J Bayless, John P Lydon, Qinglei Li

Faculty, Staff and Students Publications

Enhancer of zeste homolog 2 (EZH2), a core component of polycomb repressive complex 2, plays an important role in cancer development. As both oncogenic and tumor suppressive functions of EZH2 have been documented in the literature, the objective of this study is to determine the impact of Ezh2 deletion on the development and progression of endometrial cancer induced by inactivation of phosphatase and tensin homolog (PTEN), a tumor suppressor gene frequently dysregulated in endometrial cancer patients. To this end, we created mice harboring uterine deletion of both Ezh2 and Pten using Cre recombinase driven by the progesterone receptor …


Increased Dna Methylation, Cellular Senescence And Premature Epigenetic Aging In Guinea Pigs And Humans With Tuberculosis, Carly A Bobak, Abhimanyu, Harini Natarajan, Tanmay Gandhi, Sandra L Grimm, Tomoki Nishiguchi, Kent Koster, Santiago Carrero Longlax, Qiniso Dlamini, Jacquiline Kahari, Godwin Mtetwa, Jeffrey D Cirillo, James O'Malley, Jane E Hill, Cristian Coarfa, Andrew R Dinardo Mar 2022

Increased Dna Methylation, Cellular Senescence And Premature Epigenetic Aging In Guinea Pigs And Humans With Tuberculosis, Carly A Bobak, Abhimanyu, Harini Natarajan, Tanmay Gandhi, Sandra L Grimm, Tomoki Nishiguchi, Kent Koster, Santiago Carrero Longlax, Qiniso Dlamini, Jacquiline Kahari, Godwin Mtetwa, Jeffrey D Cirillo, James O'Malley, Jane E Hill, Cristian Coarfa, Andrew R Dinardo

Faculty, Staff and Students Publications

Background: Tuberculosis (TB) is the archetypical chronic infection, with patients having months of symptoms before diagnosis. In the two years after successful therapy, survivors of TB have a three-fold increased risk of death.

Methods: Guinea pigs were infected with Mycobacterium tuberculosis (Mtb) for 45 days, followed by RRBS DNA methylation analysis. In humans, network analysis of differentially expressed genes across three TB cohorts were visualized at the pathway-level. Serum levels of inflammation were measured by ELISA. Horvath (DNA methylation) and RNA-seq biological clocks were used to investigate shifts in chronological age among humans with TB.

Results: Guinea pigs …


Interplay Between Soluble Cd74 And Macrophage-Migration Inhibitory Factor Drives Tumor Growth And Influences Patient Survival In Melanoma, Yasunari Fukuda, Matias A Bustos, Sung-Nam Cho, Jason Roszik, Suyeon Ryu, Victor M Lopez, Jared K Burks, Jeffrey E Lee, Elizabeth A Grimm, Dave S B Hoon, Suhendan Ekmekcioglu Feb 2022

Interplay Between Soluble Cd74 And Macrophage-Migration Inhibitory Factor Drives Tumor Growth And Influences Patient Survival In Melanoma, Yasunari Fukuda, Matias A Bustos, Sung-Nam Cho, Jason Roszik, Suyeon Ryu, Victor M Lopez, Jared K Burks, Jeffrey E Lee, Elizabeth A Grimm, Dave S B Hoon, Suhendan Ekmekcioglu

Faculty, Staff and Student Publications

Soluble forms of receptors play distinctive roles in modulating signal-transduction pathways. Soluble CD74 (sCD74) has been identified in sera of inflammatory diseases and implicated in their pathophysiology; however, few relevant data are available in the context of cancer. Here we assessed the composition and production mechanisms, as well as the clinical significance and biological properties, of sCD74 in melanoma. Serum sCD74 levels were significantly elevated in advanced melanoma patients compared with normal healthy donors, and the high ratio of sCD74 to macrophage-migration inhibitory factor (MIF) conferred significant predictive value for prolonged survival in these patients (p = 0.0035). Secretion of …


Quality Control For Single Cell Imaging Analytics Using Endocrine Disruptor-Induced Changes In Estrogen Receptor Expression, Fabio Stossi, Pankaj K Singh, Ragini M Mistry, Hannah L Johnson, Radhika D Dandekar, Maureen G Mancini, Adam T Szafran, Arvind U Rao, Michael A Mancini Feb 2022

Quality Control For Single Cell Imaging Analytics Using Endocrine Disruptor-Induced Changes In Estrogen Receptor Expression, Fabio Stossi, Pankaj K Singh, Ragini M Mistry, Hannah L Johnson, Radhika D Dandekar, Maureen G Mancini, Adam T Szafran, Arvind U Rao, Michael A Mancini

Faculty, Staff and Students Publications

BACKGROUND: Diverse toxicants and mixtures that affect hormone responsive cells [endocrine disrupting chemicals (EDCs)] are highly pervasive in the environment and are directly linked to human disease. They often target the nuclear receptor family of transcription factors modulating their levels and activity. Many high-throughput assays have been developed to query such toxicants; however, single-cell analysis of EDC effects on endogenous receptors has been missing, in part due to the lack of quality control metrics to reproducibly measure cell-to-cell variability in responses.

OBJECTIVE: We began by developing single-cell imaging and informatic workflows to query whether the single cell distribution of the …


Δnp63 Regulates A Common Landscape Of Enhancer Associated Genes In Non-Small Cell Lung Cancer, Marco Napoli, Sarah J Wu, Bethanie L Gore, Hussein A Abbas, Kyubum Lee, Rahul Checker, Shilpa Dhar, Kimal Rajapakshe, Aik Choon Tan, Min Gyu Lee, Cristian Coarfa, Elsa R Flores Feb 2022

Δnp63 Regulates A Common Landscape Of Enhancer Associated Genes In Non-Small Cell Lung Cancer, Marco Napoli, Sarah J Wu, Bethanie L Gore, Hussein A Abbas, Kyubum Lee, Rahul Checker, Shilpa Dhar, Kimal Rajapakshe, Aik Choon Tan, Min Gyu Lee, Cristian Coarfa, Elsa R Flores

Faculty, Staff and Students Publications

Distinct lung stem cells give rise to lung adenocarcinoma (LUAD) and squamous cell carcinoma (LUSC). ΔNp63, the p53 family member and p63 isoform, guides the maturation of these stem cells through the regulation of their self-renewal and terminal differentiation; however, the underlying mechanistic role regulated by ∆Np63 in lung cancer development has remained elusive. By utilizing a ΔNp63-specific conditional knockout mouse model and xenograft models of LUAD and LUSC, we found that ∆Np63 promotes non-small cell lung cancer by maintaining the lung stem cells necessary for lung cancer cell initiation and progression in quiescence. ChIP-seq analysis of lung basal cells, …


K-Ras And P53 Mouse Model With Molecular Characteristics Of Human Rhabdomyosarcoma And Translational Applications, Kengo Nakahata, Brian W Simons, Enrico Pozzo, Ryan Shuck, Lyazat Kurenbekova, Zachary Prudowsky, Kshiti Dholakia, Cristian Coarfa, Tajhal D Patel, Lawrence A Donehower, Jason T Yustein Feb 2022

K-Ras And P53 Mouse Model With Molecular Characteristics Of Human Rhabdomyosarcoma And Translational Applications, Kengo Nakahata, Brian W Simons, Enrico Pozzo, Ryan Shuck, Lyazat Kurenbekova, Zachary Prudowsky, Kshiti Dholakia, Cristian Coarfa, Tajhal D Patel, Lawrence A Donehower, Jason T Yustein

Faculty, Staff and Students Publications

Rhabdomyosarcoma (RMS) is the most common soft tissue sarcoma in children, with overall long-term survival rates of ∼65-70%. Thus, additional molecular insights and representative models are critical for identifying and evaluating new treatment modalities. Using MyoD-Cre-mediated introduction of mutant K-RasG12D and perturbations in p53, we developed a novel genetically engineered mouse model (GEMM) for RMS. The anatomic sites of primary RMS development recapitulated human disease, including tumors in the head, neck, extremities and abdomen. We confirmed RMS histology and diagnosis through Hematoxylin and Eosin staining, and positive immunohistochemical staining for desmin, myogenin, and phosphotungstic acid-Hematoxylin. Cell lines from GEMM tumors …


A Human Breast Cancer-Derived Xenograft And Organoid Platform For Drug Discovery And Precision Oncology, Katrin P Guillen, Maihi Fujita, Andrew J Butterfield, Sandra D Scherer, Matthew H Bailey, Zhengtao Chu, Yoko S Derose, Ling Zhao, Emilio Cortes-Sanchez, Chieh-Hsiang Yang, Jennifer Toner, Guoying Wang, Yi Qiao, Xiaomeng Huang, Jeffery A Greenland, Jeffery M Vahrenkamp, David H Lum, Rachel E Factor, Edward W Nelson, Cindy B Matsen, Jane M Poretta, Regina Rosenthal, Anna C Beck, Saundra S Buys, Christos Vaklavas, John H Ward, Randy L Jensen, Kevin B Jones, Zheqi Li, Steffi Oesterreich, Lacey E Dobrolecki, Satya S Pathi, Xing Yi Woo, Kristofer C Berrett, Mark E Wadsworth, Jeffrey H Chuang, Michael T Lewis, Gabor T Marth, Jason Gertz, Katherine E Varley, Bryan E Welm, Alana L Welm Feb 2022

A Human Breast Cancer-Derived Xenograft And Organoid Platform For Drug Discovery And Precision Oncology, Katrin P Guillen, Maihi Fujita, Andrew J Butterfield, Sandra D Scherer, Matthew H Bailey, Zhengtao Chu, Yoko S Derose, Ling Zhao, Emilio Cortes-Sanchez, Chieh-Hsiang Yang, Jennifer Toner, Guoying Wang, Yi Qiao, Xiaomeng Huang, Jeffery A Greenland, Jeffery M Vahrenkamp, David H Lum, Rachel E Factor, Edward W Nelson, Cindy B Matsen, Jane M Poretta, Regina Rosenthal, Anna C Beck, Saundra S Buys, Christos Vaklavas, John H Ward, Randy L Jensen, Kevin B Jones, Zheqi Li, Steffi Oesterreich, Lacey E Dobrolecki, Satya S Pathi, Xing Yi Woo, Kristofer C Berrett, Mark E Wadsworth, Jeffrey H Chuang, Michael T Lewis, Gabor T Marth, Jason Gertz, Katherine E Varley, Bryan E Welm, Alana L Welm

Faculty, Staff and Students Publications

Microscaled proteogenomics was deployed to probe the molecular basis for differential response to neoadjuvant carboplatin and docetaxel combination chemotherapy for triple-negative breast cancer (TNBC). Proteomic analyses of pretreatment patient biopsies uniquely revealed metabolic pathways, including oxidative phosphorylation, adipogenesis, and fatty acid metabolism, that were associated with resistance. Both proteomics and transcriptomics revealed that sensitivity was marked by elevation of DNA repair, E2F targets, G2–M checkpoint, interferon-gamma signaling, and immune-checkpoint components. Proteogenomic analyses of somatic copy-number aberrations identified a resistance-associated 19q13.31–33 deletion where LIG1, POLD1, and XRCC1 are located. In orthogonal datasets, LIG1 (DNA ligase I) gene …


Maternal Lactobacillus Reuteri Supplementation Shifts The Intestinal Microbiome In Mice And Provides Protection From Experimental Colitis In Female Offspring, Mahesh Krishna, Melinda Engevik, Karen Queliza, Savini Britto, Rajesh Shah, Wenly Ruan, Hongtao Wang, James Versalovic, Richard Kellermayer Feb 2022

Maternal Lactobacillus Reuteri Supplementation Shifts The Intestinal Microbiome In Mice And Provides Protection From Experimental Colitis In Female Offspring, Mahesh Krishna, Melinda Engevik, Karen Queliza, Savini Britto, Rajesh Shah, Wenly Ruan, Hongtao Wang, James Versalovic, Richard Kellermayer

Faculty, Staff and Students Publications

The purpose of our experiment was to explore how stochastic (inter-individual variation) gut microbiome composition may link to inflammatory bowel disease (IBD) susceptibility and guide the development of a perinatal preventative probiotic. Dextran sodium sulfate (DSS) was introduced to C57BL/BJ mice to induce acute colitis as a model of IBD. Potentially protective bacteria were identified using a discovery-validation cohort approach toward stochastic DSS susceptibility.


Isa101 And Nivolumab For Hpv-16+ Cancer: Updated Clinical Efficacy And Immune Correlates Of Response, Luana Guimaraes De Sousa, Kimal Rajapakshe, Jaime Rodriguez Canales, Renee L Chin, Lei Feng, Qi Wang, Tomas Z Barrese, Erminia Massarelli, William William, Faye M Johnson, Renata Ferrarotto, Ignacio Wistuba, Cristian Coarfa, Jack Lee, Jing Wang, Cornelis J M Melief, Michael A Curran, Bonnie S Glisson Feb 2022

Isa101 And Nivolumab For Hpv-16+ Cancer: Updated Clinical Efficacy And Immune Correlates Of Response, Luana Guimaraes De Sousa, Kimal Rajapakshe, Jaime Rodriguez Canales, Renee L Chin, Lei Feng, Qi Wang, Tomas Z Barrese, Erminia Massarelli, William William, Faye M Johnson, Renata Ferrarotto, Ignacio Wistuba, Cristian Coarfa, Jack Lee, Jing Wang, Cornelis J M Melief, Michael A Curran, Bonnie S Glisson

Faculty, Staff and Students Publications

BACKGROUND: The combination of ISA101, a human papilloma virus (HPV) 16 peptide vaccine, and nivolumab showed a promising response rate of 33% in patients with incurable HPV-16+ cancer. Here we report long-term clinical outcomes and immune correlates of response.

METHODS: Patients with advanced HPV-16+ cancer and less than two prior regimens for recurrence were enrolled to receive ISA101 (100 µg/peptide) on days 1, 22, and 50 and nivolumab 3 mg/kg every 2 weeks beginning day 8 for up to 1 year. Baseline tumor samples were stained with multiplex immunofluorescence for programmed death-ligand 1 (PD-L1), programmed cell death protein-1 (PD-1), CD3, …


Characterization Of The Copd Alveolar Niche Using Single-Cell Rna Sequencing, Maor Sauler, John E Mcdonough, Taylor S Adams, Neeharika Kothapalli, Thomas Barnthaler, Rhiannon B Werder, Jonas C Schupp, Jessica Nouws, Matthew J Robertson, Cristian Coarfa, Tao Yang, Maurizio Chioccioli, Norihito Omote, Carlos Cosme, Sergio Poli, Ehab A Ayaub, Sarah G Chu, Klaus H Jensen, Jose L Gomez, Clemente J Britto, Micha Sam B Raredon, Laura E Niklason, Andrew A Wilson, Pascal N Timshel, Naftali Kaminski, Ivan O Rosas Jan 2022

Characterization Of The Copd Alveolar Niche Using Single-Cell Rna Sequencing, Maor Sauler, John E Mcdonough, Taylor S Adams, Neeharika Kothapalli, Thomas Barnthaler, Rhiannon B Werder, Jonas C Schupp, Jessica Nouws, Matthew J Robertson, Cristian Coarfa, Tao Yang, Maurizio Chioccioli, Norihito Omote, Carlos Cosme, Sergio Poli, Ehab A Ayaub, Sarah G Chu, Klaus H Jensen, Jose L Gomez, Clemente J Britto, Micha Sam B Raredon, Laura E Niklason, Andrew A Wilson, Pascal N Timshel, Naftali Kaminski, Ivan O Rosas

Faculty, Staff and Students Publications

Chronic obstructive pulmonary disease (COPD) is a leading cause of death worldwide, however our understanding of cell specific mechanisms underlying COPD pathobiology remains incomplete. Here, we analyze single-cell RNA sequencing profiles of explanted lung tissue from subjects with advanced COPD or control lungs, and we validate findings using single-cell RNA sequencing of lungs from mice exposed to 10 months of cigarette smoke, RNA sequencing of isolated human alveolar epithelial cells, functional in vitro models, and in situ hybridization and immunostaining of human lung tissue samples. We identify a subpopulation of alveolar epithelial type II cells with transcriptional evidence for aberrant …


Rspo2 And Rankl Signal Through Lgr4 To Regulate Osteoclastic Premetastatic Niche Formation And Bone Metastasis, Zhiying Yue, Xin Niu, Zengjin Yuan, Qin Qin, Wenhao Jiang, Liang He, Jingduo Gao, Yi Ding, Yanxi Liu, Ziwei Xu, Zhenxi Li, Zhengfeng Yang, Rong Li, Xiwen Xue, Yankun Gao, Fei Yue, Xiang H-F Zhang, Guohong Hu, Yi Wang, Yi Li, Geng Chen, Stefan Siwko, Alison Gartland, Ning Wang, Jianru Xiao, Mingyao Liu, Jian Luo Jan 2022

Rspo2 And Rankl Signal Through Lgr4 To Regulate Osteoclastic Premetastatic Niche Formation And Bone Metastasis, Zhiying Yue, Xin Niu, Zengjin Yuan, Qin Qin, Wenhao Jiang, Liang He, Jingduo Gao, Yi Ding, Yanxi Liu, Ziwei Xu, Zhenxi Li, Zhengfeng Yang, Rong Li, Xiwen Xue, Yankun Gao, Fei Yue, Xiang H-F Zhang, Guohong Hu, Yi Wang, Yi Li, Geng Chen, Stefan Siwko, Alison Gartland, Ning Wang, Jianru Xiao, Mingyao Liu, Jian Luo

Faculty, Staff and Students Publications

Therapeutics targeting osteoclasts are commonly used treatments for bone metastasis; however, whether and how osteoclasts regulate premetastatic niche and bone tropism are largely unknown. In this study, we report that osteoclast precursors (OPs) can function as a premetastatic niche component that facilitates breast cancer (BCa) bone metastasis at early stages. At the molecular level, unbiased GPCR ligand/agonist screening in BCa cells suggested that R-spondin 2 (RSPO2) and RANKL, through interaction with their receptor LGR4, promoted osteoclastic premetastatic niche formation and enhanced BCa bone metastasis. This was achieved by RSPO2/RANKL-LGR4 signal modulating the WNT inhibitor DKK1 through Gαq and β-catenin signaling. …


Genetic Determinants Of Telomere Length From 109,122 Ancestrally Diverse Whole-Genome Sequences In Topmed, Margaret A Taub, Matthew P Conomos, Rebecca Keener, Kruthika R Iyer, Joshua S Weinstock, Lisa R Yanek, John Lane, Tyne W Miller-Fleming, Jennifer A Brody, Laura M Raffield, Caitlin P Mchugh, Deepti Jain, Stephanie M Gogarten, Cecelia A Laurie, Ali Keramati, Marios Arvanitis, Albert V Smith, Benjamin Heavner, Lucas Barwick, Lewis C Becker, Joshua C Bis, John Blangero, Eugene R Bleecker, Esteban G Burchard, Juan C Celedón, Yen Pei C Chang, Brian Custer, Dawood Darbar, Lisa De Las Fuentes, Dawn L Demeo, Barry I Freedman, Melanie E Garrett, Mark T Gladwin, Susan R Heckbert, Bertha A Hidalgo, Marguerite R Irvin, Talat Islam, W Craig Johnson, Stefan Kaab, Lenore Launer, Jiwon Lee, Simin Liu, Arden Moscati, Kari E North, Patricia A Peyser, Nicholas Rafaels, Christine Seidman, Daniel E Weeks, Fayun Wen, Marsha M Wheeler, L Keoki Williams, Ivana V Yang, Wei Zhao, Stella Aslibekyan, Paul L Auer, Donald W Bowden, Brian E Cade, Zhanghua Chen, Michael H Cho, L Adrienne Cupples, Joanne E Curran, Michelle Daya, Ranjan Deka, Celeste Eng, Tasha E Fingerlin, Xiuqing Guo, Lifang Hou, Shih-Jen Hwang, Jill M Johnsen, Eimear E Kenny, Albert M Levin, Chunyu Liu, Ryan L Minster, Take Naseri, Mehdi Nouraie, Muagututi'a Sefuiva Reupena, Ester C Sabino, Jennifer A Smith, Nicholas L Smith, Jessica Lasky Su, James G Taylor, Marilyn J Telen, Hemant K Tiwari, Russell P Tracy, Marquitta J White, Yingze Zhang, Kerri L Wiggins, Scott T Weiss, Ramachandran S Vasan, Kent D Taylor, Moritz F Sinner, Edwin K Silverman, M Benjamin Shoemaker, Wayne H-H Sheu, Frank Sciurba, David A Schwartz, Jerome I Rotter, Daniel Roden, Susan Redline, Benjamin A Raby, Bruce M Psaty, Juan M Peralta, Nicholette D Palmer, Sergei Nekhai, Courtney G Montgomery, Braxton D Mitchell, Deborah A Meyers, Stephen T Mcgarvey, Nhlbi Care Network, Angel Cy Mak, Ruth Jf Loos, Rajesh Kumar, Charles Kooperberg, Barbara A Konkle, Shannon Kelly, Sharon Lr Kardia, Robert Kaplan, Jiang He, Hongsheng Gui, Frank D Gilliland, Bruce D Gelb, Myriam Fornage, Patrick T Ellinor, Mariza De Andrade, Adolfo Correa, Yii-Der Ida Chen, Eric Boerwinkle, Kathleen C Barnes, Allison E Ashley-Koch, Donna K Arnett, Nhlbi Trans-Omics For Precision Medicine (Topmed) Consortium, Topmed Hematology And Hemostasis Working Group, Topmed Structural Variation Working Group, Cathy C Laurie, Goncalo Abecasis, Deborah A Nickerson, James G Wilson, Stephen S Rich, Daniel Levy, Ingo Ruczinski, Abraham Aviv, Thomas W Blackwell, Timothy Thornton, Jeff O'Connell, Nancy J Cox, James A Perry, Mary Armanios, Alexis Battle, Nathan Pankratz, Alexander P Reiner, Rasika A Mathias Jan 2022

Genetic Determinants Of Telomere Length From 109,122 Ancestrally Diverse Whole-Genome Sequences In Topmed, Margaret A Taub, Matthew P Conomos, Rebecca Keener, Kruthika R Iyer, Joshua S Weinstock, Lisa R Yanek, John Lane, Tyne W Miller-Fleming, Jennifer A Brody, Laura M Raffield, Caitlin P Mchugh, Deepti Jain, Stephanie M Gogarten, Cecelia A Laurie, Ali Keramati, Marios Arvanitis, Albert V Smith, Benjamin Heavner, Lucas Barwick, Lewis C Becker, Joshua C Bis, John Blangero, Eugene R Bleecker, Esteban G Burchard, Juan C Celedón, Yen Pei C Chang, Brian Custer, Dawood Darbar, Lisa De Las Fuentes, Dawn L Demeo, Barry I Freedman, Melanie E Garrett, Mark T Gladwin, Susan R Heckbert, Bertha A Hidalgo, Marguerite R Irvin, Talat Islam, W Craig Johnson, Stefan Kaab, Lenore Launer, Jiwon Lee, Simin Liu, Arden Moscati, Kari E North, Patricia A Peyser, Nicholas Rafaels, Christine Seidman, Daniel E Weeks, Fayun Wen, Marsha M Wheeler, L Keoki Williams, Ivana V Yang, Wei Zhao, Stella Aslibekyan, Paul L Auer, Donald W Bowden, Brian E Cade, Zhanghua Chen, Michael H Cho, L Adrienne Cupples, Joanne E Curran, Michelle Daya, Ranjan Deka, Celeste Eng, Tasha E Fingerlin, Xiuqing Guo, Lifang Hou, Shih-Jen Hwang, Jill M Johnsen, Eimear E Kenny, Albert M Levin, Chunyu Liu, Ryan L Minster, Take Naseri, Mehdi Nouraie, Muagututi'a Sefuiva Reupena, Ester C Sabino, Jennifer A Smith, Nicholas L Smith, Jessica Lasky Su, James G Taylor, Marilyn J Telen, Hemant K Tiwari, Russell P Tracy, Marquitta J White, Yingze Zhang, Kerri L Wiggins, Scott T Weiss, Ramachandran S Vasan, Kent D Taylor, Moritz F Sinner, Edwin K Silverman, M Benjamin Shoemaker, Wayne H-H Sheu, Frank Sciurba, David A Schwartz, Jerome I Rotter, Daniel Roden, Susan Redline, Benjamin A Raby, Bruce M Psaty, Juan M Peralta, Nicholette D Palmer, Sergei Nekhai, Courtney G Montgomery, Braxton D Mitchell, Deborah A Meyers, Stephen T Mcgarvey, Nhlbi Care Network, Angel Cy Mak, Ruth Jf Loos, Rajesh Kumar, Charles Kooperberg, Barbara A Konkle, Shannon Kelly, Sharon Lr Kardia, Robert Kaplan, Jiang He, Hongsheng Gui, Frank D Gilliland, Bruce D Gelb, Myriam Fornage, Patrick T Ellinor, Mariza De Andrade, Adolfo Correa, Yii-Der Ida Chen, Eric Boerwinkle, Kathleen C Barnes, Allison E Ashley-Koch, Donna K Arnett, Nhlbi Trans-Omics For Precision Medicine (Topmed) Consortium, Topmed Hematology And Hemostasis Working Group, Topmed Structural Variation Working Group, Cathy C Laurie, Goncalo Abecasis, Deborah A Nickerson, James G Wilson, Stephen S Rich, Daniel Levy, Ingo Ruczinski, Abraham Aviv, Thomas W Blackwell, Timothy Thornton, Jeff O'Connell, Nancy J Cox, James A Perry, Mary Armanios, Alexis Battle, Nathan Pankratz, Alexander P Reiner, Rasika A Mathias

Faculty, Staff and Student Publications

Genetic studies on telomere length are important for understanding age-related diseases. Prior GWAS for leukocyte TL have been limited to European and Asian populations. Here, we report the first sequencing-based association study for TL across ancestrally-diverse individuals (European, African, Asian and Hispanic/Latino) from the NHLBI Trans-Omics for Precision Medicine (TOPMed) program. We used whole genome sequencing (WGS) of whole blood for variant genotype calling and the bioinformatic estimation of telomere length in n=109,122 individuals. We identified 59 sentinel variants (p-value <5×10-9) in 36 loci associated with telomere length, including 20 newly associated loci (13 were replicated in external datasets). There was little evidence of effect size heterogeneity across populations. Fine-mapping at OBFC1 indicated the independent signals colocalized with cell-type specific eQTLs for OBFC1 (STN1). Using a multi-variant gene-based approach, …


The Allergy Mediator Histamine Confers Resistance To Immunotherapy In Cancer Patients Via Activation Of The Macrophage Histamine Receptor H1, Hongzhong Li, Yi Xiao, Qin Li, Jun Yao, Xiangliang Yuan, Yuan Zhang, Xuedong Yin, Yohei Saito, Huihui Fan, Ping Li, Wen-Ling Kuo, Angela Halpin, Don L Gibbons, Hideo Yagita, Zhongming Zhao, Da Pang, Guosheng Ren, Cassian Yee, J Jack Lee, Dihua Yu Jan 2022

The Allergy Mediator Histamine Confers Resistance To Immunotherapy In Cancer Patients Via Activation Of The Macrophage Histamine Receptor H1, Hongzhong Li, Yi Xiao, Qin Li, Jun Yao, Xiangliang Yuan, Yuan Zhang, Xuedong Yin, Yohei Saito, Huihui Fan, Ping Li, Wen-Ling Kuo, Angela Halpin, Don L Gibbons, Hideo Yagita, Zhongming Zhao, Da Pang, Guosheng Ren, Cassian Yee, J Jack Lee, Dihua Yu

Faculty, Staff and Student Publications

Reinvigoration of antitumor immunity remains an unmet challenge. Our retrospective analyses revealed that cancer patients who took antihistamines during immunotherapy treatment had significantly improved survival. We uncovered that histamine and histamine receptor H1 (HRH1) are frequently increased in the tumor microenvironment and induce T cell dysfunction. Mechanistically, HRH1-activated macrophages polarize toward an M2-like immunosuppressive phenotype with increased expression of the immune checkpoint VISTA, rendering T cells dysfunctional. HRH1 knockout or antihistamine treatment reverted macrophage immunosuppression, revitalized T cell cytotoxic function, and restored immunotherapy response. Allergy, via the histamine-HRH1 axis, facilitated tumor growth and induced immunotherapy resistance in mice and humans. …


Autophagosomes Fuse To Phagosomes And Facilitate The Degradation Of Apoptotic Cells In Caenorhabditis Elegans, Omar Peña-Ramos, Lucia Chiao, Xianghua Liu, Xiaomeng Yu, Tianyou Yao, Henry He, Zheng Zhou Jan 2022

Autophagosomes Fuse To Phagosomes And Facilitate The Degradation Of Apoptotic Cells In Caenorhabditis Elegans, Omar Peña-Ramos, Lucia Chiao, Xianghua Liu, Xiaomeng Yu, Tianyou Yao, Henry He, Zheng Zhou

Faculty, Staff and Students Publications

Autophagosomes are double-membrane intracellular vesicles that degrade protein aggregates, intracellular organelles, and other cellular components. During the development of the nematode Caenorhabditis elegans, many somatic and germ cells undergo apoptosis. These cells are engulfed and degraded by their neighboring cells. We discovered a novel role of autophagosomes in facilitating the degradation of apoptotic cells using a real-time imaging technique. Specifically, the double-membrane autophagosomes in engulfing cells are recruited to the surfaces of phagosomes containing apoptotic cells and subsequently fuse to phagosomes, allowing the inner vesicle to enter the phagosomal lumen. Mutants defective in the production of autophagosomes display significant …


Methodologies To Unlock The Molecular Expression And Cellular Structure Of Ocular Lens Epithelial Cells, Justin Parreno, Grace Emin, Michael P Vu, Jackson T Clark, Sandeep Aryal, Shaili D Patel, Catherine Cheng Jan 2022

Methodologies To Unlock The Molecular Expression And Cellular Structure Of Ocular Lens Epithelial Cells, Justin Parreno, Grace Emin, Michael P Vu, Jackson T Clark, Sandeep Aryal, Shaili D Patel, Catherine Cheng

Faculty, Staff and Student Publications

The transparent ocular lens in the anterior chamber of the eye is responsible for fine focusing of light onto the retina. The lens is entirely cellular with bulk of the tissue composed of fiber cells, and the anterior hemisphere of the lens is covered by a monolayer of epithelial cells. Lens epithelial cells are important for maintaining fiber cell homeostasis and for continual growth of the lens tissue throughout life. Cataracts, defined as any opacity in the lens, remain the leading cause of blindness in the world. Following cataract surgery, lens epithelial cells can undergo a process of epithelial-to-mesenchymal transition …


A Transgenic Bacterial Artificial Chromosome Approach To Identify Regulatory Regions That Direct Amhr2 And Osterix Expression In Müllerian Duct Mesenchyme, Malcolm M Moses, Rachel D Mullen, Daniel I Idowu, Peter Maye, Soazik P Jamin, Richard R Behringer Jan 2022

A Transgenic Bacterial Artificial Chromosome Approach To Identify Regulatory Regions That Direct Amhr2 And Osterix Expression In Müllerian Duct Mesenchyme, Malcolm M Moses, Rachel D Mullen, Daniel I Idowu, Peter Maye, Soazik P Jamin, Richard R Behringer

Faculty, Staff and Student Publications

A transgenic mouse approach using bacterial artificial chromosomes (BAC) was used to identify regulatory regions that direct Müllerian duct expression for Amhr2 and Osterix (Osx, also known as Sp7). Amhr2 encodes the receptor that mediates anti-Müllerian hormone (AMH) signaling for Müllerian duct regression in male embryos. Amhr2 is expressed in the Müllerian duct mesenchyme of both male and female embryos. A ∼147-kb BAC clone containing the Amhr2 locus was used to generate transgenic mice. The transgene was able to rescue the block in Müllerian duct regression of Amhr2-null males, suggesting that the BAC clone contains regulatory …


Regulation Of T Cell Function By Protein S-Acylation, Savannah J West, Darren Boehning, Askar M Akimzhanov Jan 2022

Regulation Of T Cell Function By Protein S-Acylation, Savannah J West, Darren Boehning, Askar M Akimzhanov

Faculty, Staff and Student Publications

S-acylation, the reversible lipidation of free cysteine residues with long-chain fatty acids, is a highly dynamic post-translational protein modification that has recently emerged as an important regulator of the T cell function. The reversible nature of S-acylation sets this modification apart from other forms of protein lipidation and allows it to play a unique role in intracellular signal transduction. In recent years, a significant number of T cell proteins, including receptors, enzymes, ion channels, and adaptor proteins, were identified as S-acylated. It has been shown that S-acylation critically contributes to their function by regulating protein localization, stability and protein-protein interactions. …


Embryonic Hypotaurine Levels Contribute To Strain-Dependent Susceptibility In Mouse Models Of Valproate-Induced Neural Tube Defects, John W Steele, Ying Linda Lin, Nellie Chen, Bogdan J Wlodarczyk, Qiuying Chen, Nabeel Attarwala, Madhu Venkatesalu, Robert M Cabrera, Steven S Gross, Richard H Finnell Jan 2022

Embryonic Hypotaurine Levels Contribute To Strain-Dependent Susceptibility In Mouse Models Of Valproate-Induced Neural Tube Defects, John W Steele, Ying Linda Lin, Nellie Chen, Bogdan J Wlodarczyk, Qiuying Chen, Nabeel Attarwala, Madhu Venkatesalu, Robert M Cabrera, Steven S Gross, Richard H Finnell

Faculty, Staff and Students Publications

Valproic acid (VPA, valproate, Depakote) is a commonly used anti-seizure medication (ASM) in the treatment of epilepsy and a variety of other neurological disorders. While VPA and other ASMs are efficacious for management of seizures, they also increase the risk for adverse pregnancy outcomes, including neural tube defects (NTDs). Thus, the utility of these drugs during pregnancy and in women of childbearing potential presents a continuing public health challenge. Elucidating the underlying genetic or metabolic risk factors for VPA-affected pregnancies may lead to development of non-teratogenic ASMs, novel prevention strategies, or more targeted methods for managing epileptic pregnancies. To address …


Endometriosis-Associated Angiogenesis And Anti-Angiogenic Therapy For Endometriosis, Monica S Chung, Sang Jun Han Jan 2022

Endometriosis-Associated Angiogenesis And Anti-Angiogenic Therapy For Endometriosis, Monica S Chung, Sang Jun Han

Faculty, Staff and Students Publications

Endometriosis is a known estrogen-dependent inflammatory disease affecting reproductive-aged women. Common symptoms include pelvic pain, dysmenorrhea, dyspareunia, heavy menstrual bleeding, and infertility. The exact etiology of endometriosis is largely unknown, and, thus, the diagnosis and treatment of endometriosis are challenging. A complex interplay of many molecular mechanisms is thought to aid in the progression of endometriosis, most notably angiogenesis. This mini-review examines our current knowledge of the molecular etiology of endometriosis-associated angiogenesis and discusses anti-angiogenic therapy, in the blockade of endometriosis-associated angiogenesis, as potential non-hormonal therapy for the treatment of endometriosis.


Common Genomic Aberrations In Mouse And Human Breast Cancers With Concurrent P53 Deficiency And Activated Pten-Pi3k-Akt Pathway, Jarrod D Martinez, Qianxing Mo, Yixiang Xu, Li Qin, Yi Li, Jianming Xu Jan 2022

Common Genomic Aberrations In Mouse And Human Breast Cancers With Concurrent P53 Deficiency And Activated Pten-Pi3k-Akt Pathway, Jarrod D Martinez, Qianxing Mo, Yixiang Xu, Li Qin, Yi Li, Jianming Xu

Faculty, Staff and Students Publications

Simultaneous P53 loss and activation of the PTEN-restricted PI3K-AKT pathway frequently occur in aggressive breast cancers. P53 loss causes genome instability, while PTEN loss and/or activating mutations of PIK3CA and AKT promote cancer cell proliferation that also increases incidences of genomic aberrations. However, the genomic alterations associated with P53 loss and activated PTEN-PI3K-AKT signaling in breast cancer have not been defined. Spatiotemporally controlled breast cancer models with inactivation of both P53 and Pten in adult mice have not been established for studying genomic alterations. Herein, we deleted both floxed Pten and Tp53 genes in the mammary gland epithelial cells in …