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Articles 151 - 180 of 273

Full-Text Articles in Medical Cell Biology

Selective Reprogramming Of Regulatory T Cells In Solid Tumors Can Strongly Enhance Or Inhibit Tumor Growth, Rami Alfar, John V Napoleon, Imrul Shahriar, Richard Finnell, Cole Walchle, Austin Johnson, Philip S Low Jan 2023

Selective Reprogramming Of Regulatory T Cells In Solid Tumors Can Strongly Enhance Or Inhibit Tumor Growth, Rami Alfar, John V Napoleon, Imrul Shahriar, Richard Finnell, Cole Walchle, Austin Johnson, Philip S Low

Faculty, Staff and Students Publications

Folate receptor delta (FRδ) has been used as a biomarker for regulatory T cells (Tregs), because its expression is limited to Tregs and ovum. Although FRδ is unable to bind folate, we have used molecular docking software to identify a folate congener that binds FRδ with high affinity and have exploited this FRδ-specific ligand to target attached drugs (imaging agents, immune activators, and immune suppressors) specifically to Tregs in murine tumor xenografts. Analysis of treated tumors demonstrates that targeting of a Toll-like receptor 7 agonist inhibits Treg expression of FOXP3, PD-1, CTLA4, and HELIOS, resulting in 40-80% reduction in tumor …


The Nr2f2-Hand2 Signaling Axis Regulates Progesterone Actions In The Uterus At Early Pregnancy, Yeongseok Oh, Elvis Quiroz, Tianyuan Wang, Yassmin Medina-Laver, Skylar Montague Redecke, Francisco Dominguez, John P Lydon, Francesco J Demayo, San-Pin Wu Jan 2023

The Nr2f2-Hand2 Signaling Axis Regulates Progesterone Actions In The Uterus At Early Pregnancy, Yeongseok Oh, Elvis Quiroz, Tianyuan Wang, Yassmin Medina-Laver, Skylar Montague Redecke, Francisco Dominguez, John P Lydon, Francesco J Demayo, San-Pin Wu

Faculty, Staff and Students Publications

Endometrial function is dependent on a tight crosstalk between the epithelial and stromal cells of the endometrium. This communication is critical to ensure a fertile uterus and relies on progesterone and estrogen signaling to prepare a receptive uterus for embryo implantation in early pregnancy. One of the key mediators of this crosstalk is the orphan nuclear receptor NR2F2, which regulates uterine epithelial receptivity and stromal cell differentiation. In order to determine the molecular mechanism regulated by NR2F2, RNAseq analysis was conducted on the uterus of


Versican Provides The Provisional Matrix For Uterine Spiral Artery Dilation And Fetal Growth, Yusuke Sagae, Akihito Horie, Akihiro Yanai, Tsutomu Ohara, Baku Nakakita, Yoshimi Kitawaki, Asuka Okunomiya, Hirohiko Tani, Ken Yamaguchi, Junzo Hamanishi, John P Lydon, Takiko Daikoku, Hideto Watanabe, Masaki Mandai Jan 2023

Versican Provides The Provisional Matrix For Uterine Spiral Artery Dilation And Fetal Growth, Yusuke Sagae, Akihito Horie, Akihiro Yanai, Tsutomu Ohara, Baku Nakakita, Yoshimi Kitawaki, Asuka Okunomiya, Hirohiko Tani, Ken Yamaguchi, Junzo Hamanishi, John P Lydon, Takiko Daikoku, Hideto Watanabe, Masaki Mandai

Faculty, Staff and Students Publications

The extracellular matrix (ECM) in the endometrium plays a crucial role in mammalian pregnancy. We have shown that versican secreted from the endometrial epithelium promotes embryo implantation. Versican is a proteoglycan, a major player in the provisional matrix, and versikine, its N-terminal fragment cleaved by ADAMTS proteinases, serves as a bioactive molecule. Here, since versican expression in the placenta was dynamically altered in humans and mice, we investigated the role of versican in pregnancy using uterine-specific Vcan deletion mice (uKO mice) and ADAMTS-resistant versican expressing mice (V1R mice). uKO mice exhibited insufficient spiral artery dilation, followed by fetal growth restriction …


Loss Of Ubiquitin-Specific Peptidase 18 Destabilizes 14-3-3Ζ Protein And Represses Lung Cancer Metastasis, Zibo Chen, Lin Zheng, Yulong Chen, Xiuxia Liu, Masanori Kawakami, Lisa Maria Mustachio, Jason Roszik, Katherine V Ferry-Galow, Ralph E Parchment, Xin Liu, Thorkell Andresson, Gerard Duncan, Jonathan M Kurie, Jaime Rodriguez-Canales, Xi Liu, Ethan Dmitrovsky Dec 2022

Loss Of Ubiquitin-Specific Peptidase 18 Destabilizes 14-3-3Ζ Protein And Represses Lung Cancer Metastasis, Zibo Chen, Lin Zheng, Yulong Chen, Xiuxia Liu, Masanori Kawakami, Lisa Maria Mustachio, Jason Roszik, Katherine V Ferry-Galow, Ralph E Parchment, Xin Liu, Thorkell Andresson, Gerard Duncan, Jonathan M Kurie, Jaime Rodriguez-Canales, Xi Liu, Ethan Dmitrovsky

Faculty, Staff and Student Publications

Cancer metastasis is a major cause of cancer-related mortality. Strategies to reduce metastases are needed especially in lung cancer, the most common cause of cancer mortality. We previously reported increased ubiquitin-specific peptidase 18 (USP18) expression in lung and other cancers. Engineered reduction of USP18 expression repressed lung cancer growth and promoted apoptosis. This deubiquitinase (DUB) stabilized targeted proteins by removing the complex interferon-stimulated gene 15 (ISG15). This study explores if the loss of USP18 reduced lung cancer metastasis. USP18 knock-down in lung cancer cells was independently achieved using small hairpin RNAs (shRNAs) and small interfering RNAs (siRNAs). USP18 knock-down reduced …


Defining Cellular Population Dynamics At Single-Cell Resolution During Prostate Cancer Progression, Alexandre A Germanos, Sonali Arora, Ye Zheng, Erica T Goddard, Ilsa M Coleman, Anson T Ku, Scott Wilkinson, Hanbing Song, Nicholas J Brady, Robert A Amezquita, Michael Zager, Annalysa Long, Yu Chi Yang, Jason H Bielas, Raphael Gottardo, David S Rickman, Franklin W Huang, Cyrus M Ghajar, Peter S Nelson, Adam G Sowalsky, Manu Setty, Andrew C Hsieh Dec 2022

Defining Cellular Population Dynamics At Single-Cell Resolution During Prostate Cancer Progression, Alexandre A Germanos, Sonali Arora, Ye Zheng, Erica T Goddard, Ilsa M Coleman, Anson T Ku, Scott Wilkinson, Hanbing Song, Nicholas J Brady, Robert A Amezquita, Michael Zager, Annalysa Long, Yu Chi Yang, Jason H Bielas, Raphael Gottardo, David S Rickman, Franklin W Huang, Cyrus M Ghajar, Peter S Nelson, Adam G Sowalsky, Manu Setty, Andrew C Hsieh

Faculty, Staff and Student Publications

Advanced prostate malignancies are a leading cause of cancer-related deaths in men, in large part due to our incomplete understanding of cellular drivers of disease progression. We investigate prostate cancer cell dynamics at single-cell resolution from disease onset to the development of androgen independence in an in vivo murine model. We observe an expansion of a castration-resistant intermediate luminal cell type that correlates with treatment resistance and poor prognosis in human patients. Moreover, transformed epithelial cells and associated fibroblasts create a microenvironment conducive to pro-tumorigenic immune infiltration, which is partially androgen responsive. Androgen-independent prostate cancer leads to significant diversification of …


An Elf4 Hypomorphic Variant Results In Nk Cell Deficiency, Sandra Andrea Salinas, Emily M Mace, Matilde I Conte, Chun Shik Park, Yu Li, Joshua I Rosario-Sepulveda, Sanjana Mahapatra, Emily K Moore, Evelyn R Hernandez, Ivan K Chinn, Abigail E Reed, Barclay J Lee, Alexander Frumovitz, Richard A Gibbs, Jennifer E Posey, Lisa R Forbes Satter, Akaluck Thatayatikom, Eric J Allenspach, Theodore G Wensel, James R Lupski, H Daniel Lacorazza, Jordan S Orange Dec 2022

An Elf4 Hypomorphic Variant Results In Nk Cell Deficiency, Sandra Andrea Salinas, Emily M Mace, Matilde I Conte, Chun Shik Park, Yu Li, Joshua I Rosario-Sepulveda, Sanjana Mahapatra, Emily K Moore, Evelyn R Hernandez, Ivan K Chinn, Abigail E Reed, Barclay J Lee, Alexander Frumovitz, Richard A Gibbs, Jennifer E Posey, Lisa R Forbes Satter, Akaluck Thatayatikom, Eric J Allenspach, Theodore G Wensel, James R Lupski, H Daniel Lacorazza, Jordan S Orange

Faculty, Staff and Students Publications

NK cell deficiencies (NKD) are a type of primary immune deficiency in which the major immunologic abnormality affects NK cell number, maturity, or function. Since NK cells contribute to immune defense against virally infected cells, patients with NKD experience higher susceptibility to chronic, recurrent, and fatal viral infections. An individual with recurrent viral infections and mild hypogammaglobulinemia was identified to have an X-linked damaging variant in the transcription factor gene ELF4. The variant does not decrease expression but disrupts ELF4 protein interactions and DNA binding, reducing transcriptional activation of target genes and selectively impairing ELF4 function. Corroborating previous murine models …


The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig Dec 2022

The Rheumatoid Arthritis Drug Auranofin Lowers Leptin Levels And Exerts Antidiabetic Effects In Obese Mice, Aaron R Cox, Peter M Masschelin, Pradip K Saha, Jessica B Felix, Robert Sharp, Zeqin Lian, Yan Xia, Natasha Chernis, David A Bader, Kang Ho Kim, Xin Li, Jun Yoshino, Xin Li, Gang Li, Zheng Sun, Huaizhu Wu, Cristian Coarfa, David D Moore, Samuel Klein, Kai Sun, Sean M Hartig

Faculty, Staff and Student Publications

Low-grade, sustained inflammation in white adipose tissue (WAT) characterizes obesity and coincides with type 2 diabetes mellitus (T2DM). However, pharmacological targeting of inflammation lacks durable therapeutic effects in insulin-resistant conditions. Through a computational screen, we discovered that the FDA-approved rheumatoid arthritis drug auranofin improved insulin sensitivity and normalized obesity-associated abnormalities, including hepatic steatosis and hyperinsulinemia in mouse models of T2DM. We also discovered that auranofin accumulation in WAT depleted inflammatory responses to a high-fat diet without altering body composition in obese wild-type mice. Surprisingly, elevated leptin levels and blunted beta-adrenergic receptor activity achieved by leptin receptor deletion abolished the antidiabetic …


Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky Dec 2022

Activity Disruption Causes Degeneration Of Entorhinal Neurons In A Mouse Model Of Alzheimer’S Circuit Dysfunction, Rong Zhao, Stacy D Grunke, Caleb A Wood, Gabriella A Perez, Melissa Comstock, Ming-Hua Li, Anand K Singh, Kyung-Won Park, Joanna L Jankowsky

Faculty, Staff and Students Publications

Neurodegenerative diseases are characterized by selective vulnerability of distinct cell populations; however, the cause for this specificity remains elusive. Here, we show that entorhinal cortex layer 2 (EC2) neurons are unusually vulnerable to prolonged neuronal inactivity compared with neighboring regions of the temporal lobe, and that reelin + stellate cells connecting EC with the hippocampus are preferentially susceptible within the EC2 population. We demonstrate that neuronal death after silencing can be elicited through multiple independent means of activity inhibition, and that preventing synaptic release, either alone or in combination with electrical shunting, is sufficient to elicit silencing-induced degeneration. Finally, we …


Human Islet Amyloid Polypeptide (Hiapp) Protofibril-Specific Antibodies For Detection And Treatment Of Type 2 Diabetes, Angelina S Bortoletto, W Vallen Graham, Gabriella Trout, Alessandra Bonito-Oliva, Manija A Kazmi, Jing Gong, Emily Weyburne, Brandy L Houser, Thomas P Sakmar, Ronald J Parchem Dec 2022

Human Islet Amyloid Polypeptide (Hiapp) Protofibril-Specific Antibodies For Detection And Treatment Of Type 2 Diabetes, Angelina S Bortoletto, W Vallen Graham, Gabriella Trout, Alessandra Bonito-Oliva, Manija A Kazmi, Jing Gong, Emily Weyburne, Brandy L Houser, Thomas P Sakmar, Ronald J Parchem

Faculty, Staff and Students Publications

Type 2 diabetes mellitus (T2D) is a major public health concern and is characterized by sustained hyperglycemia due to insulin resistance and destruction of insulin-producing β cells. One pathological hallmark of T2D is the toxic accumulation of human islet amyloid polypeptide (hIAPP) aggregates. Monomeric hIAPP is a hormone normally co-secreted with insulin. However, increased levels of hIAPP in prediabetic and diabetic patients can lead to the formation of hIAPP protofibrils, which are toxic to β cells. Current therapies fail to address hIAPP aggregation and current screening modalities do not detect it. Using a stabilizing capping protein, monoclonal antibodies (mAbs) can …


Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi Dec 2022

Metabolome And Microbiome Multi-Omics Integration From A Murine Lung Inflammation Model Of Bronchopulmonary Dysplasia, Ahmed El Saie, Chenlian Fu, Sandra L Grimm, Matthew J Robertson, Kristi Hoffman, Vasanta Putluri, Chandra Shekar R Ambati, Nagireddy Putluri, Binoy Shivanna, Cristian Coarfa, Mohan Pammi

Faculty, Staff and Students Publications

BACKGROUND: Respiratory tract microbial dysbiosis can exacerbate inflammation and conversely inflammation may cause dysbiosis. Dysbiotic microbiome metabolites may lead to bronchopulmonary dysplasia (BPD). Hyperoxia and lipopolysaccharide (LPS) interaction alters lung microbiome and metabolome, mediating BPD lung injury sequence.

METHODS: C57BL6/J mice were exposed to 21% (normoxia) or 70% (hyperoxia) oxygen during postnatal days (PND) 1-14. Pups were injected with LPS (6 mg/kg) or equal PBS volume, intraperitoneally on PND 3, 5, and 7. At PND14, the lungs were collected for microbiome and metabolomic analyses (n = 5/group).

RESULTS: Microbiome alpha and beta diversity were similar between groups. Metabolic changes included …


Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei Dec 2022

Cic Missense Variants Contribute To Susceptibility For Spina Bifida, Xiao Han, Xuanye Cao, Vanessa Aguiar-Pulido, Wei Yang, Menuka Karki, Paula Andrea Pimienta Ramirez, Robert M Cabrera, Ying Linda Lin, Bogdan J Wlodarczyk, Gary M Shaw, M Elizabeth Ross, Cuilian Zhang, Richard H Finnell, Yunping Lei

Faculty, Staff and Students Publications

Neural tube defects (NTDs) are congenital malformations resulting from abnormal embryonic development of the brain, spine, or spinal column. The genetic etiology of human NTDs remains poorly understood despite intensive investigation. CIC, homolog of the Capicua transcription repressor, has been reported to interact with ataxin-1 (ATXN1) and participate in the pathogenesis of spinocerebellar ataxia type 1. Our previous study demonstrated that CIC loss of function (LoF) variants contributed to the cerebral folate deficiency syndrome by downregulating folate receptor 1 (FOLR1) expression. Given the importance of folate transport in neural tube formation, we hypothesized that CIC variants could contribute to increased …


Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri Dec 2022

Analysis Of Genome-Wide Knockout Mouse Database Identifies Candidate Ciliopathy Genes, Kendall Higgins, Bret A Moore, Zorana Berberovic, Hibret A Adissu, Mohammad Eskandarian, Ann M Flenniken, Andy Shao, Denise M Imai, Dave Clary, Louise Lanoue, Susan Newbigging, Lauryl M J Nutter, David J Adams, Fatima Bosch, Robert E Braun, Steve D M Brown, Mary E Dickinson, Michael Dobbie, Paul Flicek, Xiang Gao, Sanjeev Galande, Anne Grobler, Jason D Heaney, Yann Herault, Martin Hrabe De Angelis, Hsian-Jean Genie Chin, Fabio Mammano, Chuan Qin, Toshihiko Shiroishi, Radislav Sedlacek, J-K Seong, Ying Xu, Impc Consortium, K C Kent Lloyd, Colin Mckerlie, Ala Moshiri

Faculty, Staff and Students Publications

We searched a database of single-gene knockout (KO) mice produced by the International Mouse Phenotyping Consortium (IMPC) to identify candidate ciliopathy genes. We first screened for phenotypes in mouse lines with both ocular and renal or reproductive trait abnormalities. The STRING protein interaction tool was used to identify interactions between known cilia gene products and those encoded by the genes in individual knockout mouse strains in order to generate a list of "candidate ciliopathy genes." From this list, 32 genes encoded proteins predicted to interact with known ciliopathy proteins. Of these, 25 had no previously described roles in ciliary pathobiology. …


Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon Dec 2022

Histopathologic And Transcriptomic Phenotypes Of A Conditional Rankl Transgenic Mouse Thymus, Maria M Szwarc, Lan Hai, Vineet K Maurya, Kimal Rajapakshe, Dimuthu Perera, Michael M Ittmann, Qianxing Mo, Yong Lin, Matthew L Bettini, Cristian Coarfa, John P Lydon

Faculty, Staff and Students Publications

Although conventional knockout and transgenic mouse models have significantly advanced our understanding of Receptor Activator of NF-κB Ligand (RANKL) signaling in intra-thymic crosstalk that establishes self-tolerance and later stages of lymphopoiesis, the unique advantages of conditional mouse transgenesis have yet to be explored. A main advantage of conditional transgenesis is the ability to express a transgene in a spatiotemporal restricted manner, enabling the induction (or de-induction) of transgene expression during predetermined stages of embryogenesis or during defined postnatal developmental or physiological states, such as puberty, adulthood, and pregnancy. Here, we describe the K5: RANKL bigenic mouse, in which transgene derived …


Oleuropein Suppresses Endometriosis Progression And Improves The Fertility Of Mice With Endometriosis, Yuri Park, Yeon Jean Cho, Nuri Sung, Mi Jin Park, Xiaoming Guan, William E Gibbons, Bert W O'Malley, Sang Jun Han Nov 2022

Oleuropein Suppresses Endometriosis Progression And Improves The Fertility Of Mice With Endometriosis, Yuri Park, Yeon Jean Cho, Nuri Sung, Mi Jin Park, Xiaoming Guan, William E Gibbons, Bert W O'Malley, Sang Jun Han

Faculty, Staff and Students Publications

BACKGROUND: Endometriosis is an estrogen-dependent inflammatory reproductive disease. Therefore, systematic estrogen depletion and anti-inflammatory drugs are the current treatment for endometriosis. However, current endometriosis treatments have low efficacy and cause adverse effects in endometriosis patients. Consequently, alternative endometriosis treatments targeting endometriosis-specific factors are in demand. In this context, ERβ was selected as a druggable target for endometriosis due to its critical role in progression. Therefore, selective targeting of ERβ without inhibiting ERα activity would be a new paradigm for endometriosis treatment to overcome the low efficacy and adverse effects of hormonal endometriosis therapy.

METHODS: Cell-based ERβ and ERα activity assay …


Blockade Of Fgf2/Fgfr2 Partially Overcomes Bone Marrow Mesenchymal Stromal Cells Mediated Progression Of T-Cell Acute Lymphoblastic Leukaemia, Chen Tian, Yueyang Li, Lina Wang, Junqi Si, Yaxin Zheng, Junnan Kang, Yafei Wang, M James You, Guoguang Zheng Nov 2022

Blockade Of Fgf2/Fgfr2 Partially Overcomes Bone Marrow Mesenchymal Stromal Cells Mediated Progression Of T-Cell Acute Lymphoblastic Leukaemia, Chen Tian, Yueyang Li, Lina Wang, Junqi Si, Yaxin Zheng, Junnan Kang, Yafei Wang, M James You, Guoguang Zheng

Faculty, Staff and Student Publications

The development of acute lymphoblastic leuakemia (ALL) is partly attributed to the effects of bone marrow (BM) microenvironment, especially mesenchymal stromal cells (MSCs), which interact bilaterally with leukaemia cells, leading to ALL progression. In order to find MSCs-based microenvironment targeted therapeutic strategies, Notch1-induced T-cell ALL (T-ALL) mice models were used and dynamic alterations of BM-MSCs with increased cell viability during T-ALL development was observed. In T-ALL mice derived stroma-based condition, leukaemia cells showed significantly elevated growth capacity indicating that MSCs participated in leukaemic niche formation. RNA sequence results revealed that T-ALL derived MSCs secreted fibroblast growth factor 2 (FGF2), which …


Steroid Receptor Coactivator-3 Inhibition Generates Breast Cancer Antitumor Immune Microenvironment, Sang Jun Han, Nuri Sung, Jin Wang, Bert W O'Malley, David M Lonard Oct 2022

Steroid Receptor Coactivator-3 Inhibition Generates Breast Cancer Antitumor Immune Microenvironment, Sang Jun Han, Nuri Sung, Jin Wang, Bert W O'Malley, David M Lonard

Faculty, Staff and Students Publications

BACKGROUND: The tumor immune microenvironment (TIME) generated by cancer-infiltrating immune cells has a crucial role in promoting or suppressing breast cancer progression. However, whether the steroid receptor coactivator-3 (SRC-3) modulates TIME to progress breast cancer is unclear. Therefore, the present study evaluates whether SRC-3 generates a tumor-promoting TIME in breast tumors using a syngeneic immune-intact mouse model of breast cancer.

METHODS: We employed E0771 and 4T1 breast cancer in immune-intact syngeneic female C57BL/6 and BALB/c mice, respectively. SI-2, a specific small-molecule inhibitor of SRC-3, was administered daily (2.5 mg/kg) to E0771 and 4T1 breast tumor-bearing immune-intact mice. In addition, SRC-3 …


Yap And Taz Promote Osteogenesis And Prevent Chondrogenesis In Neural Crest Cells In Vitro And In Vivo, Xiaolei Zhao, Li Tang, Tram P Le, Bao H Nguyen, Wen Chen, Mingjie Zheng, Hiroyuki Yamaguchi, Brian Dawson, Shuangjie You, Idaliz M Martinez-Traverso, Shannon Erhardt, Jianxin Wang, Min Li, James F Martin, Brendan H Lee, Yoshihiro Komatsu, Jun Wang Oct 2022

Yap And Taz Promote Osteogenesis And Prevent Chondrogenesis In Neural Crest Cells In Vitro And In Vivo, Xiaolei Zhao, Li Tang, Tram P Le, Bao H Nguyen, Wen Chen, Mingjie Zheng, Hiroyuki Yamaguchi, Brian Dawson, Shuangjie You, Idaliz M Martinez-Traverso, Shannon Erhardt, Jianxin Wang, Min Li, James F Martin, Brendan H Lee, Yoshihiro Komatsu, Jun Wang

Faculty, Staff and Student Publications

Neural crest cells (NCCs) are multipotent stem cells that can differentiate into multiple cell types, including the osteoblasts and chondrocytes, and constitute the majority of the craniofacial skeleton. Here, we show through in vitro and in vivo studies that the transcriptional regulators Yap and Taz have redundant functions as key determinants of the specification and differentiation of NCCs into osteoblasts or chondrocytes. Primary and cultured NCCs deficient in Yap and Taz switched from osteogenesis to chondrogenesis, and NCC-specific deficiency for Yap and Taz resulted in bone loss and ectopic cartilage in mice. Yap bound to the regulatory elements of key …


Artificial Intelligence For Radiation Oncology Applications Using Public Datasets, Kareem A Wahid, Enrico Glerean, Jaakko Sahlsten, Joel Jaskari, Kimmo Kaski, Mohamed A Naser, Renjie He, Abdallah S R Mohamed, Clifton D Fuller Oct 2022

Artificial Intelligence For Radiation Oncology Applications Using Public Datasets, Kareem A Wahid, Enrico Glerean, Jaakko Sahlsten, Joel Jaskari, Kimmo Kaski, Mohamed A Naser, Renjie He, Abdallah S R Mohamed, Clifton D Fuller

Faculty, Staff and Student Publications

Artificial intelligence (AI) has exceptional potential to positively impact the field of radiation oncology. However, large curated datasets - often involving imaging data and corresponding annotations - are required to develop radiation oncology AI models. Importantly, the recent establishment of Findable, Accessible, Interoperable, Reusable (FAIR) principles for scientific data management have enabled an increasing number of radiation oncology related datasets to be disseminated through data repositories, thereby acting as a rich source of data for AI model building. This manuscript reviews the current and future state of radiation oncology data dissemination, with a particular emphasis on published imaging datasets, AI …


Identification Of An Early Survival Prognostic Gene Signature For Localized Osteosarcoma Patients, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland Sep 2022

Identification Of An Early Survival Prognostic Gene Signature For Localized Osteosarcoma Patients, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland

Faculty, Staff and Students Publications

Recent genome-wide association studies corroborate classical research on developmental programming indicating that obesity is primarily a neurodevelopmental disease strongly influenced by nutrition during critical ontogenic windows. Epigenetic mechanisms regulate neurodevelopment; however, little is known about their role in establishing and maintaining the brain's energy balance circuitry. We generated neuron and glia methylomes and transcriptomes from male and female mouse hypothalamic arcuate nucleus, a key site for energy balance regulation, at time points spanning the closure of an established critical window for developmental programming of obesity risk. We find that postnatal epigenetic maturation is markedly cell type and sex specific and …


Genetic- And Diet-Induced Ω-3 Fatty Acid Enrichment Enhances Trpv4-Mediated Vasodilation In Mice, Rebeca Caires, Tessa A C Garrud, Luis O Romero, Carlos Fernández-Peña, Valeria Vásquez, Jonathan H Jaggar, Julio F Cordero-Morales Sep 2022

Genetic- And Diet-Induced Ω-3 Fatty Acid Enrichment Enhances Trpv4-Mediated Vasodilation In Mice, Rebeca Caires, Tessa A C Garrud, Luis O Romero, Carlos Fernández-Peña, Valeria Vásquez, Jonathan H Jaggar, Julio F Cordero-Morales

Faculty, Staff and Student Publications

TRPV4 channel activation in endothelial cells leads to vasodilation, while impairment of TRPV4 activity is implicated in vascular dysfunction. Strategies that increase TRPV4 activity could enhance vasodilation and ameliorate vascular disorders. Here, we show that supplementation with eicosapentaenoic acid (EPA), an ω-3 polyunsaturated fatty acid known to have beneficial cardiovascular effects, increases TRPV4 activity in human endothelial cells of various vascular beds. Mice carrying the C. elegans FAT-1 enzyme, which converts ω-6 to ω-3 polyunsaturated fatty acids, display higher EPA content and increased TRPV4-mediated vasodilation in mesenteric arteries. Likewise, mice fed an EPA-enriched diet exhibit enhanced and prolonged TRPV4-dependent vasodilation …


Intermediary Role Of Lung Alveolar Type 1 Cells In Epithelial Repair Upon Sendai Virus Infection, Belinda J Hernandez, Margo P Cain, Anne M Lynch, Jose R Flores, Michael J Tuvim, Burton F Dickey, Jichao Chen Sep 2022

Intermediary Role Of Lung Alveolar Type 1 Cells In Epithelial Repair Upon Sendai Virus Infection, Belinda J Hernandez, Margo P Cain, Anne M Lynch, Jose R Flores, Michael J Tuvim, Burton F Dickey, Jichao Chen

Faculty, Staff and Student Publications

The lung epithelium forms the first barrier against respiratory pathogens and noxious chemicals; however, little is known about how more than 90% of this barrier, made of AT1 (alveolar type 1) cells, responds to injury. Using the Sendai virus to model natural infection in mice, we find evidence that AT1 cells have an intermediary role by persisting in areas depleted of AT2 cells, upregulating IFN responsive genes, and receding from invading airway cells. Sendai virus infection mobilizes airway cells to form alveolar SOX2+ (Sry-box 2+) clusters without differentiating into AT1 or AT2 cells. Large AT2 cell-depleted areas remain covered by …


The Intricate Interplay Between Cancer Stem Cells And Cell-Of-Origin Of Cancer: Implications For Therapeutic Strategies, Luis Alberto Vega, Misu A Sanson, María Belén Cubria, Shrijana Regmi, Brittany J Shah, Samuel A Shelburne, Anthony R Flores Aug 2022

The Intricate Interplay Between Cancer Stem Cells And Cell-Of-Origin Of Cancer: Implications For Therapeutic Strategies, Luis Alberto Vega, Misu A Sanson, María Belén Cubria, Shrijana Regmi, Brittany J Shah, Samuel A Shelburne, Anthony R Flores

Faculty, Staff and Student Publications

Antimicrobial resistance-encoding mobile genetic elements (MGEs) may contribute to the disease potential of bacterial pathogens. We previously described the association of Group A Streptococcus (GAS) derived from invasive disease with increasingly frequent antimicrobial resistance (AMR). We hypothesized that a 65-kb AMR-encoding MGE (ICESpyM92), highly conserved among closely related emergent invasive emm92 GAS, contributes to GAS disease potential. Here, we provide evidence that a combination of ICESpyM92- and core genome-dependent differential gene expression (DGE) contributes to invasive disease phenotypes of emergent emm92 GAS. Using isogenic ICESpyM92 mutants generated in distinct emm92 genomic backgrounds, we determined the presence of ICESpyM92 enhances GAS …


Adipose Tissue-Specific Ablation Of Ces1d Causes Metabolic Dysregulation In Mice, Gang Li, Xin Li, Li Yang, Shuyue Wang, Yulin Dai, Baharan Fekry, Lucas Veillon, Lin Tan, Rebecca Berdeaux, Kristin Eckel-Mahan, Philip L Lorenzi, Zhongming Zhao, Richard Lehner, Kai Sun Aug 2022

Adipose Tissue-Specific Ablation Of Ces1d Causes Metabolic Dysregulation In Mice, Gang Li, Xin Li, Li Yang, Shuyue Wang, Yulin Dai, Baharan Fekry, Lucas Veillon, Lin Tan, Rebecca Berdeaux, Kristin Eckel-Mahan, Philip L Lorenzi, Zhongming Zhao, Richard Lehner, Kai Sun

Faculty, Staff and Student Publications

Carboxylesterase 1d (Ces1d) is a crucial enzyme with a wide range of activities in multiple tissues. It has been reported to localize predominantly in ER. Here, we found that Ces1d levels are significantly increased in obese patients with type 2 diabetes. Intriguingly, a high level of Ces1d translocates onto lipid droplets where it digests the lipids to produce a unique set of fatty acids. We further revealed that adipose tissue-specific Ces1d knock-out (FKO) mice gained more body weight with increased fat mass during a high fat-diet challenge. The FKO mice exhibited impaired glucose and lipid metabolism and developed exacerbated liver …


Hippo-Taz Signaling Is The Master Regulator Of The Onset Of Triple-Negative Basal-Like Breast Cancers, Hirotoshi Soyama, Miki Nishio, Junji Otani, Toshiko Sakuma, Shintaro Takao, Shigeo Hara, Takaaki Masuda, Koshi Mimori, Shinya Toyokuni, John P Lydon, Kazuwa Nakao, Hiroshi Nishina, Takumi Fukumoto, Tomohiko Maehama, Akira Suzuki Jul 2022

Hippo-Taz Signaling Is The Master Regulator Of The Onset Of Triple-Negative Basal-Like Breast Cancers, Hirotoshi Soyama, Miki Nishio, Junji Otani, Toshiko Sakuma, Shintaro Takao, Shigeo Hara, Takaaki Masuda, Koshi Mimori, Shinya Toyokuni, John P Lydon, Kazuwa Nakao, Hiroshi Nishina, Takumi Fukumoto, Tomohiko Maehama, Akira Suzuki

Faculty, Staff and Students Publications

A universal oncogenic driver of basal-like breast cancer (BLBC) has resisted identification. We show that continuous transcriptional coactivator with PDZ-binding motif (TAZ) activation in precancerous murine luminal cells generates luminal cancers that later become BLBCs. Subsequent TP53 alteration, a feature of invasive human BLBCs, accelerates tumor progression. Because BLBC development is inhibited by TAZ inactivation in vivo, our work provides a sound rationale for targeting Hippo-TAZ signaling as therapy for human BLBC. Our mouse model of BLBC represents a powerful tool for evaluating such drugs.


Alyref, A Novel Factor Involved In Breast Carcinogenesis, Acts Through Transcriptional And Post-Transcriptional Mechanisms Selectively Regulating The Short Neat1 Isoform, Christiane Klec, Erik Knutsen, Daniela Schwarzenbacher, Katharina Jonas, Barbara Pasculli, Ellen Heitzer, Beate Rinner, Katarina Krajina, Felix Prinz, Benjamin Gottschalk, Peter Ulz, Alexander Deutsch, Andreas Prokesch, Stephan W Jahn, S Mohammad Lellahi, Maria Perander, Raffaela Barbano, Wolfgang F Graier, Paola Parrella, George Adrian Calin, Martin Pichler Jul 2022

Alyref, A Novel Factor Involved In Breast Carcinogenesis, Acts Through Transcriptional And Post-Transcriptional Mechanisms Selectively Regulating The Short Neat1 Isoform, Christiane Klec, Erik Knutsen, Daniela Schwarzenbacher, Katharina Jonas, Barbara Pasculli, Ellen Heitzer, Beate Rinner, Katarina Krajina, Felix Prinz, Benjamin Gottschalk, Peter Ulz, Alexander Deutsch, Andreas Prokesch, Stephan W Jahn, S Mohammad Lellahi, Maria Perander, Raffaela Barbano, Wolfgang F Graier, Paola Parrella, George Adrian Calin, Martin Pichler

Faculty, Staff and Student Publications

The RNA-binding protein ALYREF (THOC4) is involved in transcriptional regulation and nuclear mRNA export, though its role and molecular mode of action in breast carcinogenesis are completely unknown. Here, we identified high ALYREF expression as a factor for poor survival in breast cancer patients. ALYREF significantly influenced cellular growth, apoptosis and mitochondrial energy metabolism in breast cancer cells as well as breast tumorigenesis in orthotopic mouse models. Transcriptional profiling, phenocopy and rescue experiments identified the short isoform of the lncRNA NEAT1 as a molecular trigger for ALYREF effects in breast cancer. Mechanistically, we found that ALYREF binds to the NEAT1 …


A Mathematical Model Of Glut1 Modulation In Rods And Rpe And Its Differential Impact In Cell Metabolism, Andrea Aparicio, Erika T Camacho, Nancy J. Philp, Stephen A Wirkus Jun 2022

A Mathematical Model Of Glut1 Modulation In Rods And Rpe And Its Differential Impact In Cell Metabolism, Andrea Aparicio, Erika T Camacho, Nancy J. Philp, Stephen A Wirkus

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

We present a mathematical model of key glucose metabolic pathways in two cells of the human retina: the rods and the retinal pigmented epithelium (RPE). Computational simulations of glucose transporter 1 (GLUT1) inhibition in the model accurately reproduce experimental data from conditional knockout mice and reveal that modification of GLUT1 expression levels of both cells differentially impacts their metabolism. We hypothesize that, under glucose scarcity, the RPE’s energy producing pathways are altered in order to preserve its functionality, impacting the photoreceptors’ outer segment renewal. On the other hand, when glucose is limited in the rods, aerobic glycolysis is preserved, which …


Evaluation Of Long-Chain Fatty Acid Respiration In Neonatal Mouse Cardiomyocytes Using Seahorse Instrument, Aude Angelini, Xinchun Pi, Liang Xie Jun 2022

Evaluation Of Long-Chain Fatty Acid Respiration In Neonatal Mouse Cardiomyocytes Using Seahorse Instrument, Aude Angelini, Xinchun Pi, Liang Xie

Faculty, Staff and Students Publications

Metabolic switches play a critical role in the pathophysiology of cardiac diseases, including heart failure. Here, we describe an assay for long-chain fatty acid oxidation in neonatal mouse cardiomyocytes by using a SeaHorse Flux Analyzer (Agilent). This protocol is a simplified but robust adaptation of the standard protocol that enables metabolic measurements in cells isolated from transgenic mouse models, which can be timesaving and informative. Cell isolation and culture represent a critical point that may require bench optimization.

For complete details on the use and execution of this protocol, please refer to Angelini et al. (2021).


Aberrant Uterine Folding In Mice Disrupts Implantation Chamber Formation And Alignment Of Embryo-Uterine Axes, Manoj K Madhavan, Francesco J Demayo, John P Lydon, Niraj R Joshi, Asgerally T Fazleabas, Ripla Arora Jun 2022

Aberrant Uterine Folding In Mice Disrupts Implantation Chamber Formation And Alignment Of Embryo-Uterine Axes, Manoj K Madhavan, Francesco J Demayo, John P Lydon, Niraj R Joshi, Asgerally T Fazleabas, Ripla Arora

Faculty, Staff and Students Publications

The uterine luminal epithelium folds characteristically in mammals, including humans, horses and rodents. Improper uterine folding in horses results in pregnancy failure, but the precise function of folds remains unknown. Here, we uncover dynamic changes in the 3D uterine folding pattern during early pregnancy with the entire lumen forming pre-implantation transverse folds along the mesometrial-antimesometrial axis. Using a time course, we show that transverse folds are formed before embryo spacing, whereas implantation chambers form as the embryo begins attachment. Thus, folds and chambers are two distinct structures. Transverse folds resolve to form a flat implantation region, after which an embryo …


Skin Fibrosis And Recovery Is Dependent On Wnt Activation Via Dpp4, Anna R Jussila, Brian Zhang, Elizabeth Caves, Sakin Kirti, Miarasa Steele, Emily Hamburg-Shields, John Lydon, Yan Ying, Robert Lafyatis, Sanjay Rajagopalan, Valerie Horsley, Radhika P Atit Jun 2022

Skin Fibrosis And Recovery Is Dependent On Wnt Activation Via Dpp4, Anna R Jussila, Brian Zhang, Elizabeth Caves, Sakin Kirti, Miarasa Steele, Emily Hamburg-Shields, John Lydon, Yan Ying, Robert Lafyatis, Sanjay Rajagopalan, Valerie Horsley, Radhika P Atit

Faculty, Staff and Students Publications

Fibrosis is the life-threatening, excessive accumulation of the extracellular matrix and is sometimes associated with a loss of lipid-filled cells in the skin and other organs. Understanding the mechanisms of fibrosis and associated lipodystrophy and their reversal may reveal new targets for therapeutic intervention. In vivo genetic models are needed to identify key targets that induce recovery from established fibrosis. Wnt signaling is activated in animal and human fibrotic diseases across organs. Here, we developed a genetically inducible and reversible Wnt activation model and showed that it is sufficient to cause fibrotic dermal remodeling, including extracellular matrix expansion and shrinking …


Concerted Type I Interferon Signaling In Microglia And Neural Cells Promotes Memory Impairment Associated With Amyloid Β Plaques, Ethan R Roy, Gabriel Chiu, Sanming Li, Nicholas E Propson, Rupa Kanchi, Baiping Wang, Cristian Coarfa, Hui Zheng, Wei Cao May 2022

Concerted Type I Interferon Signaling In Microglia And Neural Cells Promotes Memory Impairment Associated With Amyloid Β Plaques, Ethan R Roy, Gabriel Chiu, Sanming Li, Nicholas E Propson, Rupa Kanchi, Baiping Wang, Cristian Coarfa, Hui Zheng, Wei Cao

Faculty, Staff and Students Publications

The principal signals that drive memory and cognitive impairment in Alzheimer's disease (AD) remain elusive. Here, we revealed brain-wide cellular reactions to type I interferon (IFN-I), an innate immune cytokine aberrantly elicited by amyloid β plaques, and examined their role in cognition and neuropathology relevant to AD in a murine amyloidosis model. Using a fate-mapping reporter system to track cellular responses to IFN-I, we detected robust, Aβ-pathology-dependent IFN-I activation in microglia and other cell types. Long-term blockade of IFN-I receptor (IFNAR) rescued both memory and synaptic deficits and resulted in reduced microgliosis, inflammation, and neuritic pathology. Microglia-specific Ifnar1 deletion attenuated …