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Articles 211 - 240 of 385
Full-Text Articles in Medical Cell Biology
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
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 …
An Auto-Inhibited State Of Protein Kinase G And Implications For Selective Activation, Rajesh Sharma, Jeong Joo Kim, Liying Qin, Philipp Henning, Madoka Akimoto, Bryan Vanschouwen, Gundeep Kaur, Banumathi Sankaran, Kevin R Mackenzie, Giuseppe Melacini, Darren E Casteel, Friedrich W Herberg, Choel Kim
An Auto-Inhibited State Of Protein Kinase G And Implications For Selective Activation, Rajesh Sharma, Jeong Joo Kim, Liying Qin, Philipp Henning, Madoka Akimoto, Bryan Vanschouwen, Gundeep Kaur, Banumathi Sankaran, Kevin R Mackenzie, Giuseppe Melacini, Darren E Casteel, Friedrich W Herberg, Choel Kim
Faculty, Staff and Students Publications
Cyclic GMP-dependent protein kinases (PKGs) are key mediators of the nitric oxide/cyclic guanosine monophosphate (cGMP) signaling pathway that regulates biological functions as diverse as smooth muscle contraction, cardiac function, and axon guidance. Understanding how cGMP differentially triggers mammalian PKG isoforms could lead to new therapeutics that inhibit or activate PKGs, complementing drugs that target nitric oxide synthases and cyclic nucleotide phosphodiesterases in this signaling axis. Alternate splicing of PRKG1 transcripts confers distinct leucine zippers, linkers, and auto-inhibitory (AI) pseudo-substrate sequences to PKG Iα and Iβ that result in isoform-specific activation properties, but the mechanism of enzyme auto-inhibition and its alleviation …
Twist1 Interacts With Β/Δ-Catenins During Neural Tube Development And Regulates Fate Transition In Cranial Neural Crest Cells, Jessica W Bertol, Shelby Johnston, Rabia Ahmed, Victoria K Xie, Kelsea M Hubka, Lissette Cruz, Larissa Nitschke, Marta Stetsiv, Jeremy P Goering, Paul Nistor, Sally Lowell, Hanne Hoskens, Peter Claes, Seth M Weinberg, Irfan Saadi, Mary C Farach-Carson, Walid D Fakhouri
Twist1 Interacts With Β/Δ-Catenins During Neural Tube Development And Regulates Fate Transition In Cranial Neural Crest Cells, Jessica W Bertol, Shelby Johnston, Rabia Ahmed, Victoria K Xie, Kelsea M Hubka, Lissette Cruz, Larissa Nitschke, Marta Stetsiv, Jeremy P Goering, Paul Nistor, Sally Lowell, Hanne Hoskens, Peter Claes, Seth M Weinberg, Irfan Saadi, Mary C Farach-Carson, Walid D Fakhouri
Faculty, Staff and Student Publications
Cell fate determination is a necessary and tightly regulated process for producing different cell types and structures during development. Cranial neural crest cells (CNCCs) are unique to vertebrate embryos and emerge from the neural plate borders into multiple cell lineages that differentiate into bone, cartilage, neurons and glial cells. We have previously reported that Irf6 genetically interacts with Twist1 during CNCC-derived tissue formation. Here, we have investigated the mechanistic role of Twist1 and Irf6 at early stages of craniofacial development. Our data indicate that TWIST1 is expressed in endocytic vesicles at the apical surface and interacts with β/δ-catenins during neural …
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
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
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 …
Altered Genome-Wide Hippocampal Gene Expression Profiles Following Early Life Lead Exposure And Their Potential For Reversal By Environmental Enrichment, Garima Singh, V Singh, T Kim, A Ertel, W Fu, J S Schneider
Altered Genome-Wide Hippocampal Gene Expression Profiles Following Early Life Lead Exposure And Their Potential For Reversal By Environmental Enrichment, Garima Singh, V Singh, T Kim, A Ertel, W Fu, J S Schneider
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Early life lead (Pb) exposure is detrimental to neurobehavioral development. The quality of the environment can modify negative influences from Pb exposure, impacting the developmental trajectory following Pb exposure. Little is known about the molecular underpinnings in the brain of the interaction between Pb and the quality of the environment. We examined relationships between early life Pb exposure and living in an enriched versus a non-enriched postnatal environment on genome-wide transcription profiles in hippocampus CA1. RNA-seq identified differences in the transcriptome of enriched vs. non-enriched Pb-exposed animals. Most of the gene expression changes associated with Pb exposure were reversed by …
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
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.
The Use Of Second-Generation Antipsychotics And The Changes In Physical Growth In Children And Adolescents With Perinatally Acquired Hiv, Nan Xin, Jenni Durieux, Chunxia Yang, Suzanne Wolff, Hyun-Eui Kim, Andrew Dillin
The Use Of Second-Generation Antipsychotics And The Changes In Physical Growth In Children And Adolescents With Perinatally Acquired Hiv, Nan Xin, Jenni Durieux, Chunxia Yang, Suzanne Wolff, Hyun-Eui Kim, Andrew Dillin
Faculty, Staff and Student Publications
The mitochondrial unfolded protein response (UPRmt) is dedicated to promoting mitochondrial proteostasis and is linked to extreme longevity. The key regulator of this process is the transcription factor ATFS-1, which, upon UPRmt activation, is excluded from the mitochondria and enters the nucleus to regulate UPRmt genes. However, the repair proteins synthesized as a direct result of UPRmt activation must be transported into damaged mitochondria that had previously excluded ATFS-1 owing to reduced import efficiency. To address this conundrum, we analyzed the role of the import machinery when the UPRmt was induced. Using in vitro and in vivo analysis of mitochondrial …
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
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 …
The Evolution And Structure/Function Of Bhlh-Pas Transcription Factor Family, Hailey E Edwards, Daniel A Gorelick
The Evolution And Structure/Function Of Bhlh-Pas Transcription Factor Family, Hailey E Edwards, Daniel A Gorelick
Faculty, Staff and Students Publications
Proteins that contain basic helix-loop-helix (bHLH) and Per-Arnt-Sim motifs (PAS) function as transcription factors. bHLH-PAS proteins exhibit essential and diverse functions throughout the body, from cell specification and differentiation in embryonic development to the proper function of organs like the brain and liver in adulthood. bHLH-PAS proteins are divided into two classes, which form heterodimers to regulate transcription. Class I bHLH-PAS proteins are typically activated in response to specific stimuli, while class II proteins are expressed more ubiquitously. Here, we discuss the general structure and functions of bHLH-PAS proteins throughout the animal kingdom, including family members that do not fit …
Mycn-Driven Fatty Acid Uptake Is A Metabolic Vulnerability In Neuroblastoma, Ling Tao, Mahmoud A Mohammad, Giorgio Milazzo, Myrthala Moreno-Smith, Tajhal D Patel, Barry Zorman, Andrew Badachhape, Blanca E Hernandez, Amber B Wolf, Zihua Zeng, Jennifer H Foster, Sara Aloisi, Pavel Sumazin, Youli Zu, John Hicks, Ketan B Ghaghada, Nagireddy Putluri, Giovanni Perini, Cristian Coarfa, Eveline Barbieri
Mycn-Driven Fatty Acid Uptake Is A Metabolic Vulnerability In Neuroblastoma, Ling Tao, Mahmoud A Mohammad, Giorgio Milazzo, Myrthala Moreno-Smith, Tajhal D Patel, Barry Zorman, Andrew Badachhape, Blanca E Hernandez, Amber B Wolf, Zihua Zeng, Jennifer H Foster, Sara Aloisi, Pavel Sumazin, Youli Zu, John Hicks, Ketan B Ghaghada, Nagireddy Putluri, Giovanni Perini, Cristian Coarfa, Eveline Barbieri
Faculty, Staff and Students Publications
Neuroblastoma (NB) is a childhood cancer arising from sympatho-adrenal neural crest cells. MYCN amplification is found in half of high-risk NB patients; however, no available therapies directly target MYCN. Using multi-dimensional metabolic profiling in MYCN expression systems and primary patient tumors, we comprehensively characterized the metabolic landscape driven by MYCN in NB. MYCN amplification leads to glycerolipid accumulation by promoting fatty acid (FA) uptake and biosynthesis. We found that cells expressing amplified MYCN depend highly on FA uptake for survival. Mechanistically, MYCN directly upregulates FA transport protein 2 (FATP2), encoded by SLC27A2. Genetic depletion of SLC27A2 impairs NB survival, and …
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells, Yuxi Ai, Dongming Liang, Jeremy E Wilusz
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells, Yuxi Ai, Dongming Liang, Jeremy E Wilusz
Faculty, Staff and Students Publications
CRISPR/Cas13 effectors have garnered increasing attention as easily customizable tools for detecting and depleting RNAs of interest. Near perfect complementarity between a target RNA and the Cas13-associated guide RNA is required for activation of Cas13 ribonuclease activity. Nonetheless, the specificity of Cas13 effectors in eukaryotic cells has been debated as the Cas13 nuclease domains can be exposed on the enzyme surface, providing the potential for promiscuous cleavage of nearby RNAs (so-called collateral damage). Here, using co-transfection assays in Drosophila and human cells, we found that the off-target effects of RxCas13d, a commonly used Cas13 effector, can be as strong as …
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
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
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
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
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
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 …
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
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
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
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
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 …
Patterns Of Crystallin Gene Expression In Differentiation State Specific Regions Of The Embryonic Chicken Lens, Zhiwei Ma, Daniel Chauss, Joshua Disatham, Xiaodong Jiao, Lisa Ann Brennan, A Sue Menko, Marc Kantorow, J Fielding Hejtmancik
Patterns Of Crystallin Gene Expression In Differentiation State Specific Regions Of The Embryonic Chicken Lens, Zhiwei Ma, Daniel Chauss, Joshua Disatham, Xiaodong Jiao, Lisa Ann Brennan, A Sue Menko, Marc Kantorow, J Fielding Hejtmancik
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Purpose: Transition from lens epithelial cells to lens fiber cell is accompanied by numerous changes in gene expression critical for lens transparency. We identify expression patterns of highly prevalent genes including ubiquitous and enzyme crystallins in the embryonic day 13 chicken lens.
Methods: Embryonic day 13 chicken lenses were dissected into central epithelial cell (EC), equatorial epithelial cell (EQ), cortical fiber cell (FP), and nuclear fiber cell (FC) compartments. Total RNA was prepared, subjected to high-throughput unidirectional mRNA sequencing, analyzed, mapped to the chicken genome, and functionally grouped.
Results: A total of 77,097 gene-specific transcripts covering 17,450 genes were expressed, …
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
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, …
Uncontrolled Mitochondrial Calcium Uptake Underlies The Pathogenesis Of Neurodegeneration In Micu1-Deficient Mice And Patients, Raghavendra Singh, Adam Bartok, Melanie Paillard, Ashley L. Tyburski, Melanie B Elliott, György Hajnóczky
Uncontrolled Mitochondrial Calcium Uptake Underlies The Pathogenesis Of Neurodegeneration In Micu1-Deficient Mice And Patients, Raghavendra Singh, Adam Bartok, Melanie Paillard, Ashley L. Tyburski, Melanie B Elliott, György Hajnóczky
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Dysregulation of mitochondrial Ca2+ homeostasis has been linked to neurodegenerative diseases. Mitochondrial Ca2+ uptake is mediated via the calcium uniporter complex that is primarily regulated by MICU1, a Ca2+-sensing gatekeeper. Recently, human patients with MICU1 loss-of-function mutations were diagnosed with neuromuscular and cognitive impairments. While studies in patient-derived cells revealed altered mitochondrial calcium signaling, the neuronal pathogenesis was difficult to study. To fill this void, we created a neuron-specific MICU1-KO mouse model. These animals show progressive, abnormal motor and cognitive phenotypes likely caused by the degeneration of motor neurons in the spinal cord and the cortex. We found increased susceptibility …
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
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
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
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 …
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
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
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 …
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
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 …