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Articles 481 - 510 of 4655
Full-Text Articles in Entire DC Network
Alternating Hemiplegia Of Childhood Associated Mutations In Atp1a3 Reveal Diverse Neurological Alterations In Mice., Markus Terrey, Georgii Krivoshein, Scott I Adamson, Elena Arystarkhova, Laura C. Anderson, John Szwec, Shelby Mckee, Holly Jones, Sara Perkins, Vijay Selvam, Pierre-Alexandre Piec, Dweet Chhaya, Ari Dehn, Aamir Zuberi, Stephen A Murray, Natalia S Morsci, Kathleen J Sweadner, David A Knowles, Else A Tolner, Arn M J M Van Den Maagdenberg, Cathleen Lutz
Alternating Hemiplegia Of Childhood Associated Mutations In Atp1a3 Reveal Diverse Neurological Alterations In Mice., Markus Terrey, Georgii Krivoshein, Scott I Adamson, Elena Arystarkhova, Laura C. Anderson, John Szwec, Shelby Mckee, Holly Jones, Sara Perkins, Vijay Selvam, Pierre-Alexandre Piec, Dweet Chhaya, Ari Dehn, Aamir Zuberi, Stephen A Murray, Natalia S Morsci, Kathleen J Sweadner, David A Knowles, Else A Tolner, Arn M J M Van Den Maagdenberg, Cathleen Lutz
Faculty Research 2025
Pathogenic variants in the neuronal Na+/K+ ATPase transmembrane ion transporter (ATP1A3) cause a spectrum of neurological disorders including alternating hemiplegia of childhood (AHC). The most common de novo pathogenic variants in AHC are p.D801N (∼40 % of patients) and p.E815K (∼25 % of patients), which lead to early mortality by spontaneous death in mice. Nevertheless, knowledge of the development of clinically relevant neurological phenotypes without the obstacle of premature death, is critical for the identification of pathophysiological mechanisms and ultimately, for the testing of therapeutic strategies in disease models. Here, we used hybrid vigor attempting …
The Inside Scoop: Elucidating The Three-Way Relationship Between Schistosoma Mansoni, The Gut, And Vaccines, Mariam A. Mhanna
The Inside Scoop: Elucidating The Three-Way Relationship Between Schistosoma Mansoni, The Gut, And Vaccines, Mariam A. Mhanna
Biomedical Sciences Theses & Dissertations
Schistosomiasis is a neglected tropical disease that affects over 250 million people worldwide. This blood fluke infection burdens communities and areas with limited to no access to clean fresh water. When a host is exposed to cercariae, the infectious agent, in a body of water, it matures in the host’s circulation into adult female and male worms. Copulated adult worms migrate to the mesentery, in the case of Schistosoma mansoni, and produce eggs that can cross the intestinal barrier and get excreted in the feces to continue the lifecycle. The effects of S. mansoni infection on the host …
Semaphorin 3e-Plexin-D1 Pathway Downstream Of The Luteinizing Hormone Surge Regulates Ovulation, Granulosa Cell Luteinization, And Ovarian Angiogenesis In Mice, Hanxue Zhang, Jimmy Dhillon, Paul D Soloway, Bo Shui, Seoyeon Lee, Jennifer K Grenier, Paul R Munn, M Cecilia Ljungberg, Rebecca B Williams, Rainer B Lanz, Yu-Hsiang Liao, Yi A Ren
Semaphorin 3e-Plexin-D1 Pathway Downstream Of The Luteinizing Hormone Surge Regulates Ovulation, Granulosa Cell Luteinization, And Ovarian Angiogenesis In Mice, Hanxue Zhang, Jimmy Dhillon, Paul D Soloway, Bo Shui, Seoyeon Lee, Jennifer K Grenier, Paul R Munn, M Cecilia Ljungberg, Rebecca B Williams, Rainer B Lanz, Yu-Hsiang Liao, Yi A Ren
Faculty, Staff and Students Publications
Ovulation is induced by the luteinizing hormone (LH) surge and accompanied by granulosa cell luteinization and ovarian angiogenesis. Semaphorin 3E (Sema3E)-Plexin-D1 pathway regulates angiogenesis in other tissues, but its role in the ovary is unknown. Evidence indicates that Sema3E-Plexin-D1 pathway plays an important role in the mouse ovary. The expression of Sema3E and its receptor, Plexin-D1, is dynamically regulated in the mouse ovary downstream of the LH surge. This regulation requires the modulation of chromatin accessibility by CCAAT/enhancer-binding proteins α and β. Intraovarian injection of recombinant Sema3E results in reduced ovulation, impaired corpus luteum formation, and aberrant ovarian angiogenesis. These …
Multicenter Span Trial Of Fasudil In Ischemic Stroke, Takahiko Imai, Andreia Lopes De Morais, Xuyan Jin, Tao Qin, Jessica Lamb, Karisma A Nagarkatti, Mu-Hsun Chen, Ligia S B Boisserand, Rakesh B Patel, Mariia Kumskova, Anjali Chauhan, Krishnan M Dhandapani, Mohammad B Khan, Pradip K Kamat, Yanrong Shi, Suyi Cao, Basavaraju G Sanganahalli, Joseph B Mandeville, Patrick D Lyden, David C Hess, Enrique C Leira, Anil K Chauhan, Jaroslaw Aronowski, Louise D Mccullough, Raymond C Koehler, Lauren H Sansing, Márcio A Diniz, Cenk Ayata
Multicenter Span Trial Of Fasudil In Ischemic Stroke, Takahiko Imai, Andreia Lopes De Morais, Xuyan Jin, Tao Qin, Jessica Lamb, Karisma A Nagarkatti, Mu-Hsun Chen, Ligia S B Boisserand, Rakesh B Patel, Mariia Kumskova, Anjali Chauhan, Krishnan M Dhandapani, Mohammad B Khan, Pradip K Kamat, Yanrong Shi, Suyi Cao, Basavaraju G Sanganahalli, Joseph B Mandeville, Patrick D Lyden, David C Hess, Enrique C Leira, Anil K Chauhan, Jaroslaw Aronowski, Louise D Mccullough, Raymond C Koehler, Lauren H Sansing, Márcio A Diniz, Cenk Ayata
Children’s Nutrition Research Center Staff Publications
Background: The SPAN (Stroke Preclinical Assessment Network) is a confirmatory multicenter trial network to test cerebroprotective interventions in experimental acute stroke. In a first-of-its-kind trial, SPAN tested 6 interventions in a rodent model of transient focal ischemic stroke. Here, we report the efficacy of fasudil, an isoform-nonselective rho-associated kinase inhibitor, on primary and secondary outcomes in the SPAN trial.
Methods: Fasudil was administered at 10 mg/kg intraperitoneally every 12 hours for 6 doses starting 5 minutes before reperfusion in a 60-minute endovascular filament middle cerebral artery occlusion model. The active treatment arm (n=345) was compared with the pooled intraperitoneal and …
Low-Dose Metformin Requires Brain Rap1 For Its Antidiabetic Action, Hsiao-Yun Lin, Weisheng Lu, Yanlin He, Yukiko Fu, Kentaro Kaneko, Peimeng Huang, Ana B De La Puente-Gomez, Chunmei Wang, Yongjie Yang, Feng Li, Yong Xu, Makoto Fukuda
Low-Dose Metformin Requires Brain Rap1 For Its Antidiabetic Action, Hsiao-Yun Lin, Weisheng Lu, Yanlin He, Yukiko Fu, Kentaro Kaneko, Peimeng Huang, Ana B De La Puente-Gomez, Chunmei Wang, Yongjie Yang, Feng Li, Yong Xu, Makoto Fukuda
Faculty, Staff and Students Publications
Metformin is the most commonly prescribed antidiabetes drug, yet its precise mechanism of action remains controversial. Previous studies have suggested that metformin acts peripherally by reducing hepatic glucose output and altering gut functions. Here, we report a neural mechanism via the small guanosine triphosphatase Ras-related protein 1 (Rap1). Mice with forebrain-specific Rap1 knockout exhibited resistance to the antidiabetic effects of low-dose metformin while remaining sensitive to other antidiabetic agents. Centrally administered metformin inhibited brain Rap1 and reduced hyperglycemia. Conversely, forced activation of brain Rap1 increased glycemia and abolished the glycemic effect of metformin. Metformin activated a specific subset of neurons …
Nerve-To-Cancer Transfer Of Mitochondria During Cancer Metastasis, Gregory Hoover, Shila Gilbert, Olivia Curley, Clémence Obellianne, Mike T Lin, William Hixson, Terry W Pierce, Joel F Andrews, Mikhail F Alexeyev, Yi Ding, Ping Bu, Fariba Behbod, Daniel Medina, Jeffrey T Chang, Gustavo Ayala, Simon Grelet
Nerve-To-Cancer Transfer Of Mitochondria During Cancer Metastasis, Gregory Hoover, Shila Gilbert, Olivia Curley, Clémence Obellianne, Mike T Lin, William Hixson, Terry W Pierce, Joel F Andrews, Mikhail F Alexeyev, Yi Ding, Ping Bu, Fariba Behbod, Daniel Medina, Jeffrey T Chang, Gustavo Ayala, Simon Grelet
Faculty, Staff and Students Publications
The nervous system has a pivotal role in cancer biology, and pathological investigations have linked intratumoural nerve density to metastasis1. However, the precise impact of cancer-associated neurons and the communication channels at the nerve–cancer interface remain poorly understood. Previous cancer denervation models in rodents and humans have highlighted robust cancer dependency on nerves, but the underlying mechanisms that drive nerve-mediated cancer aggressivity remain unknown2,3. Here we show that cancer-associated neurons enhance cancer metabolic plasticity by transferring mitochondria to cancer cells. Breast cancer denervation and nerve–cancer coculture models confirmed that neurons significantly improve tumour energetics. …
Rapid Dissection And Dissociation Of The Mouse Olfactory Epithelium For Single-Nucleus Suspensions, Benjamin D W Belfort, Anthony M Insalaco, Claude C Chew, Johnathan D Jia, Julia Younis, Benjamin R Arenkiel
Rapid Dissection And Dissociation Of The Mouse Olfactory Epithelium For Single-Nucleus Suspensions, Benjamin D W Belfort, Anthony M Insalaco, Claude C Chew, Johnathan D Jia, Julia Younis, Benjamin R Arenkiel
Duncan NRI Faculty and Staff Publications
The murine olfactory epithelium is the initial entry point of the olfactory system, housing various cell types that include olfactory sensory neurons, their regenerating progenitors, and support cells. Olfactory sensory neurons transduce chemical odorants into neural signals, yet the mechanisms underlying how these cells develop and turnover, create synapses with the olfactory bulb, and regulate their odorant receptors remain areas of intense study. Located on the dorsal aspect of the nasal cavity, the olfactory epithelium adheres to intricate bony structures known as turbinates. This anatomy poses unique challenges for its extraction and dissociation, especially in the context of preparing viable …
Sugar Functionalized Collagen Material For Local Modulation Of Innate Immunity, Francesca Taraballi, Claudia Corbo, Julia Enterria-Rosales, John Otto Martinez, Silvia Minardi, Laura Pandolfi, Xing Wang, Ennio Tasciotti, Kavindra V Singh, Cesar A Arias, Bruna Corradetti
Sugar Functionalized Collagen Material For Local Modulation Of Innate Immunity, Francesca Taraballi, Claudia Corbo, Julia Enterria-Rosales, John Otto Martinez, Silvia Minardi, Laura Pandolfi, Xing Wang, Ennio Tasciotti, Kavindra V Singh, Cesar A Arias, Bruna Corradetti
Faculty, Staff and Students Publications
Small alterations during the early stages of the innate immune response to an implant can drive large changes in adaptive immunity. Biomaterials for regenerative purposes can be engineered to modulate this immune response in beneficial ways. This study presents an innovative patch designed and functionalized to target the innate immunity at the implant site. Mannose moieties are incorporated into collagen patches, resulting in a technology called Local Immunotuning Patch (LIP), designed to directly interact with antigen presenting cells through their mannose receptor. In vitro, LIP shows anti-inflammatory effects on bone marrow-derived macrophages and inhibitory properties even on methicillin-resistant bacterial strains. …
The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R Cox, Rabie Habib, Michael J Bolt, Jessica B Felix, Claudia E Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M Hartig
The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R Cox, Rabie Habib, Michael J Bolt, Jessica B Felix, Claudia E Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M Hartig
Faculty, Staff and Student Publications
White adipose tissue (WAT) fibrosis occurring in obesity contributes to the inflammatory and metabolic comorbidities of insulin resistance and type 2 diabetes, yet the mechanisms involved remain poorly understood. Here, we report a role for the broadly conserved miRNA miR-30a as a regulator of WAT fibrosis and systemic glucose metabolism. Mice modified to express miR-30a at elevated levels in adipose tissues maintain insulin sensitivity coupled with reduced fatty liver disease when fed a high-fat diet. These effects were attributable to cell-autonomous functions of miR-30a that potently increase expression of adipocyte-specific genes. Proteomic screening revealed miR-30a limits profibrotic programs in subcutaneous …
Human And Mouse Alzheimer's Seeds Differentially Affect Amyloid Deposition And Microglia-Dependent Plaque Response In Aged Mice, Juana Andreo-Lopez, Cristina Nuñez-Diaz, Kelly Do Huynh, Marie Minh Thu Nguyen, Celia Da Cunha, Francisco J Cantero-Molina, Cynthia Campos-Moreno, Stefania Zimbone, Francesco Bellia, Maria Laura Giuffrida, Laura Trujillo-Estrada, Juan Antonio Garcia-Leon, Miriam Bettinetti-Luque, Nazaret Gamez, Catalina Valdes, Rodrigo Morales, Stefania Forner, Alessandra C Martini, Antonia Gutierrez, Frank M Laferla, David Baglietto-Vargas
Human And Mouse Alzheimer's Seeds Differentially Affect Amyloid Deposition And Microglia-Dependent Plaque Response In Aged Mice, Juana Andreo-Lopez, Cristina Nuñez-Diaz, Kelly Do Huynh, Marie Minh Thu Nguyen, Celia Da Cunha, Francisco J Cantero-Molina, Cynthia Campos-Moreno, Stefania Zimbone, Francesco Bellia, Maria Laura Giuffrida, Laura Trujillo-Estrada, Juan Antonio Garcia-Leon, Miriam Bettinetti-Luque, Nazaret Gamez, Catalina Valdes, Rodrigo Morales, Stefania Forner, Alessandra C Martini, Antonia Gutierrez, Frank M Laferla, David Baglietto-Vargas
Faculty, Staff and Student Publications
Alzheimer's disease (AD) is a complex neurodegenerative proteinopathy in which Aβ and tau misfold and aggregate into entities that structurally unsettle native proteins, mimicking a prion-like or "seeding" process. These Aβ and tau "seeds" can arrange in different conformations or strains that might display distinct pathogenic properties. Furthermore, recent evidence suggests that microglia play a key role in the amyloidogenic event and can modulate the propagation and aggregation processes. Here, we employed histological and molecular approaches to determine whether seeds from human AD brains compared to those from transgenic mice (3xTg-AD) are more prone to induce Aβ and tau aggregates …
The Glycosyltransferase Poglut1 Regulates Muscle Stem Cell Development And Maintenance In Mice, Soomin Cho, Emilia Servián-Morilla, Victoria Navarro, Beatriz Rodriguez-Gonzalez, Youxi Yuan, Raquel Cano, Arjun A Rambhiya, Radbod Darabi, Robert S Haltiwanger, Carmen Paradas, Hamed Jafar-Nejad
The Glycosyltransferase Poglut1 Regulates Muscle Stem Cell Development And Maintenance In Mice, Soomin Cho, Emilia Servián-Morilla, Victoria Navarro, Beatriz Rodriguez-Gonzalez, Youxi Yuan, Raquel Cano, Arjun A Rambhiya, Radbod Darabi, Robert S Haltiwanger, Carmen Paradas, Hamed Jafar-Nejad
Faculty, Staff and Students Publications
Mutations in protein O-glucosyltransferase 1 (POGLUT1) cause a recessive limb-girdle muscular dystrophy (LGMDR21) with reduced satellite cell number and NOTCH1 signaling in adult patient muscles and impaired myogenic capacity of patient-derived muscle progenitors. However, the in vivo roles of POGLUT1 in the development, function, and maintenance of satellite cells are not well understood. Here, we show that conditional deletion of mouse Poglut1 in myogenic progenitors leads to early lethality, postnatal muscle growth defects, reduced Pax7 expression, abnormality in muscle extracellular matrix, and impaired muscle repair. Poglut1-deficient muscle progenitors exhibit reduced proliferation, enhanced differentiation, and accelerated fusion into myofibers. Inducible loss …
Mx1-Labeled Pulp Progenitor Cells Are The Main Contributors Of Odontoblast And Dentin Regeneration In Murine Molars, Dongwook Yang, Youngjae Jeong, Laura Ortinau, Jea Giezl Solidum, Dongsu Park
Mx1-Labeled Pulp Progenitor Cells Are The Main Contributors Of Odontoblast And Dentin Regeneration In Murine Molars, Dongwook Yang, Youngjae Jeong, Laura Ortinau, Jea Giezl Solidum, Dongsu Park
Faculty, Staff and Students Publications
Regeneration of dentin and odontoblasts from dental pulp progenitor cells is essential for the maintenance of permanent tooth. However, the in vivo identity of endogenous pulp progenitor cells and how they contribute to reparative dentinogenesis remain elusive. Here we show that comparative single-cell analysis of pulp cells before and after molar eruption reveal that endogenous pulp progenitor cells are enriched in coronal papilla-like cells with Mx1-Cre and Cxcl12–GFP expression. Further, lineage tracing and fluorescence-activated cell sorting analysis indicated that Mx1-labeled (Mx1+) pulp cells include long-term repopulating progenitor cells with higher expression of stem cell markers. Notably, …
Inhibition Of Methylthioadenosine Phosphorylase Protects From Experimental Acute Kidney Injury, Afaf Saliba, Yidong Chen, Jonathan W Nelson, Abhinav Vetcha, Wei Wei Wang, Li Kang, Nagarjunachary Ragi, Soumya Maity, Hamid Rabb, W Brian Reeves, Kumar Sharma
Inhibition Of Methylthioadenosine Phosphorylase Protects From Experimental Acute Kidney Injury, Afaf Saliba, Yidong Chen, Jonathan W Nelson, Abhinav Vetcha, Wei Wei Wang, Li Kang, Nagarjunachary Ragi, Soumya Maity, Hamid Rabb, W Brian Reeves, Kumar Sharma
Faculty, Staff and Student Publications
Methylthioadenosine phosphorylase (MTAP) is a key enzyme in purine metabolism that may influence cellular responses to injury. We evaluated the effects of prophylactic MTAP inhibition in mouse models of ischemia-reperfusion and cisplatin-induced acute kidney injury (AKI). MTAP inhibition was confirmed by accumulation of methylthioadenosine (MTA). Treated mice showed reduced renal injury and decreased tubular damage. Transcriptomic analysis revealed protection from inflammatory and stress pathways, while maintaining oxidative phosphorylation, fatty acid metabolism, and epithelial integrity-related genes. Analysis of human single-cell RNA-seq data from the Kidney Precision Medicine Project indicated that MTAP is highly expressed in kidney injury marker-positive adaptive proximal tubule …
Orp2 Regulates Free Cholesterol Accumulation In Hepatocytes During Mash, Jin Wu, Yudi Zhao, Liwen Qiu, Qiaoli Chen, Xiaowei Wang, Jingwen Gu, Yan Liang, Yingjie Zhang, Hong-Yu Wang, Yang Liu, Xiaoqin Wu, Shuai Chen, Feng-Jung Chen, Mingming Gao, Hongyuan Yang
Orp2 Regulates Free Cholesterol Accumulation In Hepatocytes During Mash, Jin Wu, Yudi Zhao, Liwen Qiu, Qiaoli Chen, Xiaowei Wang, Jingwen Gu, Yan Liang, Yingjie Zhang, Hong-Yu Wang, Yang Liu, Xiaoqin Wu, Shuai Chen, Feng-Jung Chen, Mingming Gao, Hongyuan Yang
Faculty, Staff and Student Publications
Background: Cholesterol crystals in hepatocytes are known to strongly associate with human metabolic dysfunction-associated steatohepatitis. However, it remains unclear which molecular pathway(s) regulates free cholesterol accumulation and the formation of cholesterol crystals in hepatocytes. In cultured cell lines, oxysterol-binding protein-related protein 2 (ORP2) functions to deliver cholesterol to the plasma membrane from endosomal compartments.
Methods: Here, we generated liver-specific ORP2 knockout (ORP2-LKO) mice and characterized their metabolic phenotypes on chow and high-fat diet.
Results: The ORP2-LKO mice developed much more severe hepatic steatosis than floxed control mice after high-fat diet feeding. They also demonstrated more severe liver inflammation and damage. …
The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R. Cox, Rabie Habib, Michael J. Bolt, Jessica B. Felix, Claudia E. Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M. Hartig
The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R. Cox, Rabie Habib, Michael J. Bolt, Jessica B. Felix, Claudia E. Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M. Hartig
2020-Current year OA Pubs
White adipose tissue (WAT) fibrosis occurring in obesity contributes to the inflammatory and metabolic comorbidities of insulin resistance and type 2 diabetes, yet the mechanisms involved remain poorly understood. Here, we report a role for the broadly conserved miRNA miR-30a as a regulator of WAT fibrosis and systemic glucose metabolism. Mice modified to express miR-30a at elevated levels in adipose tissues maintain insulin sensitivity coupled with reduced fatty liver disease when fed a high-fat diet. These effects were attributable to cell-autonomous functions of miR-30a that potently increase expression of adipocyte-specific genes. Proteomic screening revealed miR-30a limits profibrotic programs in subcutaneous …
Active Dna Demethylation Upstream Of Rod-Photoreceptor Fate Determination Is Required For Retinal Development, Ismael Hernández-Núñez, Alaina Urman, Xiaodong Zhang, William Jacobs, Christy Hoffmann, Ellen G. Harding, Shiming Chen, Meelad M. Dawlaty, Philip A. Ruzycki, John R. Edwards, Brian S. Clark
Active Dna Demethylation Upstream Of Rod-Photoreceptor Fate Determination Is Required For Retinal Development, Ismael Hernández-Núñez, Alaina Urman, Xiaodong Zhang, William Jacobs, Christy Hoffmann, Ellen G. Harding, Shiming Chen, Meelad M. Dawlaty, Philip A. Ruzycki, John R. Edwards, Brian S. Clark
2020-Current year OA Pubs
Retinal cell fate specification from multipotent retinal progenitors is governed by dynamic changes in chromatin structure and gene expression. Methylation at cytosines in DNA (5mC) is actively regulated for proper control of gene expression and chromatin architecture. Numerous genes display active DNA demethylation across retinal development; a process that requires oxidation of 5mC to 5-hydroxymethylcytosine (5hmC) and is controlled by the ten-eleven translocation (TET) methylcytosine dioxygenase enzymes. Using an allelic series of conditional TET enzyme mutants in mice, we determine that DNA demethylation is required upstream of NRL and NR2E3 expression for the establishment of rod-photoreceptor fate. Using histological, behavioral, …
Autophagy Regulates Müller Glial Cell Inflammatory Activation, Teresa A Doggett, Zhenqing Zhou, Sohini Rebba, Jacqueline Unsinger, Philip A Ruzycki, Thomas A Ferguson
Autophagy Regulates Müller Glial Cell Inflammatory Activation, Teresa A Doggett, Zhenqing Zhou, Sohini Rebba, Jacqueline Unsinger, Philip A Ruzycki, Thomas A Ferguson
2020-Current year OA Pubs
PURPOSE: We tested whether Müller cells utilize autophagy to support immune privilege in the eye.
METHODS: The essential autophagy gene Atg5 was deleted in retinal Müller cells. Inflammation was induced by intravitreal injection of lipopolysaccharide (LPS) that was monitored by hematoxylin and eosin (H&E) staining, immunofluorescent confocal microscopy, and flow cytometry. Single-cell RNA sequencing was performed on retinal Müller cells isolated from control and Atg5-deficient mice. Markers of Müller cell gliosis were assessed, and cytokine production in the eye was measured. Small interfering RNA knockdown techniques were used to examine LPS-induced inflammatory pathways in culture.
RESULTS: We observed increased and …
Ctnna3 Deficiency Promotes Heart Regeneration By Enhancing Cardiomyocyte Proliferation In Neonatal Mice, Sha Zou, Wuhou Dai, Wufan Tao, Jifen Li, Zeyi Cheng, Hongyan Wang
Ctnna3 Deficiency Promotes Heart Regeneration By Enhancing Cardiomyocyte Proliferation In Neonatal Mice, Sha Zou, Wuhou Dai, Wufan Tao, Jifen Li, Zeyi Cheng, Hongyan Wang
Department of Medicine Faculty Papers
Background: Heart regeneration requires renewal of lost cardiomyocytes. However, the mammalian heart loses its proliferative capacity soon after birth, and the molecular signaling underlying the loss of cardiac proliferation postnatally is not fully understood.
Purpose: This study aimed to investigate the role of Catenin alpha 3 (Ctnna3), coding for alpha T catenin (αT-catenin) protein in regulating cardiomyocyte proliferation and heart regeneration during the neonatal period.
Methods: Here we report that ablation of Ctnna3 and highly expressed in hearts, accelerated heart regeneration following heart apex resection in neonatal mice.
Results: Our results show that Ctnna3 deficiency enhances cardiomyocyte proliferation …
Single-Nuclei Multiomics Analysis Identifies Abnormal Cardiomyocytes In A Murine Model Of Cardiac Development., Riley Leonard, Yi Zhao, Steven Eliason, Kathy Zimmerman, Ariana Batz, Cathy J. Hatcher, Robert M Weiss, Mason Sweat, Xiao Li, Brad A Amendt
Single-Nuclei Multiomics Analysis Identifies Abnormal Cardiomyocytes In A Murine Model Of Cardiac Development., Riley Leonard, Yi Zhao, Steven Eliason, Kathy Zimmerman, Ariana Batz, Cathy J. Hatcher, Robert M Weiss, Mason Sweat, Xiao Li, Brad A Amendt
PCOM Scholarly Works
Transcription factors such as Tbx5, Gata4, Mef2c and Pitx2 are required during cardiac development, and in adult cardiac homeostasis. We demonstrate that the gene dosage and modulation of these factors are mediated in vivo by the miR-200 family. Inhibition of a single miR-200 family member within the cluster results in defects of the left ventricle and cardiomyocyte maturation during development. Inhibition of the entire miR-200 family results in a ventricular septal defect and embryonic lethality by embryonic day (E)16.5. Inhibition of each miR-200 family has distinct heart phenotypes in cell specific differentiation and maturation. snRNA-sequencing reveals an immature cardiomyocyte cell …
Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J. Purwin, Casey D. Stefanski, Renaira Oliveira Da Silva, Mitchell E. Fane, Yash Chhabra, Jelan I. Haj, Jessica L. F. Teh, Rama Kadamb, Weijia Cai, Sheera Rosenbaum, Vivian Chua, Nir Hacohen, Michael A. Davies, Jessie Villanueva, Inna Chervoneva, Ashani T. Weeraratna, Dan A. Erkes, Claudia Capparelli, Julio A. Aguirre-Ghiso, Andrew E. Aplin
Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J. Purwin, Casey D. Stefanski, Renaira Oliveira Da Silva, Mitchell E. Fane, Yash Chhabra, Jelan I. Haj, Jessica L. F. Teh, Rama Kadamb, Weijia Cai, Sheera Rosenbaum, Vivian Chua, Nir Hacohen, Michael A. Davies, Jessie Villanueva, Inna Chervoneva, Ashani T. Weeraratna, Dan A. Erkes, Claudia Capparelli, Julio A. Aguirre-Ghiso, Andrew E. Aplin
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Despite the success of targeted inhibitors in cutaneous melanoma, therapeutic responses are limited by the aged tumor microenvironment and drug-tolerant residual cells. Given the similarities between drug tolerance and cellular dormancy, we studied the dormancy marker, nuclear receptor subfamily 2 group F member 1 (NR2F1), in response to BRAF-V600E inhibitors (BRAFi) plus MEK inhibitors (MEKi) in BRAF-mutant melanoma models. Transcriptomic analysis of melanoma patient samples treated with BRAFi + MEKi showed increased NR2F1. NR2F1 was highly expressed in the drug-tolerant invasive cell state of minimal residual disease in patient-derived and mouse-derived xenografts on BRAFi + MEKi. NR2F1 over-expression was sufficient …
Cd45 And Cd148 Are Critically Involved In Neutrophil Recruitment And Function During Inflammatory Arthritis In Mice, Jan-Niklas Heming, Andreas Margraf, Karolina Najder, Giulia Germena, Mathis Richter, Anika Cappenberg, Katharina Henke, Bernadette Bardel, Lena Schemmelmann, Marina Oguama, Pia Lindental, Wida Amini, Jacqueline Sobocik, Georg Schett, Gerhard Krönke, Helena Block, Jan Rossaint, Oliver Soehnlein, Alexander Zarbock
Cd45 And Cd148 Are Critically Involved In Neutrophil Recruitment And Function During Inflammatory Arthritis In Mice, Jan-Niklas Heming, Andreas Margraf, Karolina Najder, Giulia Germena, Mathis Richter, Anika Cappenberg, Katharina Henke, Bernadette Bardel, Lena Schemmelmann, Marina Oguama, Pia Lindental, Wida Amini, Jacqueline Sobocik, Georg Schett, Gerhard Krönke, Helena Block, Jan Rossaint, Oliver Soehnlein, Alexander Zarbock
Faculty, Staff and Student Publications
Neutrophils play a key role in autoimmune diseases like rheumatoid arthritis, contributing to tissue damage through rapid recruitment and activation. In this study, we investigated the regulatory properties of two receptor-like tyrosine phosphatases (RPTPs), CD45 and CD148, in inflammatory arthritis. Using an in vivo mouse model of K/BxN serum transfer-induced arthritis, we found that CD45 and CD148 feature distinct regulatory properties during inflammatory arthritis. CD45 is required for neutrophil infiltration, cytokine release, and reactive oxygen species production, whereas CD148 deficiency leads to a delayed onset of arthritis but unaltered overall neutrophil infiltration and reduced ROS production. Furthermore, we could demonstrate …
Effects Of The Gut Microbiota On Placental Angiogenesis And Intrauterine Growth In Gnotobiotic Mice, Reyan Coskun, Zenan L Chang, Athziri Marcial Rodríguez, Haoxin Liu, Jiye Cheng, Yael Alippe, Michael S Diamond, Jeffrey I Gordon
Effects Of The Gut Microbiota On Placental Angiogenesis And Intrauterine Growth In Gnotobiotic Mice, Reyan Coskun, Zenan L Chang, Athziri Marcial Rodríguez, Haoxin Liu, Jiye Cheng, Yael Alippe, Michael S Diamond, Jeffrey I Gordon
2020-Current year OA Pubs
Environmental causes of intrauterine growth restriction (IUGR) remain poorly characterized. Here, we compare germ-free (GF) and conventionally raised (CONV-R) mice to assess the effects of the gut microbiota on placental/fetal development at embryonic day (E)11.5 (end of placentation) and E17.5 (near term). Pregnancy- and microbiota-associated changes in gene expression occur along the gut, including those related to angiogenesis, while bacterial composition and fermentation activity remain stable. Placental weights at E11.5 and fetal weights at E17.5 are significantly reduced in GF animals. Compared to CONV-R dams, the GF maternal decidua exhibits similar vascular histomorphometric features at E11.5 and E17.5, and numbers …
Phosphoglycerate Mutase Regulates Treg Differentiation Through Control Of Serine Synthesis And One-Carbon Metabolism, Wesley H Godfrey, Judy J Lee, Shruthi Shanmukha, Kaho Cho, Xiaojing Deng, Chandra Shekar R Ambati, Vasanta Putluri, Abu Hena Mostafa Kamal, Paul M Kim, Nagireddy Putluri, Michael D Kornberg
Phosphoglycerate Mutase Regulates Treg Differentiation Through Control Of Serine Synthesis And One-Carbon Metabolism, Wesley H Godfrey, Judy J Lee, Shruthi Shanmukha, Kaho Cho, Xiaojing Deng, Chandra Shekar R Ambati, Vasanta Putluri, Abu Hena Mostafa Kamal, Paul M Kim, Nagireddy Putluri, Michael D Kornberg
Faculty, Staff and Students Publications
The differentiation and suppressive functions of regulatory CD4 T cells (Tregs) are supported by a broad array of metabolic changes, providing potential therapeutic targets for immune modulation. In this study, we focused on the regulatory role of glycolytic enzymes in Tregs and identified phosphoglycerate mutase (PGAM) as being differentially overexpressed in Tregs and associated with a highly suppressive phenotype. Pharmacologic or genetic inhibition of PGAM reduced Treg differentiation and suppressive function while reciprocally inducing markers of a pro-inflammatory, T helper 17 (Th17)-like state. The regulatory role of PGAM was dependent on the contribution of 3-phosphoglycerate (3 PG), the PGAM substrate, …
Dietary Lipids Induce Ppard And Bcl6 To Repress Macrophage Il-23 Induction After Intestinal Injury And Lps Exposure, Ashleigh M Gil, Daniel F Zegarra-Ruiz, Wan-Jung Wu, Kendra Norwood, Adrien Assie, Buck S Samuel, Angela M Major, Gretchen E Diehl, Andrea A Hill Mcalester
Dietary Lipids Induce Ppard And Bcl6 To Repress Macrophage Il-23 Induction After Intestinal Injury And Lps Exposure, Ashleigh M Gil, Daniel F Zegarra-Ruiz, Wan-Jung Wu, Kendra Norwood, Adrien Assie, Buck S Samuel, Angela M Major, Gretchen E Diehl, Andrea A Hill Mcalester
Faculty, Staff and Students Publications
Unresolved tissue damage is a common feature of Inflammatory Bowel Disease (IBD) that facilitates disease progression. Here, we showed that high animal fat diets (HFD), an environmental risk factor associated with IBD pathogenesis, suppress intestinal macrophage production of critical tissue repair responses after damage. This includes reduced IL-23 production, which drives downstream production of IL-22, which is needed for barrier repair. Indicating that dietary lipids interfere with responses to microbial molecules needed to induce barrier protective functions, we found oleic acid could directly suppress macrophage Il23a induction after lipopolysaccharide (LPS) treatment. Deleting the lipid transporter CD36 on macrophages restored the …
Single-Cell Transcriptomics Of Ventral Forebrain Progenitors Identifies Evf2 Enhancer Lncrna-Enhancer Gene Guidance Through Direct Rna Binding And Rnp Recruitment Domains, Edward Li, Abhijit Chakraborty, Sara J Kohtz, Ivelisse Cajigas, Laura Hinojosa-Gonzalez, Fion Shiau, Ryan Bertossi, Robert J Vassar, Jack A Kessler, Ferhat Ay, Brian S Clark, Jhumku D Kohtz
Single-Cell Transcriptomics Of Ventral Forebrain Progenitors Identifies Evf2 Enhancer Lncrna-Enhancer Gene Guidance Through Direct Rna Binding And Rnp Recruitment Domains, Edward Li, Abhijit Chakraborty, Sara J Kohtz, Ivelisse Cajigas, Laura Hinojosa-Gonzalez, Fion Shiau, Ryan Bertossi, Robert J Vassar, Jack A Kessler, Ferhat Ay, Brian S Clark, Jhumku D Kohtz
2020-Current year OA Pubs
During mouse embryonic brain development, the Evf2 ultraconserved enhancer (UCE) lncRNA guides the Dlx5/6UCE to ~129 sites across chr6. However, previous work identified only 4 transcriptionally regulated targets associated with Evf2-Dlx5/6UCE-gene guidance, raising questions about the significance of Evf2-regulated Dlx5/6UCE-gene interactions. Here, single-cell transcriptomics reveal far greater alignment between Evf2-Dlx5/6UCE-gene guidance and transcriptional regulation than previously reported. Evf2 divides chr6 into short-range ( < 10 Mb distant), activated genes, and long/super-long-range (10-129 Mb distant), repressed genes, identifying seizure regulating genes in the embryonic subventricular zone that predict adult phenotypes. Evf2-regulated Dlx5/6UCE-gene distances and directions (closer to or further from gene targets) can be decoupled from gene target transcriptional effects. Evf2 regulates Evf2-ribonucleoprotein (RNP) binding in a combinatorial manner to key regulatory sites, including chr6 Evf2-Dlx5/6UCE-gene guided sites, Evf1/2 RNA-directly bound sites (RBSs), and inter-chromosomal HiC looping interactions. RBSs divide chromosomes into multi-megabase domains enriched for Evf2-regulated RNP recruitment, transcription factor motifs, and HiC looping interactions. Together with Evf2-controlled homeobox motif recognition at Evf2-RNP recruitment sites and transcription factor motif enrichment in RBSs with DNA identity, this work supports direct roles for Evf2 in enhancer-gene guidance and transcriptional regulation, with the potential for both site-specific and chromosomal domain specific RNP recruitment.
Human Ipsc-Based Breast Cancer Model Identifies S100p-Dependent Cancer Stemness Induced By Brca1 Mutation, Jingxin Liu, Cai Zhao, Jiahao Chen, Pengguihang Zeng, Qingjian Li, Ranran Dai, Xingqiang Lai, Wenqian Song, Jianing Chen, Xixi Zhu, Xinyi Liu, Jun Sun, Jia Wang, Peihang Fang, Tengfei Wang, Wenjie Chen, Diana Guallar, Nan Cao, Jianli Zhao, Shicheng Su, Andy Peng Xiang, Yi Arial Zeng, Jie Li, Junchao Cai, Dung-Fang Lee, Jinxin Bei, Yongliang Huo, Hai Hu, Shengbao Suo, Dong-Feng Huang, Jin Bai, Junjun Ding
Human Ipsc-Based Breast Cancer Model Identifies S100p-Dependent Cancer Stemness Induced By Brca1 Mutation, Jingxin Liu, Cai Zhao, Jiahao Chen, Pengguihang Zeng, Qingjian Li, Ranran Dai, Xingqiang Lai, Wenqian Song, Jianing Chen, Xixi Zhu, Xinyi Liu, Jun Sun, Jia Wang, Peihang Fang, Tengfei Wang, Wenjie Chen, Diana Guallar, Nan Cao, Jianli Zhao, Shicheng Su, Andy Peng Xiang, Yi Arial Zeng, Jie Li, Junchao Cai, Dung-Fang Lee, Jinxin Bei, Yongliang Huo, Hai Hu, Shengbao Suo, Dong-Feng Huang, Jin Bai, Junjun Ding
Faculty, Staff and Student Publications
Breast cancer is the most common malignancy in females and remains the leading cause of cancer-related deaths for women worldwide. The cellular and molecular basis of breast tumorigenesis is not completely understood partly due to the lack of human research models which simulate the development of breast cancer. Here, we developed a method for generating functional mammary-like cells (MCs) from human-induced pluripotent stem cells (iPSCs). The iPSC-MCs closely resemble human primary MCs at cellular, transcriptional, and functional levels. Using this method, a breast cancer model was generated using patient-derived iPSCs harboring germline
Constitutive Il-7 Signaling Promotes Car-Nk Cell Survival In The Solid Tumor Microenvironment But Impairs Tumor Control, Matthew Dysthe, Ishwar Navin, Dayenne Van Leeuwen, Josue Pineda, Corrine Baumgartner, Cliona M Rooney, Robin Parihar
Constitutive Il-7 Signaling Promotes Car-Nk Cell Survival In The Solid Tumor Microenvironment But Impairs Tumor Control, Matthew Dysthe, Ishwar Navin, Dayenne Van Leeuwen, Josue Pineda, Corrine Baumgartner, Cliona M Rooney, Robin Parihar
Faculty, Staff and Students Publications
Background: Adoptive transfer of chimeric antigen receptor (CAR)-expressing natural killer (NK) cells has demonstrated success against hematological malignancies. Efficacy against solid tumors has been limited by poor NK cell survival and function in the suppressive tumor microenvironment (TME). To enhance efficacy against solid tumors, stimulatory cytokines have been incorporated into CAR-NK cell therapeutic approaches. However, current cytokine strategies have limitations, including systemic toxicities, exogenous dependencies, and unwanted TME bystander effects. Here, we aimed to overcome these limitations by modifying CAR-NK cells to express a constitutively active interleukin (IL)-7 receptor, termed C7R, capable of providing intrinsic CAR-NK cell activation that does …
The Histone H3 Lysine 36 Demethylase Kdm2a/Fbxl11 Controls Polycomb-Mediated Gene Repression And Germ Cell Development In Male Mice, Michael T Bocker, Grigorios Fanourgakis, Kristie Wetzel, Pavel A Komarov, Hélène Royo, Alexia Rohmer, Sunwoo Chun, Ching-Yeu Liang, Hubertus Kohler, Taiping Chen, Xiaohong Mao, Mark A Labow, Reginald A Valdez, Michael B Stadler, Dirk G De Rooij, Paola Capodieci, John Tallarico, Antoine H F M Peters, Thomas B Nicholson
The Histone H3 Lysine 36 Demethylase Kdm2a/Fbxl11 Controls Polycomb-Mediated Gene Repression And Germ Cell Development In Male Mice, Michael T Bocker, Grigorios Fanourgakis, Kristie Wetzel, Pavel A Komarov, Hélène Royo, Alexia Rohmer, Sunwoo Chun, Ching-Yeu Liang, Hubertus Kohler, Taiping Chen, Xiaohong Mao, Mark A Labow, Reginald A Valdez, Michael B Stadler, Dirk G De Rooij, Paola Capodieci, John Tallarico, Antoine H F M Peters, Thomas B Nicholson
Faculty, Staff and Student Publications
KDM2A/FBXL11 is a Jumonji-domain containing lysine demethylase catalyzing the removal of mono- and di-methyl modifications of histone H3 lysine 36 (H3K36me1/2). While Kdm2a is required for mouse embryogenesis, its role in adult physiology has been largely unexplored. Using conditional deletion approaches, we demonstrate that Kdm2a deficiency leads to testicular atrophy and male infertility. Although spermatogonial stem cells remain unaffected, proliferating and differentiating spermatogonia exhibit delayed cell cycle progression and apoptosis. RNA-sequencing of purified spermatogonia and spermatocytes reveals Kdm2a-dependent repression of over 750 genes during spermatogonial differentiation. Chromatin immunoprecipitation followed by sequencing (ChIP-seq) demonstrates increased H3K36me2 levels at CpG-rich gene promoters …
Macrophage-T Cell Interactions Promote Slamf1 Expression For Enhanced Tb Defense, G V R Krishna Prasad, Steven J Grigsby, Gideon A Erkenswick, Cynthia Portal-Celhay, Ekansh Mittal, Guozhe Yang, Samuel M Fallon, Fengyixin Chen, Thais Klevorn, Neharika Jain, Yuanyuan Li, Makedonka Mitreva, Amanda J Martinot, Joel D Ernst, Jennifer A Philips
Macrophage-T Cell Interactions Promote Slamf1 Expression For Enhanced Tb Defense, G V R Krishna Prasad, Steven J Grigsby, Gideon A Erkenswick, Cynthia Portal-Celhay, Ekansh Mittal, Guozhe Yang, Samuel M Fallon, Fengyixin Chen, Thais Klevorn, Neharika Jain, Yuanyuan Li, Makedonka Mitreva, Amanda J Martinot, Joel D Ernst, Jennifer A Philips
2020-Current year OA Pubs
CD4+ T cells are crucial for protective immunity to intracellular pathogens. In addition to secreting cytokines, CD4+ T cells promote control of Mycobacterium tuberculosis infection through cognate interactions with macrophages, but the mechanism has been unclear. Here, we show that SLAMF1/CD150 is highly and uniquely induced in macrophages by antigen-specific interactions with CD4+ T cells. In macrophages, SLAMF1 enhances the generation of reactive oxygen species and restricts Mtb replication. Mtb-infection of mice promotes SLAMF1 expression specifically on infected macrophages, not uninfected bystanders. SLAMF1 expression depends on adaptive immunity and also autophagy. Moreover, Slamf1
Sepsis Restructures The Mitochondrial Calcium Uniporter Complex In The Lymphoid Tissues Of Mice And Humans, Xianghong Zhang, Jianguo Lin, Baobo Zou, Jack R Killinger, Andrew C Sayce, Thiagarajan Meyyappan, Zeyu Xiong, Melanie J Scott, Janet S Lee, Matthew R Rosengart
Sepsis Restructures The Mitochondrial Calcium Uniporter Complex In The Lymphoid Tissues Of Mice And Humans, Xianghong Zhang, Jianguo Lin, Baobo Zou, Jack R Killinger, Andrew C Sayce, Thiagarajan Meyyappan, Zeyu Xiong, Melanie J Scott, Janet S Lee, Matthew R Rosengart
2020-Current year OA Pubs
Survivors of sepsis suffer from an elevated risk of premature death that is not explained by a higher burden of chronic diseases prior to the infection. Nearly 1 out of 4 survivors have persistent elevations of inflammation biomarkers, such as interleukin (IL) 6. These observations suggest that sepsis imparts durable changes to organismal biology. Eukaryotic life depends upon ATP and calcium (Ca