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Articles 1891 - 1920 of 4657

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Pericentrin Deficiency In Smooth Muscle Cells Augments Atherosclerosis Through Hsf1-Driven Cholesterol Biosynthesis And Perk Activation, Suravi Majumder, Abhijnan Chattopadhyay, Jamie M Wright, Pujun Guan, L Maximilian Buja, Callie S Kwartler, Dianna M Milewicz Nov 2023

Pericentrin Deficiency In Smooth Muscle Cells Augments Atherosclerosis Through Hsf1-Driven Cholesterol Biosynthesis And Perk Activation, Suravi Majumder, Abhijnan Chattopadhyay, Jamie M Wright, Pujun Guan, L Maximilian Buja, Callie S Kwartler, Dianna M Milewicz

Faculty, Staff and Student Publications

Microcephalic osteodysplastic primordial dwarfism type II (MOPDII) is caused by biallelic loss-of-function variants in pericentrin (PCNT), and premature coronary artery disease (CAD) is a complication of the syndrome. Histopathology of coronary arteries from patients with MOPDII who died of CAD in their 20s showed extensive atherosclerosis. Hyperlipidemic mice with smooth muscle cell-specific (SMC-specific) Pcnt deficiency (PcntSMC-/-) exhibited significantly greater atherosclerotic plaque burden compared with similarly treated littermate controls despite similar serum lipid levels. Loss of PCNT in SMCs induced activation of heat shock factor 1 (HSF1) and consequently upregulated the expression and activity of HMG-CoA reductase (HMGCR), the rate-limiting enzyme …


Dysregulated Cd200-Cd200r Signaling In Early Diabetes Modulates Microglia-Mediated Retinopathy, Charles W Pfeifer, James T Walsh, Andrea Santeford, Joseph B Lin, Wandy L Beatty, Ryo Terao, Yizhou A Liu, Keitaro Hase, Philip A Ruzycki, Rajendra S Apte Nov 2023

Dysregulated Cd200-Cd200r Signaling In Early Diabetes Modulates Microglia-Mediated Retinopathy, Charles W Pfeifer, James T Walsh, Andrea Santeford, Joseph B Lin, Wandy L Beatty, Ryo Terao, Yizhou A Liu, Keitaro Hase, Philip A Ruzycki, Rajendra S Apte

2020-Current year OA Pubs

Diabetic retinopathy (DR) is a neurovascular complication of diabetes. Recent investigations have suggested that early degeneration of the neuroretina may occur prior to the appearance of microvascular changes; however, the mechanisms underlying this neurodegeneration have been elusive. Microglia are the predominant resident immune cell in the retina and adopt dynamic roles in disease. Here, we show that ablation of retinal microglia ameliorates visual dysfunction and neurodegeneration in a type I diabetes mouse model. We also provide evidence of enhanced microglial contact and engulfment of amacrine cells, ultrastructural modifications, and transcriptome changes that drive inflammation and phagocytosis. We show that CD200-CD200R …


Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio Nov 2023

Tfeb And Tfe3 Control Glucose Homeostasis By Regulating Insulin Gene Expression, Adrien Pasquier, Nunzia Pastore, Luca D'Orsi, Rita Colonna, Alessandra Esposito, Veronica Maffia, Rossella De Cegli, Margherita Mutarelli, Susanna Ambrosio, Gennaro Tufano, Antonio Grimaldi, Marcella Cesana, Davide Cacchiarelli, Nathalie Delalleau, Gennaro Napolitano, Andrea Ballabio

Duncan NRI Faculty and Staff Publications

To fulfill their function, pancreatic beta cells require precise nutrient-sensing mechanisms that control insulin production. Transcription factor EB (TFEB) and its homolog TFE3 have emerged as crucial regulators of the adaptive response of cell metabolism to environmental cues. Here, we show that TFEB and TFE3 regulate beta-cell function and insulin gene expression in response to variations in nutrient availability. We found that nutrient deprivation in beta cells promoted TFEB/TFE3 activation, which resulted in suppression of insulin gene expression. TFEB overexpression was sufficient to inhibit insulin transcription, whereas beta cells depleted of both TFEB and TFE3 failed to suppress insulin gene …


Srcap Mutations Drive Clonal Hematopoiesis Through Epigenetic And Dna Repair Dysregulation, Chun-Wei Chen, Linda Zhang, Ravi Dutta, Abhishek Niroula, Peter G Miller, Christopher J Gibson, Alexander G Bick, Jaime M Reyes, Yi-Tang Lee, Ayala Tovy, Tianpeng Gu, Sarah Waldvogel, Yi-Hung Chen, Bryan J Venters, Pierre-Olivier Estève, Sriharsa Pradhan, Michael-Christopher Keogh, Pradeep Natarajan, Koichi Takahashi, Adam S Sperling, Margaret A Goodell Nov 2023

Srcap Mutations Drive Clonal Hematopoiesis Through Epigenetic And Dna Repair Dysregulation, Chun-Wei Chen, Linda Zhang, Ravi Dutta, Abhishek Niroula, Peter G Miller, Christopher J Gibson, Alexander G Bick, Jaime M Reyes, Yi-Tang Lee, Ayala Tovy, Tianpeng Gu, Sarah Waldvogel, Yi-Hung Chen, Bryan J Venters, Pierre-Olivier Estève, Sriharsa Pradhan, Michael-Christopher Keogh, Pradeep Natarajan, Koichi Takahashi, Adam S Sperling, Margaret A Goodell

Faculty, Staff and Students Publications

Somatic mutations accumulate in all cells with age and can confer a selective advantage, leading to clonal expansion over time. In hematopoietic cells, mutations in a subset of genes regulating DNA repair or epigenetics frequently lead to clonal hematopoiesis (CH). Here, we describe the context and mechanisms that lead to enrichment of hematopoietic stem cells (HSCs) with mutations in SRCAP, which encodes a chromatin remodeler that also influences DNA repair. We show that SRCAP mutations confer a selective advantage in human cells and in mice upon treatment with the anthracycline-class chemotherapeutic doxorubicin and bone marrow transplantation. Furthermore, Srcap mutations lead …


Infection And Inflammation Stimulate Expansion Of A Cd74+ Paneth Cell Subset To Regulate Disease Progression, Iyshwarya Balasubramanian, Shengxiang Sun, Ta-Chiang Liu, Et Al. Nov 2023

Infection And Inflammation Stimulate Expansion Of A Cd74+ Paneth Cell Subset To Regulate Disease Progression, Iyshwarya Balasubramanian, Shengxiang Sun, Ta-Chiang Liu, Et Al.

2020-Current year OA Pubs

Paneth cells (PCs), a specialized secretory cell type in the small intestine, are increasingly recognized as having an essential role in host responses to microbiome and environmental stresses. Whether and how commensal and pathogenic microbes modify PC composition to modulate inflammation remain unclear. Using newly developed PC-reporter mice under conventional and gnotobiotic conditions, we determined PC transcriptomic heterogeneity in response to commensal and invasive microbes at single cell level. Infection expands the pool of CD74


Stop-Ad Portal: Selecting The Optimal Pharmaceutical For Preclinical Drug Testing In Alzheimer's Disease., Sara K Quinney, Kandasamy Murugesh, Adrian Oblak, Kristen D. Onos, Michael Sasner, Anna K Greenwood, Kara H Woo, Stacey J Sukoff Rizzo, Paul R Territo Nov 2023

Stop-Ad Portal: Selecting The Optimal Pharmaceutical For Preclinical Drug Testing In Alzheimer's Disease., Sara K Quinney, Kandasamy Murugesh, Adrian Oblak, Kristen D. Onos, Michael Sasner, Anna K Greenwood, Kara H Woo, Stacey J Sukoff Rizzo, Paul R Territo

Faculty Research 2023

We propose an unbiased methodology to rank compounds for advancement into comprehensive preclinical testing for Alzheimer's disease (AD). Translation of compounds to the clinic in AD has been hampered by poor predictive validity of models, compounds with limited pharmaceutical properties, and studies that lack rigor. To overcome this, MODEL-AD's Preclinical Testing Core developed a standardized pipeline for assessing efficacy in AD mouse models. We hypothesize that rank-ordering compounds based upon pharmacokinetic, efficacy, and toxicity properties in preclinical models will enhance successful translation to the clinic. Previously compound selection was based solely on physiochemical properties, with arbitrary cutoff limits, making ranking …


A Human Mitofusin 2 Mutation Can Cause Mitophagic Cardiomyopathy, Antonietta Franco, Jiajia Li, Daniel P Kelly, Ray E Hershberger, Ali J Marian, Renate M Lewis, Moshi Song, Xiawei Dang, Alina D Schmidt, Mary E Mathyer, John R Edwards, Cristina De Guzman Strong, Gerald W Dorn Nov 2023

A Human Mitofusin 2 Mutation Can Cause Mitophagic Cardiomyopathy, Antonietta Franco, Jiajia Li, Daniel P Kelly, Ray E Hershberger, Ali J Marian, Renate M Lewis, Moshi Song, Xiawei Dang, Alina D Schmidt, Mary E Mathyer, John R Edwards, Cristina De Guzman Strong, Gerald W Dorn

Faculty, Staff and Student Publications

Cardiac muscle has the highest mitochondrial density of any human tissue, but mitochondrial dysfunction is not a recognized cause of isolated cardiomyopathy. Here, we determined that the rare mitofusin (MFN) 2 R400Q mutation is 15-20× over-represented in clinical cardiomyopathy, whereas this specific mutation is not reported as a cause of MFN2 mutant-induced peripheral neuropathy, Charcot-Marie-Tooth disease type 2A (CMT2A). Accordingly, we interrogated the enzymatic, biophysical, and functional characteristics of MFN2 Q400 versus wild-type and CMT2A-causing MFN2 mutants. All MFN2 mutants had impaired mitochondrial fusion, the canonical MFN2 function. Compared to MFN2 T105M that lacked catalytic GTPase activity and exhibited normal …


Iron Overload Induces Cerebral Endothelial Senescence In Aged Mice And In Primary Culture In A Sex-Dependent Manner, Brian Noh, Maria Pilar Blasco-Conesa, Syed Mushfiqur Rahman, Sheelu Monga, Rodney Ritzel, Gary Guzman, Yun-Ju Lai, Bhanu Priya Ganesh, Akihiko Urayama, Louise D Mccullough, Jose Felix Moruno-Manchon Nov 2023

Iron Overload Induces Cerebral Endothelial Senescence In Aged Mice And In Primary Culture In A Sex-Dependent Manner, Brian Noh, Maria Pilar Blasco-Conesa, Syed Mushfiqur Rahman, Sheelu Monga, Rodney Ritzel, Gary Guzman, Yun-Ju Lai, Bhanu Priya Ganesh, Akihiko Urayama, Louise D Mccullough, Jose Felix Moruno-Manchon

Faculty, Staff and Student Publications

Iron imbalance in the brain negatively affects brain function. With aging, iron levels increase in the brain and contribute to brain damage and neurological disorders. Changes in the cerebral vasculature with aging may enhance iron entry into the brain parenchyma, leading to iron overload and its deleterious consequences. Endothelial senescence has emerged as an important contributor to age-related changes in the cerebral vasculature. Evidence indicates that iron overload may induce senescence in cultured cell lines. Importantly, cells derived from female human and mice generally show enhanced senescence-associated phenotype, compared with males. Thus, we hypothesize that cerebral endothelial cells (CEC) derived …


Immune Cell Identity Behind The Ktrans Mapping Of Mouse Glioblastoma, Yanrong Zhang, Olivier Keunen, Anna Golebiewska, Marco Gerosa, Jing Wang, Sara Natasha Ghobadi, Ai Huang, Qingyi Hou, Frezghi G Habte, Ningrui Li, Gerry Grant, Ramasamy Paulmurugan, Kevin S Lee, Max Wintermark Nov 2023

Immune Cell Identity Behind The Ktrans Mapping Of Mouse Glioblastoma, Yanrong Zhang, Olivier Keunen, Anna Golebiewska, Marco Gerosa, Jing Wang, Sara Natasha Ghobadi, Ai Huang, Qingyi Hou, Frezghi G Habte, Ningrui Li, Gerry Grant, Ramasamy Paulmurugan, Kevin S Lee, Max Wintermark

Faculty, Staff and Student Publications

Dynamic contrast-enhanced MR imaging (DCE-MRI) can assess the integrity of the blood brain barrier (BBB) and has been used in GBM patients to determine glioma grade, predict prognosis, evaluate treatment response, and differentiate treatment-induced effect from recurrence. The volume transfer constant Ktrans is the most frequently used metric in tumor assessment. Based on previous studies that a higher WHO grade of brain tumor was associated with greater impairments of immunity and and that Ktrans value was associated with the pathological grading, the relationship between differential composition of immune cells in GBM tissue and dynamic changes in Ktrans mapping was anticipated …


Circulating Micrornas And Cytokines As Prognostic Biomarkers For Doxorubicin-Induced Cardiac Injury And For Evaluating The Effectiveness Of An Exercise Intervention, Prince Jeyabal, Anchit Bhagat, Fei Wang, Michael Roth, J Andrew Livingston, Susan C Gilchrist, Jose Banchs, Michelle A T Hildebrandt, Joya Chandra, Anita Deswal, Efstratios Koutroumpakis, Jian Wang, Najat C Daw, Theresa A Honey, Eugenie S Kleinerman Nov 2023

Circulating Micrornas And Cytokines As Prognostic Biomarkers For Doxorubicin-Induced Cardiac Injury And For Evaluating The Effectiveness Of An Exercise Intervention, Prince Jeyabal, Anchit Bhagat, Fei Wang, Michael Roth, J Andrew Livingston, Susan C Gilchrist, Jose Banchs, Michelle A T Hildebrandt, Joya Chandra, Anita Deswal, Efstratios Koutroumpakis, Jian Wang, Najat C Daw, Theresa A Honey, Eugenie S Kleinerman

Faculty, Staff and Student Publications

Purpose: To define a set of biomarkers that can be used to identify patients at high risk of developing late doxorubicin (DOX)-induced cardiac morbidity with the goal of focused monitoring and early interventions.

Experimental design: Mice received phosphate buffered saline or DOX 2.5 mg/kg 2x/week for 2 weeks. Blood samples were obtained before and after therapy for quantification of miRNAs (6 and 24 hours), cytokines (24 hours), and troponin (24 hours, 4 and 6 weeks). Cardiac function was evaluated using echocardiography before and 24 hours after therapy. To assess the effectiveness of exercise intervention in preventing DOX-induced cardiotoxicity blood samples …


The Androgen Receptor Does Not Directly Regulate The Transcription Of Dna Damage Response Genes, Joshua D Samuels, Katelyn A Moore, Hannah E Ennerfelt, Alexis M Johnson, Adeline E Walsh, Richard J Price, John R Lukens Nov 2023

The Androgen Receptor Does Not Directly Regulate The Transcription Of Dna Damage Response Genes, Joshua D Samuels, Katelyn A Moore, Hannah E Ennerfelt, Alexis M Johnson, Adeline E Walsh, Richard J Price, John R Lukens

Faculty, Staff and Student Publications

INTRODUCTION: Mutations in INPP5D, which encodes for the SH2-domain-containing inositol phosphatase SHIP-1, have recently been linked to an increased risk of developing late-onset Alzheimer's disease. While INPP5D expression is almost exclusively restricted to microglia in the brain, little is known regarding how SHIP-1 affects neurobiology or neurodegenerative disease pathogenesis.

METHODS: We generated and investigated 5xFAD Inpp5d

RESULTS: SHIP-1 deletion in microglia led to substantially enhanced recruitment of microglia to Aβ plaques, altered microglial gene expression, and marked improvements in neuronal health. Further, SHIP-1 loss enhanced microglial plaque containment and Aβ engulfment when compared to microglia from Cre-negative 5xFAD Inpp5d

DISCUSSION: …


Cell-Autonomous Effects Of Apoe4 In Restricting Microglial Response In Brain Homeostasis And Alzheimer’S Disease, Chia-Chen Liu, Na Wang, Yuanxin Chen, Yasuteru Inoue, Francis Shue, Yingxue Ren, Minghui Wang, Wenhui Qiao, Tadafumi C Ikezu, Zonghua Li, Jing Zhao, Yuka Martens, Sydney V Doss, Cassandra L Rosenberg, Suren Jeevaratnam, Lin Jia, Ana-Caroline Raulin, Fangfang Qi, Yiyang Zhu, Alla Alnobani, Joshua Knight, Yixing Chen, Cynthia Linares, Aishe Kurti, John D Fryer, Bin Zhang, Long-Jun Wu, Betty Y S Kim, Guojun Bu Nov 2023

Cell-Autonomous Effects Of Apoe4 In Restricting Microglial Response In Brain Homeostasis And Alzheimer’S Disease, Chia-Chen Liu, Na Wang, Yuanxin Chen, Yasuteru Inoue, Francis Shue, Yingxue Ren, Minghui Wang, Wenhui Qiao, Tadafumi C Ikezu, Zonghua Li, Jing Zhao, Yuka Martens, Sydney V Doss, Cassandra L Rosenberg, Suren Jeevaratnam, Lin Jia, Ana-Caroline Raulin, Fangfang Qi, Yiyang Zhu, Alla Alnobani, Joshua Knight, Yixing Chen, Cynthia Linares, Aishe Kurti, John D Fryer, Bin Zhang, Long-Jun Wu, Betty Y S Kim, Guojun Bu

Faculty, Staff and Student Publications

Microglial involvement in Alzheimer's disease (AD) pathology has emerged as a risk-determining pathogenic event. While apolipoprotein E (APOE) is known to modify AD risk, it remains unclear how microglial apoE impacts brain cognition and AD pathology. Here, using conditional mouse models expressing apoE isoforms in microglia and central nervous system-associated macrophages (CAMs), we demonstrate a cell-autonomous effect of apoE3-mediated microglial activation and function, which are negated by apoE4. Expression of apoE3 in microglia/CAMs improves cognitive function, increases microglia surrounding amyloid plaque and reduces amyloid pathology and associated toxicity, whereas apoE4 expression either compromises or has no effects on these outcomes …


Improved Humoral Immunity And Protection Against Influenza Virus Infection With A 3d Porous Biomaterial Vaccine, Hiromi Miwa, Olivia Q Antao, Kindra M Kelly-Scumpia, Sevana Baghdasarian, Daniel P Mayer, Lily Shang, Gina M Sanchez, Maani M Archang, Philip O Scumpia, Jason S Weinstein, Dino Di Carlo Nov 2023

Improved Humoral Immunity And Protection Against Influenza Virus Infection With A 3d Porous Biomaterial Vaccine, Hiromi Miwa, Olivia Q Antao, Kindra M Kelly-Scumpia, Sevana Baghdasarian, Daniel P Mayer, Lily Shang, Gina M Sanchez, Maani M Archang, Philip O Scumpia, Jason S Weinstein, Dino Di Carlo

Faculty, Staff and Student Publications

New vaccine platforms that activate humoral immunity and generate neutralizing antibodies are required to combat emerging pathogens, including influenza virus. A slurry of antigen-loaded hydrogel microparticles that anneal to form a porous scaffold with high surface area for antigen uptake by infiltrating immune cells as the biomaterial degrades is demonstrated to enhance humoral immunity. Antigen-loaded-microgels elicited a robust cellular humoral immune response, with increased CD4


Site-Specific Pathophysiology In A Neonatal Mouse Model Of Gastroparesis, Price T Edwards, Krishnakant G Soni, Margaret E Conner, Stephanie W Fowler, Jaime P P Foong, Rhian Stavely, Lily S Cheng, Geoffrey A Preidis Nov 2023

Site-Specific Pathophysiology In A Neonatal Mouse Model Of Gastroparesis, Price T Edwards, Krishnakant G Soni, Margaret E Conner, Stephanie W Fowler, Jaime P P Foong, Rhian Stavely, Lily S Cheng, Geoffrey A Preidis

Faculty, Staff and Students Publications

BACKGROUND: Early-life events impact maturation of the gut microbiome, enteric nervous system, and gastrointestinal motility. We examined three regions of gastric tissue to determine how maternal separation and gut microbes influence the structure and motor function of specific regions of the neonatal mouse stomach.

METHODS: Germ-free and conventionally housed C57BL/6J mouse pups underwent timed maternal separation (TmSep) or nursed uninterrupted (controls) until 14 days of life. We assessed gastric emptying by quantifying the progression of gavaged fluorescein isothiocyanate (FITC)-dextran. With isolated rings of forestomach, corpus, and antrum, we measured tone and contractility by force transduction, gastric wall thickness by light …


Glut3 Promotes Macrophage Signaling And Function Via Ras-Mediated Endocytosis In Atopic Dermatitis And Wound Healing, Dong-Min Yu, Jiawei Zhao, Eunice E Lee, Dohun Kim, Ruchika Mahapatra, Elysha K Rose, Zhiwei Zhou, Calvin Hosler, Abdullah El Kurdi, Jun-Yong Choe, E Dale Abel, Gerta Hoxhaj, Kenneth D Westover, Raymond J Cho, Jeffrey B Cheng, Richard C Wang Nov 2023

Glut3 Promotes Macrophage Signaling And Function Via Ras-Mediated Endocytosis In Atopic Dermatitis And Wound Healing, Dong-Min Yu, Jiawei Zhao, Eunice E Lee, Dohun Kim, Ruchika Mahapatra, Elysha K Rose, Zhiwei Zhou, Calvin Hosler, Abdullah El Kurdi, Jun-Yong Choe, E Dale Abel, Gerta Hoxhaj, Kenneth D Westover, Raymond J Cho, Jeffrey B Cheng, Richard C Wang

Staff and Researcher Publications

The facilitative GLUT1 and GLUT3 hexose transporters are expressed abundantly in macrophages, but whether they have distinct functions remains unclear. We confirmed that GLUT1 expression increased after M1 polarization stimuli and found that GLUT3 expression increased after M2 stimulation in macrophages. Conditional deletion of Glut3 (LysM-Cre Glut3fl/fl) impaired M2 polarization of bone marrow-derived macrophages. Alternatively activated macrophages from the skin of patients with atopic dermatitis showed increased GLUT3 expression, and a calcipotriol-induced model of atopic dermatitis was rescued in LysM-Cre Glut3fl/fl mice. M2-like macrophages expressed GLUT3 in human wound tissues as assessed by transcriptomics and costaining, and GLUT3 expression was …


P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther Nov 2023

P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther

Faculty, Staff and Students Publications

Prostate cancer (PCa) remains a leading cause of mortality among American men, with metastatic and recurrent disease posing significant therapeutic challenges due to a limited comprehension of the underlying biological processes governing disease initiation, dormancy, and progression. The conventional use of PCa cell lines has proven inadequate in elucidating the intricate molecular mechanisms driving PCa carcinogenesis, hindering the development of effective treatments. To address this gap, patient-derived primary cell cultures have been developed and play a pivotal role in unraveling the pathophysiological intricacies unique to PCa in each individual, offering valuable insights for translational research. This review explores the applications …


An Automated Respiratory Data Pipeline For Waveform Characteristic Analysis, Savannah Lusk, Christopher S Ward, Andersen Chang, Avery Twitchell-Heyne, Shaun Fattig, Genevera Allen, Joanna L Jankowsky, Russell S Ray Nov 2023

An Automated Respiratory Data Pipeline For Waveform Characteristic Analysis, Savannah Lusk, Christopher S Ward, Andersen Chang, Avery Twitchell-Heyne, Shaun Fattig, Genevera Allen, Joanna L Jankowsky, Russell S Ray

Faculty, Staff and Students Publications

Comprehensive and accurate analysis of respiratory and metabolic data is crucial to modelling congenital, pathogenic and degenerative diseases converging on autonomic control failure. A lack of tools for high-throughput analysis of respiratory datasets remains a major challenge. We present Breathe Easy, a novel open-source pipeline for processing raw recordings and associated metadata into operative outcomes, publication-worthy graphs and robust statistical analyses including QQ and residual plots for assumption queries and data transformations. This pipeline uses a facile graphical user interface for uploading data files, setting waveform feature thresholds and defining experimental variables. Breathe Easy was validated against manual selection by …


Dominant Negative Variants In Kif5b Cause Osteogenesis Imperfecta Via Down Regulation Of Mtor Signaling, Ronit Marom, Anika Lindsey, Jacob Lesinski, Michael L. Nonet, Jian Chen, Dustin Baldridge, Gary A. Silverman, Stephen C. Pak, Et Al. Nov 2023

Dominant Negative Variants In Kif5b Cause Osteogenesis Imperfecta Via Down Regulation Of Mtor Signaling, Ronit Marom, Anika Lindsey, Jacob Lesinski, Michael L. Nonet, Jian Chen, Dustin Baldridge, Gary A. Silverman, Stephen C. Pak, Et Al.

2020-Current year OA Pubs

BACKGROUND: Kinesin motor proteins transport intracellular cargo, including mRNA, proteins, and organelles. Pathogenic variants in kinesin-related genes have been implicated in neurodevelopmental disorders and skeletal dysplasias. We identified de novo, heterozygous variants in KIF5B, encoding a kinesin-1 subunit, in four individuals with osteogenesis imperfecta. The variants cluster within the highly conserved kinesin motor domain and are predicted to interfere with nucleotide binding, although the mechanistic consequences on cell signaling and function are unknown.

METHODS: To understand the in vivo genetic mechanism of KIF5B variants, we modeled the p.Thr87Ile variant that was found in two patients in the C. elegans ortholog, …


Pax3 Lineage-Specific Deletion Of Gpr161 Is Associated With Spinal Neural Tube And Craniofacial Malformations During Embryonic Development, Sung-Eun Kim, Pooja J Chothani, Rehana Shaik, Westley Pollard, Richard H Finnell Nov 2023

Pax3 Lineage-Specific Deletion Of Gpr161 Is Associated With Spinal Neural Tube And Craniofacial Malformations During Embryonic Development, Sung-Eun Kim, Pooja J Chothani, Rehana Shaik, Westley Pollard, Richard H Finnell

Faculty, Staff and Students Publications

Sonic hedgehog (Shh) signaling is the morphogen signaling that regulates embryonic craniofacial and neural tube development. G protein-coupled receptor 161 (Gpr161) is a negative regulator of Shh signaling, and its inactivation in mice results in embryo lethality associated with craniofacial defects and neural tube defects. However, the structural defects of later embryonic stages and cell lineages underlying abnormalities have not been well characterized due to the limited lifespan of Gpr161 null mice. We found that embryos with Pax3 lineage-specific deletion of Gpr161 presented with tectal hypertrophy (anterior dorsal neuroepithelium), cranial vault and facial bone hypoplasia (cranial neural crest), vertebral abnormalities …


Camkk2 As An Emerging Treatment Target For Bipolar Disorder, Jacqueline Kaiser, Kevin Nay, Christopher R Horne, Luke M Mcaloon, Oliver K Fuller, Abbey G Muller, Douglas G Whyte, Anthony R Means, Ken Walder, Michael Berk, Anthony J Hannan, James M Murphy, Mark A Febbraio, Andrew L Gundlach, John W Scott Nov 2023

Camkk2 As An Emerging Treatment Target For Bipolar Disorder, Jacqueline Kaiser, Kevin Nay, Christopher R Horne, Luke M Mcaloon, Oliver K Fuller, Abbey G Muller, Douglas G Whyte, Anthony R Means, Ken Walder, Michael Berk, Anthony J Hannan, James M Murphy, Mark A Febbraio, Andrew L Gundlach, John W Scott

Faculty, Staff and Students Publications

Current pharmacological treatments for bipolar disorder are inadequate and based on serendipitously discovered drugs often with limited efficacy, burdensome side-effects, and unclear mechanisms of action. Advances in drug development for the treatment of bipolar disorder remain incremental and have come largely from repurposing drugs used for other psychiatric conditions, a strategy that has failed to find truly revolutionary therapies, as it does not target the mood instability that characterises the condition. The lack of therapeutic innovation in the bipolar disorder field is largely due to a poor understanding of the underlying disease mechanisms and the consequent absence of validated drug …


Targeted Inhibition Of Lncrna Malat1 Alters The Tumor Immune Microenvironment In Preclinical Syngeneic Mouse Models Of Triple-Negative Breast Cancer, Oluwatoyosi Adewunmi, Yichao Shen, Xiang H-F Zhang, Jeffrey M Rosen Nov 2023

Targeted Inhibition Of Lncrna Malat1 Alters The Tumor Immune Microenvironment In Preclinical Syngeneic Mouse Models Of Triple-Negative Breast Cancer, Oluwatoyosi Adewunmi, Yichao Shen, Xiang H-F Zhang, Jeffrey M Rosen

Faculty, Staff and Students Publications

Long noncoding RNAs (lncRNA) play an important role in gene regulation in both normal tissues and cancer. Targeting lncRNAs is a promising therapeutic approach that has become feasible through the development of gapmer antisense oligonucleotides (ASO). Metastasis-associated lung adenocarcinoma transcript (Malat1) is an abundant lncRNA whose expression is upregulated in several cancers. Although Malat1 increases the migratory and invasive properties of tumor cells, its role in the tumor microenvironment (TME) is still not well defined. We explored the connection between Malat1 and the tumor immune microenvironment (TIME) using several immune-competent preclinical syngeneic Tp53-null triple-negative breast cancer (TNBC) mouse models that …


Dominant Negative Variants In Kif5b Cause Osteogenesis Imperfecta Via Down Regulation Of Mtor Signaling, Ronit Marom, Bo Zhang, Megan E Washington, I-Wen Song, Lindsay C Burrage, Vittoria C Rossi, Ava S Berrier, Anika Lindsey, Jacob Lesinski, Michael L Nonet, Jian Chen, Dustin Baldridge, Gary A Silverman, V Reid Sutton, Jill A Rosenfeld, Alyssa A Tran, M John Hicks, David R Murdock, Hongzheng Dai, Maryann Weis, Shalini N Jhangiani, Donna M Muzny, Richard A Gibbs, Richard Caswell, Carrie Pottinger, Deirdre Cilliers, Karen Stals, Undiagnosed Diseases Network, David Eyre, Deborah Krakow, Tim Schedl, Stephen C Pak, Brendan H Lee Nov 2023

Dominant Negative Variants In Kif5b Cause Osteogenesis Imperfecta Via Down Regulation Of Mtor Signaling, Ronit Marom, Bo Zhang, Megan E Washington, I-Wen Song, Lindsay C Burrage, Vittoria C Rossi, Ava S Berrier, Anika Lindsey, Jacob Lesinski, Michael L Nonet, Jian Chen, Dustin Baldridge, Gary A Silverman, V Reid Sutton, Jill A Rosenfeld, Alyssa A Tran, M John Hicks, David R Murdock, Hongzheng Dai, Maryann Weis, Shalini N Jhangiani, Donna M Muzny, Richard A Gibbs, Richard Caswell, Carrie Pottinger, Deirdre Cilliers, Karen Stals, Undiagnosed Diseases Network, David Eyre, Deborah Krakow, Tim Schedl, Stephen C Pak, Brendan H Lee

Faculty, Staff and Students Publications

BACKGROUND: Kinesin motor proteins transport intracellular cargo, including mRNA, proteins, and organelles. Pathogenic variants in kinesin-related genes have been implicated in neurodevelopmental disorders and skeletal dysplasias. We identified de novo, heterozygous variants in KIF5B, encoding a kinesin-1 subunit, in four individuals with osteogenesis imperfecta. The variants cluster within the highly conserved kinesin motor domain and are predicted to interfere with nucleotide binding, although the mechanistic consequences on cell signaling and function are unknown.

METHODS: To understand the in vivo genetic mechanism of KIF5B variants, we modeled the p.Thr87Ile variant that was found in two patients in the C. elegans ortholog, …


Aso Silencing Of A Glycosyltransferase, Poglut1, Improves The Liver Phenotypes In Mouse Models Of Alagille Syndrome, Nima Niknejad, Duncan Fox, Jennifer L Burwinkel, Neda Zarrin-Khameh, Soomin Cho, Armand Soriano, Ashley E Cast, Mario F Lopez, Kari A Huppert, Frank Rigo, Stacey S Huppert, Paymaan Jafar-Nejad, Hamed Jafar-Nejad Nov 2023

Aso Silencing Of A Glycosyltransferase, Poglut1, Improves The Liver Phenotypes In Mouse Models Of Alagille Syndrome, Nima Niknejad, Duncan Fox, Jennifer L Burwinkel, Neda Zarrin-Khameh, Soomin Cho, Armand Soriano, Ashley E Cast, Mario F Lopez, Kari A Huppert, Frank Rigo, Stacey S Huppert, Paymaan Jafar-Nejad, Hamed Jafar-Nejad

Faculty, Staff and Students Publications

BACKGROUND AND AIMS: Paucity of intrahepatic bile ducts (BDs) is caused by various etiologies and often leads to cholestatic liver disease. For example, in patients with Alagille syndrome (ALGS), which is a genetic disease primarily caused by mutations in jagged 1 ( JAG1) , BD paucity often results in severe cholestasis and liver damage. However, no mechanism-based therapy exists to restore the biliary system in ALGS or other diseases associated with BD paucity. Based on previous genetic observations, we investigated whether postnatal knockdown of the glycosyltransferase gene protein O -glucosyltransferase 1 ( Poglut1) can improve the ALGS liver phenotypes in …


A Human Mitofusin 2 Mutation Can Cause Mitophagic Cardiomyopathy, Antonietta Franco, Jiajia Li, Daniel P Kelly, Ray E Hershberger, Ali J Marian, Renate M Lewis, Moshi Song, Xiawei Dang, Alina D Schmidt, Mary E Mathyer, John R Edwards, Cristina De Guzman Strong, Gerald W Dorn Nov 2023

A Human Mitofusin 2 Mutation Can Cause Mitophagic Cardiomyopathy, Antonietta Franco, Jiajia Li, Daniel P Kelly, Ray E Hershberger, Ali J Marian, Renate M Lewis, Moshi Song, Xiawei Dang, Alina D Schmidt, Mary E Mathyer, John R Edwards, Cristina De Guzman Strong, Gerald W Dorn

2020-Current year OA Pubs

Cardiac muscle has the highest mitochondrial density of any human tissue, but mitochondrial dysfunction is not a recognized cause of isolated cardiomyopathy. Here, we determined that the rare mitofusin (MFN) 2 R400Q mutation is 15-20× over-represented in clinical cardiomyopathy, whereas this specific mutation is not reported as a cause of MFN2 mutant-induced peripheral neuropathy, Charcot-Marie-Tooth disease type 2A (CMT2A). Accordingly, we interrogated the enzymatic, biophysical, and functional characteristics of MFN2 Q400 versus wild-type and CMT2A-causing MFN2 mutants. All MFN2 mutants had impaired mitochondrial fusion, the canonical MFN2 function. Compared to MFN2 T105M that lacked catalytic GTPase activity and exhibited normal …


Small Molecule Screen Identifies Pyrimethamine As An Inhibitor Of Nrf2-Driven Esophageal Hyperplasia, Chorlada Paiboonrungruang, Brittany Bowman, Julius Chembo, M Ben Major, Et Al. Nov 2023

Small Molecule Screen Identifies Pyrimethamine As An Inhibitor Of Nrf2-Driven Esophageal Hyperplasia, Chorlada Paiboonrungruang, Brittany Bowman, Julius Chembo, M Ben Major, Et Al.

2020-Current year OA Pubs

OBJECTIVE: NRF2 is a master transcription factor that regulates the stress response. NRF2 is frequently mutated and activated in human esophageal squamous cell carcinoma (ESCC), which drives resistance to chemotherapy and radiation therapy. Therefore, a great need exists for NRF2 inhibitors for targeted therapy of NRF2

DESIGN: We performed high-throughput screening of two compound libraries from which hit compounds were further validated in human ESCC cells and a genetically modified mouse model. The mechanism of action of one compound was explored by biochemical assays.

RESULTS: Using high-throughput screening of two small molecule compound libraries, we identified 11 hit compounds as …


The Impact Of Vaccine-Linked Chemotherapy On Liver Health In A Mouse Model Of Chronic Trypanosoma Cruzi Infection, Duc Minh Nguyen, Cristina Poveda, Jeroen Pollet, Fabian Gusovsky, Maria Elena Bottazzi, Peter J Hotez, Kathryn Marie Jones Nov 2023

The Impact Of Vaccine-Linked Chemotherapy On Liver Health In A Mouse Model Of Chronic Trypanosoma Cruzi Infection, Duc Minh Nguyen, Cristina Poveda, Jeroen Pollet, Fabian Gusovsky, Maria Elena Bottazzi, Peter J Hotez, Kathryn Marie Jones

Faculty, Staff and Students Publications

BACKGROUND: Chagas disease, chronic infection with Trypanosoma cruzi, mainly manifests as cardiac disease. However, the liver is important for both controlling parasite burdens and metabolizing drugs. Notably, high doses of anti-parasitic drug benznidazole (BNZ) causes liver damage. We previously showed that combining low dose BNZ with a prototype therapeutic vaccine is a dose sparing strategy that effectively reduced T. cruzi induced cardiac damage. However, the impact of this treatment on liver health is unknown. Therefore, we evaluated several markers of liver health after treatment with low dose BNZ plus the vaccine therapy in comparison to a curative dose of BNZ. …


P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther Nov 2023

P2y2 Purinergic Receptor Gene Deletion Protects Mice From Bacterial Endotoxin And Sepsis-Associated Liver Injury And Mortality, Athis R Arunachalam, Sanju S Samuel, Arunmani Mani, Janielle P Maynard, Kelsey M Stayer, Eric Dybbro, Subapradha Narayanan, Aalekhya Biswas, Saliha Pathan, Krishnakant Soni, Abu Hena Mostafa Kamal, Chandra Shekar R Ambati, Nagireddy Putluri, Moreshwar S Desai, Sundararajah Thevananther

Faculty, Staff and Students Publications

The liver plays a significant role in regulating a wide range of metabolic, homeostatic, and host-defense functions. However, the impact of liver injury on the host's ability to control bacteremia and morbidity in sepsis is not well understood. Leukocyte recruitment and activation lead to cytokine and chemokine release, which, in turn, trigger hepatocellular injury and elevate nucleotide levels in the extracellular milieu. P2Y2 purinergic receptors, G protein-coupled and activated by extracellular ATP/UTP, are expressed at the cell surface of hepatocytes and nonparenchymal cells. We sought to determine whether P2Y2 purinergic receptor function is necessary for the maladaptive host response to …


Cardiac Muscle-Restricted Partial Loss Of Nos1ap Expression Has Limited But Significant Impact On Electrocardiographic Features, Alexa Smith, Dallas Auer, Morgan Johnson, Ernesto Sanchez, Holly Ross, Christopher Ward, Aravinda Chakravarti, Ashish Kapoor Nov 2023

Cardiac Muscle-Restricted Partial Loss Of Nos1ap Expression Has Limited But Significant Impact On Electrocardiographic Features, Alexa Smith, Dallas Auer, Morgan Johnson, Ernesto Sanchez, Holly Ross, Christopher Ward, Aravinda Chakravarti, Ashish Kapoor

Faculty, Staff and Student Publications

Genome-wide association studies have identified sequence polymorphisms in a functional enhancer of the NOS1AP gene as the most common genetic regulator of QT interval and human cardiac NOS1AP gene expression in the general population. Functional studies based on in vitro overexpression in murine cardiomyocytes and ex vivo knockdown in zebrafish embryonic hearts, by us and others, have also demonstrated that NOS1AP expression levels can alter cellular electrophysiology. Here, to explore the role of NOS1AP in cardiac electrophysiology at an organismal level, we generated and characterized constitutive and heart muscle-restricted Nos1ap knockout mice to assess whether NOS1AP disruption alters the QT …


Cux1-Related Neurodevelopmental Disorder: Deep Insights Into Phenotype-Genotype Spectrum And Underlying Pathology, Henry Oppermann, Christina A Gurnett, Et Al. Nov 2023

Cux1-Related Neurodevelopmental Disorder: Deep Insights Into Phenotype-Genotype Spectrum And Underlying Pathology, Henry Oppermann, Christina A Gurnett, Et Al.

2020-Current year OA Pubs

Heterozygous, pathogenic CUX1 variants are associated with global developmental delay or intellectual disability. This study delineates the clinical presentation in an extended cohort and investigates the molecular mechanism underlying the disorder in a Cux1


Long Non-Coding Rna Snhg8 Drives Stress Granule Formation In Tauopathies, Reshma Bhagat, Miguel A Minaya, Arun Renganathan, Muneshwar Mehra, Jacob Marsh, Rita Martinez, Abdallah M Eteleeb, Alissa L Nana, Salvatore Spina, William W Seeley, Lea T Grinberg, Celeste M Karch Nov 2023

Long Non-Coding Rna Snhg8 Drives Stress Granule Formation In Tauopathies, Reshma Bhagat, Miguel A Minaya, Arun Renganathan, Muneshwar Mehra, Jacob Marsh, Rita Martinez, Abdallah M Eteleeb, Alissa L Nana, Salvatore Spina, William W Seeley, Lea T Grinberg, Celeste M Karch

2020-Current year OA Pubs

Tauopathies are a heterogenous group of neurodegenerative disorders characterized by tau aggregation in the brain. In a subset of tauopathies, rare mutations in the MAPT gene, which encodes the tau protein, are sufficient to cause disease; however, the events downstream of MAPT mutations are poorly understood. Here, we investigate the role of long non-coding RNAs (lncRNAs), transcripts >200 nucleotides with low/no coding potential that regulate transcription and translation, and their role in tauopathy. Using stem cell derived neurons from patients carrying a MAPT p.P301L, IVS10 + 16, or p.R406W mutation and CRISPR-corrected isogenic controls, we identified transcriptomic changes that occur …