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Articles 3541 - 3570 of 7774
Full-Text Articles in Medicine and Health Sciences
Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang
Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang
Faculty, Staff and Student Publications
BACKGROUND: Inflammation plays an important role in the pathogenesis of atrial fibrillation (AF) after myocardial infarction (MI). The role of USP38, a member of the ubiquitin-specific protease family, on MI-induced atrial inflammation, fibrosis, and associated AF is unclear.
METHODS: In this study, we surgically constructed a mouse MI model using USP38 cardiac conditional knockout (USP38-CKO) and cardiac-specific overexpression (USP38-TG) mice and applied biochemical, histological, electrophysiological characterization and molecular biology to investigate the effects of USP38 on atrial inflammation, fibrosis, and AF and its mechanisms.
RESULTS: Our results revealed that USP38-CKO attenuates atrial inflammation, thereby ameliorating fibrosis, and abnormal electrophysiologic properties, …
Single-Cell Analysis Differentiates The Effects Of P53 Mutation And P53 Loss On Cell Compositions Of Oncogenic Kras-Driven Pancreatic Cancer, Xinlei Sun, Daowei Yang, Yang Chen
Single-Cell Analysis Differentiates The Effects Of P53 Mutation And P53 Loss On Cell Compositions Of Oncogenic Kras-Driven Pancreatic Cancer, Xinlei Sun, Daowei Yang, Yang Chen
Faculty, Staff and Student Publications
Pancreatic ductal adenocarcinoma (PDAC) is a devastating malignant disease with a dismal prognosis. In the past decades, a plethora of genetically engineered mouse models (GEMMs) with autochthonous pancreatic tumor development have greatly facilitated studies of pancreatic cancer. Commonly used GEMMs of PDAC often harbor the oncogenic KRAS driver mutation (KrasG12D), in combination with either p53 mutation by knock-in strategy (Trp53R172H) or p53 loss by conditional knockout (Trp53cKO) strategy, in pancreatic cell lineages. However, the systematic comparison of the tumor microenvironment between KrasG12D; Trp53R172H (KPmut) mouse models and KrasG12D; Trp53cKO (KPloss) mouse models …
Increase In Hnrnpa1 Expression Suffices To Kill Motor Neurons In Transgenic Rats, Xionghao Liu, Tingting Zhang, Qinxue Wu, Cao Huang, Xu-Gang Xia, Hongxia Zhou, Bo Huang
Increase In Hnrnpa1 Expression Suffices To Kill Motor Neurons In Transgenic Rats, Xionghao Liu, Tingting Zhang, Qinxue Wu, Cao Huang, Xu-Gang Xia, Hongxia Zhou, Bo Huang
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
A dominant mutation in hnRNPA1 causes amyotrophic lateral sclerosis (ALS), but it is not known whether this mutation leads to motor neuron death through increased or decreased function. To elucidate the relationship between pathogenic hnRNPA1 mutation and its native function, we created novel transgenic rats that overexpressed wildtype rat hnRNPA1 exclusively in motor neurons. This targeted expression of wildtype hnRNPA1 caused severe motor neuron loss and subsequent denervation muscle atrophy in transgenic rats that recapitulated the characteristics of ALS. These findings demonstrate that the augmentation of hnRNPA1 expression suffices to trigger motor neuron degeneration and the manifestation of ALS-like phenotypes. …
Repeated Multi-Domain Cognitive Training Prevents Cognitive Decline, Anxiety And Amyloid Pathology Found In A Mouse Model Of Alzheimer Disease, Jogender Mehla, Scott H Deibel, Hadil Karem, Nancy S Hong, Shakhawat R Hossain, Sean G Lacoursiere, Robert J Sutherland, Majid H Mohajerani, Robert J Mcdonald
Repeated Multi-Domain Cognitive Training Prevents Cognitive Decline, Anxiety And Amyloid Pathology Found In A Mouse Model Of Alzheimer Disease, Jogender Mehla, Scott H Deibel, Hadil Karem, Nancy S Hong, Shakhawat R Hossain, Sean G Lacoursiere, Robert J Sutherland, Majid H Mohajerani, Robert J Mcdonald
2020-Current year OA Pubs
Education, occupation, and an active lifestyle, comprising enhanced social, physical, and mental components are associated with improved cognitive functions in aged people and may delay the progression of various neurodegenerative diseases including Alzheimer's disease. To investigate this protective effect, 3-month-old APP
A Novel Machine-Learning Framework Based On A Hierarchy Of Dispute Models For The Identification Of Fish Species Using Multi-Mode Spectroscopy, Mitchell Sueker, Amirreza Daghighi, Alireza Akhbardeh, Nicholas Mackinnon, Gregory Bearman, Insuck Baek, Chansong Hwang, Jianwei Qin, Amanda M Tabb, Jiahleen B Roungchun, Rosalee S Hellberg, Fartash Vasefi, Moon Kim, Kouhyar Tavakolian, Hossein Kashani Zadeh
A Novel Machine-Learning Framework Based On A Hierarchy Of Dispute Models For The Identification Of Fish Species Using Multi-Mode Spectroscopy, Mitchell Sueker, Amirreza Daghighi, Alireza Akhbardeh, Nicholas Mackinnon, Gregory Bearman, Insuck Baek, Chansong Hwang, Jianwei Qin, Amanda M Tabb, Jiahleen B Roungchun, Rosalee S Hellberg, Fartash Vasefi, Moon Kim, Kouhyar Tavakolian, Hossein Kashani Zadeh
Faculty, Staff and Student Publications
Seafood mislabeling rates of approximately 20% have been reported globally. Traditional methods for fish species identification, such as DNA analysis and polymerase chain reaction (PCR), are expensive and time-consuming, and require skilled technicians and specialized equipment. The combination of spectroscopy and machine learning presents a promising approach to overcome these challenges. In our study, we took a comprehensive approach by considering a total of 43 different fish species and employing three modes of spectroscopy: fluorescence (Fluor), and reflectance in the visible near-infrared (VNIR) and short-wave near-infrared (SWIR). To achieve higher accuracies, we developed a novel machine-learning framework, where groups of …
Mechanopathology Of Biofilm-Like Mycobacterium Tuberculosis Cords, Richa Mishra, Melanie Hannebelle, Vishal P Patil, Anaëlle Dubois, Cristina Garcia-Mouton, Gabriela M Kirsch, Maxime Jan, Kunal Sharma, Nicolas Guex, Jessica Sordet-Dessimoz, Jesus Perez-Gil, Manu Prakash, Graham W Knott, Neeraj Dhar, John D Mckinney, Vivek V Thacker
Mechanopathology Of Biofilm-Like Mycobacterium Tuberculosis Cords, Richa Mishra, Melanie Hannebelle, Vishal P Patil, Anaëlle Dubois, Cristina Garcia-Mouton, Gabriela M Kirsch, Maxime Jan, Kunal Sharma, Nicolas Guex, Jessica Sordet-Dessimoz, Jesus Perez-Gil, Manu Prakash, Graham W Knott, Neeraj Dhar, John D Mckinney, Vivek V Thacker
Faculty, Staff and Student Publications
Mycobacterium tuberculosis (Mtb) cultured axenically without detergent forms biofilm-like cords, a clinical identifier of virulence. In lung-on-chip (LoC) and mouse models, cords in alveolar cells contribute to suppression of innate immune signaling via nuclear compression. Thereafter, extracellular cords cause contact-dependent phagocyte death but grow intercellularly between epithelial cells. The absence of these mechanopathological mechanisms explains the greater proportion of alveolar lesions with increased immune infiltration and dissemination defects in cording-deficient Mtb infections. Compression of Mtb lipid monolayers induces a phase transition that enables mechanical energy storage. Agent-based simulations demonstrate that the increased energy storage capacity is sufficient for the formation …
Mucopolysaccharidosis Iva: Current Disease Models And Drawbacks, Andrés Felipe Leal, Carlos Javier Alméciga-Díaz, Shunji Tomatsu
Mucopolysaccharidosis Iva: Current Disease Models And Drawbacks, Andrés Felipe Leal, Carlos Javier Alméciga-Díaz, Shunji Tomatsu
Department of Pediatrics Faculty Papers
Mucopolysaccharidosis IVA (MPS IVA) is a rare disorder caused by mutations in the N-acetylgalactosamine-6-sulfate-sulfatase (GALNS) encoding gene. GALNS leads to the lysosomal degradation of the glycosaminoglyccreasans keratan sulfate and chondroitin 6-sulfate. Impaired GALNS enzymes result in skeletal and non-skeletal complications in patients. For years, the MPS IVA pathogenesis and the assessment of promising drugs have been evaluated using in vitro (primarily fibroblasts) and in vivo (mainly mouse) models. Even though value information has been raised from those studies, these models have several limitations. For instance, chondrocytes have been well recognized as primary cells affected in MPS IVA and responsible for …
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
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 …
A Single Cell Genomics Atlas Of The Drosophila Larval Eye Reveals Distinct Photoreceptor Developmental Timelines, Komal Kumar Bollepogu Raja, Kelvin Yeung, Yoon-Kyung Shim, Yumei Li, Rui Chen, Graeme Mardon
A Single Cell Genomics Atlas Of The Drosophila Larval Eye Reveals Distinct Photoreceptor Developmental Timelines, Komal Kumar Bollepogu Raja, Kelvin Yeung, Yoon-Kyung Shim, Yumei Li, Rui Chen, Graeme Mardon
Faculty, Staff and Students Publications
The Drosophila eye is a powerful model system to study the dynamics of cell differentiation, cell state transitions, cell maturation, and pattern formation. However, a high-resolution single cell genomics resource that accurately profiles all major cell types of the larval eye disc and their spatiotemporal relationships is lacking. Here, we report transcriptomic and chromatin accessibility data for all known cell types in the developing eye. Photoreceptors appear as strands of cells that represent their dynamic developmental timelines. As photoreceptor subtypes mature, they appear to assume a common transcriptomic profile that is dominated by genes involved in axon function. We identify …
A Drosophila Model Relevant To Chemotherapy-Related Cognitive Impairment, Matthew Torre, Hassan Bukhari, Vanitha Nithianandam, Camila A Zanella, Douglas A Mata, Mel B Feany
A Drosophila Model Relevant To Chemotherapy-Related Cognitive Impairment, Matthew Torre, Hassan Bukhari, Vanitha Nithianandam, Camila A Zanella, Douglas A Mata, Mel B Feany
Duncan NRI Faculty and Staff Publications
Chemotherapy-related cognitive impairment (CRCI) is a common adverse effect of treatment and is characterized by deficits involving multiple cognitive domains including memory. Despite the significant morbidity of CRCI and the expected increase in cancer survivors over the coming decades, the pathophysiology of CRCI remains incompletely understood, highlighting the need for new model systems to study CRCI. Given the powerful array of genetic approaches and facile high throughput screening ability in Drosophila, our goal was to validate a Drosophila model relevant to CRCI. We administered the chemotherapeutic agents cisplatin, cyclophosphamide, and doxorubicin to adult Drosophila. Neurologic deficits were observed with all …
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
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 …
Immune Responses Induced At One Hour Post Cataract Surgery Wounding Of The Chick Lens, Jodirae Dedreu, Morgan Basta, Janice Walker, Sue Menko
Immune Responses Induced At One Hour Post Cataract Surgery Wounding Of The Chick Lens, Jodirae Dedreu, Morgan Basta, Janice Walker, Sue Menko
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
While the lens is an avascular tissue with an immune-privileged status, studies have now revealed that there are immune responses specifically linked to the lens. The response to lens injury, such as following cataract surgery, has been shown to involve the activation of the resident immune cell population of the lens and the induction of immunomodulatory factors by the wounded epithelium. However, there has been limited investigation into the immediate response of the lens to wounding, particularly those induced factors that are intrinsic to the lens and its associated resident immune cells. Using an established chick embryo ex vivo cataract …
Diagnostic And Commensal Staphylococcus Pseudintermedius Genomes Reveal Niche Adaptation Through Parallel Selection Of Defense Mechanisms, Sanjam S Sawhney, Rhiannon C Vargas, Meghan A Wallace, Carol E Muenks, Brian V Lubbers, Stephanie A Fritz, Carey-Ann D Burnham, Gautam Dantas
Diagnostic And Commensal Staphylococcus Pseudintermedius Genomes Reveal Niche Adaptation Through Parallel Selection Of Defense Mechanisms, Sanjam S Sawhney, Rhiannon C Vargas, Meghan A Wallace, Carol E Muenks, Brian V Lubbers, Stephanie A Fritz, Carey-Ann D Burnham, Gautam Dantas
2020-Current year OA Pubs
Staphylococcus pseudintermedius is historically understood as a prevalent commensal and pathogen of dogs, though modern clinical diagnostics reveal an expanded host-range that includes humans. It remains unclear whether differentiation across S. pseudintermedius populations is driven primarily by niche-type or host-species. We sequenced 501 diagnostic and commensal isolates from a hospital, veterinary diagnostic laboratory, and within households in the American Midwest, and performed a comparative genomics investigation contrasting human diagnostic, animal diagnostic, human colonizing, pet colonizing, and household-surface S. pseudintermedius isolates. Though indistinguishable by core and accessory gene architecture, diagnostic isolates harbor more encoded and phenotypic resistance, whereas colonizing and surface …
Glutamate Receptor Dysregulation And Platelet Glutamate Dynamics In Alzheimer's And Parkinson's Diseases: Insights Into Current Medications, Deepa Gautam, Ulhas Naik, Meghna Naik, Santosh Yadav, Rameshwar Nath Chaurasia, Debabrata Dash
Glutamate Receptor Dysregulation And Platelet Glutamate Dynamics In Alzheimer's And Parkinson's Diseases: Insights Into Current Medications, Deepa Gautam, Ulhas Naik, Meghna Naik, Santosh Yadav, Rameshwar Nath Chaurasia, Debabrata Dash
Cardeza Foundation for Hematologic Research
Two of the most prevalent neurodegenerative disorders (NDDs), Alzheimer's disease (AD) and Parkinson's disease (PD), present significant challenges to healthcare systems worldwide. While the etiologies of AD and PD differ, both diseases share commonalities in synaptic dysfunction, thereby focusing attention on the role of neurotransmitters. The possible functions that platelets may play in neurodegenerative illnesses including PD and AD are becoming more acknowledged. In AD, platelets have been investigated for their ability to generate amyloid-ß (Aß) peptides, contributing to the formation of neurotoxic plaques. Moreover, platelets are considered biomarkers for early AD diagnosis. In PD, platelets have been studied for …
Neglected Tropical Disease Vaccines: Hookworm, Leishmaniasis, And Schistosomiasis, Peter J Hotez, Maria Elena Bottazzi, Paul M Kaye, Bruce Y Lee, Karl Philipp Puchner
Neglected Tropical Disease Vaccines: Hookworm, Leishmaniasis, And Schistosomiasis, Peter J Hotez, Maria Elena Bottazzi, Paul M Kaye, Bruce Y Lee, Karl Philipp Puchner
Faculty, Staff and Students Publications
No abstract provided.
Unc-49 Is A Redox-Sensitive Gabaa Receptor That Regulates The Mitochondrial Unfolded Protein Response Cell Nonautonomously, Franziska Pohl, Allison L Germann, Jack Mao, Sydney Hou, Bayode Bakare, Paul Kong Thoo Lin, Kyari Yates, Michael L Nonet, Gustav Akk, Kerry Kornfeld, Jason M Held
Unc-49 Is A Redox-Sensitive Gabaa Receptor That Regulates The Mitochondrial Unfolded Protein Response Cell Nonautonomously, Franziska Pohl, Allison L Germann, Jack Mao, Sydney Hou, Bayode Bakare, Paul Kong Thoo Lin, Kyari Yates, Michael L Nonet, Gustav Akk, Kerry Kornfeld, Jason M Held
2020-Current year OA Pubs
The γ-aminobutyric acid-mediated (GABAergic) system participates in many aspects of organismal physiology and disease, including proteostasis, neuronal dysfunction, and life-span extension. Many of these phenotypes are also regulated by reactive oxygen species (ROS), but the redox mechanisms linking the GABAergic system to these phenotypes are not well defined. Here, we report that GABAergic redox signaling cell nonautonomously activates many stress response pathways in
Infection And Inflammation Stimulate Expansion Of A Cd74+ Paneth Cell Subset To Regulate Disease Progression, Iyshwarya Balasubramanian, Shengxiang Sun, Ta-Chiang Liu, Et Al.
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
Potentiation Of Apoptosis In Drug-Resistant Mantle Cell Lymphoma Cells By Mcl-1 Inhibitor Involves Downregulation Of Inhibitor Of Apoptosis Proteins, Yijing Li, Heng-Huan Lee, Vivian Changying Jiang, Yuxuan Che, Joseph Mcintosh, Alexa Jordan, Jovanny Vargas, Tianci Zhang, Fangfang Yan, Margaret Elizabeth Simmons, Wei Wang, Lei Nie, Yixin Yao, Preetesh Jain, Michael Wang, Yang Liu
Potentiation Of Apoptosis In Drug-Resistant Mantle Cell Lymphoma Cells By Mcl-1 Inhibitor Involves Downregulation Of Inhibitor Of Apoptosis Proteins, Yijing Li, Heng-Huan Lee, Vivian Changying Jiang, Yuxuan Che, Joseph Mcintosh, Alexa Jordan, Jovanny Vargas, Tianci Zhang, Fangfang Yan, Margaret Elizabeth Simmons, Wei Wang, Lei Nie, Yixin Yao, Preetesh Jain, Michael Wang, Yang Liu
Faculty, Staff and Student Publications
Bruton's tyrosine kinase inhibitors (BTKi) and CAR T-cell therapy have demonstrated tremendous clinical benefits in mantle cell lymphoma (MCL) patients, but intrinsic or acquired resistance inevitably develops. In this study, we assessed the efficacy of the highly potent and selective MCL-1 inhibitor AZD5991 in various therapy-resistant MCL cell models. AZD5991 markedly induced apoptosis in these cells. In addition to liberating BAK from the antiapoptotic MCL-1/BAK complex for the subsequent apoptosis cascade, AZD5991 downregulated inhibitor of apoptosis proteins (IAPs) through a BAK-dependent mechanism to amplify the apoptotic signal. The combination of AZD5991 with venetoclax enhanced apoptosis and reduced mitochondrial oxygen consumption …
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
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
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 …
Quantification Of Observable Behaviors Following Oral Administration Of Oxycodone And Nalfurafine In Male Rhesus Monkeys, Sally L. Huskinson, Donna M. Platt, Zachary R. Smith, William S. Doyle, C. Austin Zamarripa, Kristen Dunaway, Thomas E. Prisinzano, Kevin B. Freeman
Quantification Of Observable Behaviors Following Oral Administration Of Oxycodone And Nalfurafine In Male Rhesus Monkeys, Sally L. Huskinson, Donna M. Platt, Zachary R. Smith, William S. Doyle, C. Austin Zamarripa, Kristen Dunaway, Thomas E. Prisinzano, Kevin B. Freeman
Pharmaceutical Sciences Faculty Publications
BACKGROUND: Recent preclinical studies have investigated the atypical kappa-opioid receptor (KOR) agonist, nalfurafine, as a co-formulary with mu-opioid receptor (MOR) agonists as a potential deterrent for misuse. However, no study has investigated effects of nalfurafine combined with a MOR agonist using an oral route of administration. The objective of the current study was to measure behavioral effects of orally administered oxycodone and nalfurafine, alone and combined, in rhesus monkeys using a quantitative behavioral observation procedure.
METHODS: Adult male rhesus monkeys (N=5) were orally administered vehicle, oxycodone (0.56-1.8mg/kg), nalfurafine (0.001-0.0056mg/kg), or mixtures (1.0mg/kg oxycodone/0.001-0.0056mg/kg nalfurafine) in a Jell-O vehicle at multiple …
Experimentally Induced Active And Quiet Sleep Engage Non-Overlapping Transcriptional Programs In Drosophila, Niki Anthoney, Lucy Tainton-Heap, Hang Luong, Eleni Notaras, Amber B Kewin, Qiongyi Zhao, Trent Perry, Philip Batterham, Paul J Shaw, Bruno Van Swinderen
Experimentally Induced Active And Quiet Sleep Engage Non-Overlapping Transcriptional Programs In Drosophila, Niki Anthoney, Lucy Tainton-Heap, Hang Luong, Eleni Notaras, Amber B Kewin, Qiongyi Zhao, Trent Perry, Philip Batterham, Paul J Shaw, Bruno Van Swinderen
2020-Current year OA Pubs
Sleep in mammals can be broadly classified into two different physiological categories: rapid eye movement (REM) sleep and slow-wave sleep (SWS), and accordingly REM and SWS are thought to achieve a different set of functions. The fruit fly
Disrupting Actin Filaments Enhances Glucose-Stimulated Insulin Secretion Independent Of The Cortical Actin Cytoskeleton, Alexander J Polino, Xue Wen Ng, Rebecca Rooks, David W Piston
Disrupting Actin Filaments Enhances Glucose-Stimulated Insulin Secretion Independent Of The Cortical Actin Cytoskeleton, Alexander J Polino, Xue Wen Ng, Rebecca Rooks, David W Piston
2020-Current year OA Pubs
Just under the plasma membrane of most animal cells lies a dense meshwork of actin filaments called the cortical cytoskeleton. In insulin-secreting pancreatic β cells, a long-standing model posits that the cortical actin layer primarily acts to restrict access of insulin granules to the plasma membrane. Here we test this model and find that stimulating β cells with pro-secretory stimuli (glucose and/or KCl) has little impact on the cortical actin layer. Chemical perturbations of actin polymerization, by either disrupting or enhancing filamentation, dramatically enhance glucose-stimulated insulin secretion. Using scanning electron microscopy, we directly visualize the cortical cytoskeleton, allowing us to …
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.
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, …
Cux1-Related Neurodevelopmental Disorder: Deep Insights Into Phenotype-Genotype Spectrum And Underlying Pathology, Henry Oppermann, Christina A Gurnett, Et Al.
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
Bhlhe40 Mediates Cross-Talk Between Pathogenic Th17 Cells And Myeloid Cells During Experimental Autoimmune Encephalomyelitis, Melissa E Cook, Irina Shchukina, Chih-Chung Lin, Tara R Bradstreet, Elizabeth A Schwarzkopf, Nicholas N Jarjour, Ashlee M Webber, Konstantin Zaitsev, Maxim N Artyomov, Brian T Edelson
Bhlhe40 Mediates Cross-Talk Between Pathogenic Th17 Cells And Myeloid Cells During Experimental Autoimmune Encephalomyelitis, Melissa E Cook, Irina Shchukina, Chih-Chung Lin, Tara R Bradstreet, Elizabeth A Schwarzkopf, Nicholas N Jarjour, Ashlee M Webber, Konstantin Zaitsev, Maxim N Artyomov, Brian T Edelson
2020-Current year OA Pubs
TH17 cells are implicated in the pathogenesis of multiple sclerosis and experimental autoimmune encephalomyelitis (EAE). We previously reported that the transcription factor basic helix-loop-helix family member e40 (BHLHE40) marks cytokine-producing pathogenic TH cells during EAE, and that its expression in T cells is required for clinical disease. In this study, using dual reporter mice, we show BHLHE40 expression within TH1/17 and ex-TH17 cells following EAE induction. Il17a-Cre-mediated deletion of BHLHE40 in TH cells led to less severe EAE with reduced TH cell cytokine production. Characterization of the leukocytes in the CNS during EAE by single-cell RNA sequencing identified differences 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
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 …
Early Skeletal Muscle Loss In Adolescent And Young Adult Cancer Patients Treated With Anthracycline Chemotherapy, Savannah V Wooten, Fei Wang, Michael E Roth, Guanshu Liu, J Andrew Livingston, Behrang Amini, Susan C Gilchrist, Michelle Hildebrandt, Eugenie S Kleinerman
Early Skeletal Muscle Loss In Adolescent And Young Adult Cancer Patients Treated With Anthracycline Chemotherapy, Savannah V Wooten, Fei Wang, Michael E Roth, Guanshu Liu, J Andrew Livingston, Behrang Amini, Susan C Gilchrist, Michelle Hildebrandt, Eugenie S Kleinerman
Faculty, Staff and Student Publications
BACKGROUND: Early skeletal muscle loss has been observed in adolescent and young adult (AYA) sarcoma patients undergoing treatment. Identification of individuals within the AYA populace that are at greatest risk of anthracycline-induced skeletal muscle loss is unknown. Moreover, investigations which seek out underlying causes of skeletal muscle degradation during chemotherapy are critical for understanding, preventing, and reducing chronic health conditions associated with poor skeletal muscle status.
METHODS: Computed tomography (CT) scans were used to investigate changes in skeletal muscle of 153 AYA sarcoma and Hodgkin lymphoma patients at thoracic vertebra 4 after anthracycline treatment. Images were examined at three time …
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
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 …
A New Ferrocene Derivative Blocks K-Ras Localization And Function By Oxidative Modification At His95, Kristen M Rehl, Jayaraman Selvakumar, Rhonda L Pitsch, Don Hoang, Kuppuswamy Arumugam, Sean W Harshman, Alemayehu A Gorfe, Kwang-Jin Cho
A New Ferrocene Derivative Blocks K-Ras Localization And Function By Oxidative Modification At His95, Kristen M Rehl, Jayaraman Selvakumar, Rhonda L Pitsch, Don Hoang, Kuppuswamy Arumugam, Sean W Harshman, Alemayehu A Gorfe, Kwang-Jin Cho
Faculty, Staff and Student Publications
Ras proteins are membrane-bound GTPases that regulate essential cellular processes at the plasma membrane (PM). Constitutively active mutations of K-Ras, one of the three Ras isoforms in mammalian cells, are frequently found in human cancers. Ferrocene derivatives, which elevate cellular reactive oxygen species (ROS), have shown to block the growth of non-small cell lung cancers harboring oncogenic mutant K-Ras. Here, we tested a novel ferrocene derivative on the growth of pancreatic ductal adenocarcinoma and non-small cell lung cancer. Our compound, which elevated cellular ROS levels, inhibited the growth of K-Ras-driven cancers, and abrogated the PM binding and signaling of K-Ras …