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Articles 2371 - 2400 of 4657
Full-Text Articles in Entire DC Network
Med25 Limits Master Regulators That Govern Adipogenesis, Jasmine Saunders, Kunal Sikder, Elizabeth Phillips, Anurag Ishwar, David Mothy, Kenneth B. Margulies, Jason C. Choi
Med25 Limits Master Regulators That Govern Adipogenesis, Jasmine Saunders, Kunal Sikder, Elizabeth Phillips, Anurag Ishwar, David Mothy, Kenneth B. Margulies, Jason C. Choi
Department of Medicine Faculty Papers
Mediator 25 (Med25) is a member of the mediator complex that relays signals from transcription factors to the RNA polymerase II machinery. Multiple transcription factors, particularly those involved in lipid metabolism, utilize the mediator complex, but how Med25 is involved in this context is unclear. We previously identified Med25 in a translatome screen of adult cardiomyocytes (CMs) in a novel cell type-specific model of LMNA cardiomyopathy. In this study, we show that Med25 upregulation is coincident with myocardial lipid accumulation. To ascertain the role of Med25 in lipid accumulation, we utilized iPSC-derived and neonatal CMs to recapitulate the in vivo …
Design And Preclinical Evaluation Of A Universal Sars-Cov-2 Mrna Vaccine, Jane Qin, Ju Hyeong Jeon, Jiangsheng Xu, Laura Katherine Langston, Ramesh Marasini, Stephanie Mou, Brian Montoya, Carolina R Melo-Silva, Hyo Jin Jeon, Tianyi Zhu, Luis J. Sigal, Renhuan Xu, Huabin Zhu
Design And Preclinical Evaluation Of A Universal Sars-Cov-2 Mrna Vaccine, Jane Qin, Ju Hyeong Jeon, Jiangsheng Xu, Laura Katherine Langston, Ramesh Marasini, Stephanie Mou, Brian Montoya, Carolina R Melo-Silva, Hyo Jin Jeon, Tianyi Zhu, Luis J. Sigal, Renhuan Xu, Huabin Zhu
Department of Microbiology and Immunology Faculty Papers
Because of the rapid mutations of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), an effective vaccine against SARS-CoV-2 variants is needed to prevent coronavirus disease 2019 (COVID-19). T cells, in addition to neutralizing antibodies, are an important component of naturally acquired protective immunity, and a number of studies have shown that T cells induced by natural infection or vaccination contribute significantly to protection against several viral infections including SARS-CoV-2. However, it has never been tested whether a T cell-inducing vaccine can provide significant protection against SARS-CoV-2 infection in the absence of preexisting antibodies. In this study, we designed and evaluated …
Cc16 Augmentation Reduces Exaggerated Copd-Like Disease In Cc16-Deficient Mice, Joselyn Rojas-Quintero, Maria Eugenia Laucho-Contreras, Xiaoyun Wang, Quynh-Anh Fucci, Patrick R Burkett, Se-Jin Kim, Duo Zhang, Yohannes Tesfaigzi, Yuhong Li, Abhiram R Bhashyam, Zhang Li, Haider Khamas, Bartolome Celli, Aprile L Pilon, Francesca Polverino, Caroline A Owen
Cc16 Augmentation Reduces Exaggerated Copd-Like Disease In Cc16-Deficient Mice, Joselyn Rojas-Quintero, Maria Eugenia Laucho-Contreras, Xiaoyun Wang, Quynh-Anh Fucci, Patrick R Burkett, Se-Jin Kim, Duo Zhang, Yohannes Tesfaigzi, Yuhong Li, Abhiram R Bhashyam, Zhang Li, Haider Khamas, Bartolome Celli, Aprile L Pilon, Francesca Polverino, Caroline A Owen
Faculty, Staff and Students Publications
Low Club Cell 16 kDa protein (CC16) plasma levels are linked to accelerated lung function decline in patients with chronic obstructive pulmonary disease (COPD). Cigarette smoke-exposed (CS-exposed) Cc16-/- mice have exaggerated COPD-like disease associated with increased NF-κB activation in their lungs. It is unclear whether CC16 augmentation can reverse exaggerated COPD in CS-exposed Cc16-/- mice and whether increased NF-κB activation contributes to the exaggerated COPD in CS-exposed Cc16-/- lungs. CS-exposed WT and Cc16-/- mice were treated with recombinant human CC16 (rhCC16) or an NF-κB inhibitor versus vehicle beginning at the midpoint of the exposures. COPD-like disease and NF-κB activation were …
Macrophages Promote Repair Of Inner Hair Cell Ribbon Synapses Following Noise-Induced Cochlear Synaptopathy, Vijayprakash Manickam, Dinesh Y Gawande, Andrew R Stothert, Anna C Clayman, Lyudmila Batalkina, Mark E Warchol, Kevin K Ohlemiller, Tejbeer Kaur
Macrophages Promote Repair Of Inner Hair Cell Ribbon Synapses Following Noise-Induced Cochlear Synaptopathy, Vijayprakash Manickam, Dinesh Y Gawande, Andrew R Stothert, Anna C Clayman, Lyudmila Batalkina, Mark E Warchol, Kevin K Ohlemiller, Tejbeer Kaur
2020-Current year OA Pubs
Resident cochlear macrophages rapidly migrate into the inner hair cell synaptic region and directly contact the damaged synaptic connections after noise-induced synaptopathy. Eventually, such damaged synapses are spontaneously repaired, but the precise role of macrophages in synaptic degeneration and repair remains unknown. To address this, cochlear macrophages were eliminated using colony stimulating factor 1 receptor (CSF1R) inhibitor, PLX5622. Sustained treatment with PLX5622 in
Interleukins, Chemokines, And Tumor Necrosis Factor Superfamily Ligands In The Pathogenesis Of West Nile Virus Infection, Emna Benzarti, Kristy O Murray, Shannon E Ronca
Interleukins, Chemokines, And Tumor Necrosis Factor Superfamily Ligands In The Pathogenesis Of West Nile Virus Infection, Emna Benzarti, Kristy O Murray, Shannon E Ronca
Faculty, Staff and Students Publications
West Nile virus (WNV) is a mosquito-borne pathogen that can lead to encephalitis and death in susceptible hosts. Cytokines play a critical role in inflammation and immunity in response to WNV infection. Murine models provide evidence that some cytokines offer protection against acute WNV infection and assist with viral clearance, while others play a multifaceted role WNV neuropathogenesis and immune-mediated tissue damage. This article aims to provide an up-to-date review of cytokine expression patterns in human and experimental animal models of WNV infections. Here, we outline the interleukins, chemokines, and tumor necrosis factor superfamily ligands associated with WNV infection and …
Multi-Omics Analysis Identifies Drivers Of Protein Phosphorylation., Tian Zhang, Gregory R Keele, Isabela Gerdes Gyuricza, Matthew J Vincent, Catherine Brunton, Timothy A Bell, Pablo Hock, Ginger D Shaw, Steven C. Munger, Fernando Pardo-Manuel De Villena, Martin T Ferris, Joao A Paulo, Steven P Gygi, Gary Churchill
Multi-Omics Analysis Identifies Drivers Of Protein Phosphorylation., Tian Zhang, Gregory R Keele, Isabela Gerdes Gyuricza, Matthew J Vincent, Catherine Brunton, Timothy A Bell, Pablo Hock, Ginger D Shaw, Steven C. Munger, Fernando Pardo-Manuel De Villena, Martin T Ferris, Joao A Paulo, Steven P Gygi, Gary Churchill
Faculty Research 2023
BACKGROUND: Phosphorylation of proteins is a key step in the regulation of many cellular processes including activation of enzymes and signaling cascades. The abundance of a phosphorylated peptide (phosphopeptide) is determined by the abundance of its parent protein and the proportion of target sites that are phosphorylated.
RESULTS: We quantified phosphopeptides, proteins, and transcripts in heart, liver, and kidney tissue samples of mice from 58 strains of the Collaborative Cross strain panel. We mapped ~700 phosphorylation quantitative trait loci (phQTL) across the three tissues and applied genetic mediation analysis to identify causal drivers of phosphorylation. We identified kinases, phosphatases, cytokines, …
A First-In-Human Phase I Study Of Milademetan, An Mdm2 Inhibitor, In Patients With Advanced Liposarcoma, Solid Tumors, Or Lymphomas, Mrinal M Gounder, Todd M Bauer, Gary K Schwartz, Amy M Weise, Patricia Lorusso, Prasanna Kumar, Ben Tao, Ying Hong, Parul Patel, Yasong Lu, Arnaud Lesegretain, Vijaya G Tirunagaru, Feng Xu, Robert C Doebele, David S Hong
A First-In-Human Phase I Study Of Milademetan, An Mdm2 Inhibitor, In Patients With Advanced Liposarcoma, Solid Tumors, Or Lymphomas, Mrinal M Gounder, Todd M Bauer, Gary K Schwartz, Amy M Weise, Patricia Lorusso, Prasanna Kumar, Ben Tao, Ying Hong, Parul Patel, Yasong Lu, Arnaud Lesegretain, Vijaya G Tirunagaru, Feng Xu, Robert C Doebele, David S Hong
Faculty, Staff and Student Publications
Purpose: This study evaluated the safety, pharmacokinetics, pharmacodynamics, and preliminary efficacy of milademetan, a small-molecule murine double minute-2 (MDM2) inhibitor, in patients with advanced cancers.
Patients and methods: In this first-in-human phase I study, patients with advanced solid tumors or lymphomas received milademetan orally once daily as extended/continuous (days 1-21 or 1-28 every 28 days) or intermittent (days 1-7, or days 1-3 and 15-17 every 28 days) schedules. The primary objective was to determine the recommended phase II dose and schedule. Secondary objectives included tumor response according to standard evaluation criteria. Predefined analyses by tumor type were performed. Safety and …
Serum And Urinary Soluble Α-Klotho As Markers Of Kidney And Vascular Impairment, Julia Martín-Vírgala, Adriana S Dusso, Et Al.
Serum And Urinary Soluble Α-Klotho As Markers Of Kidney And Vascular Impairment, Julia Martín-Vírgala, Adriana S Dusso, Et Al.
2020-Current year OA Pubs
This study was designed to investigate the controversy on the potential role of sKlotho as an early biomarker in Chronic Kidney Disease-Mineral Bone Disorder (CKD-MBD), to assess whether sKlotho is a reliable marker of kidney α-Klotho, to deepen the effects of sKlotho on vascular smooth muscle cells (VSMCs) osteogenic differentiation and to evaluate the role of autophagy in this process. Experimental studies were conducted in CKD mice fed a normal phosphorus (CKD+NP) or high phosphorus (CKD+HP) diet for 14 weeks. The patients' study was performed in CKD stages 2-5 and in vitro studies which used VSMCs exposed to non-calcifying medium …
A Mast Cell-Thermoregulatory Neuron Circuit Axis Regulates Hypothermia In Anaphylaxis, Chunjing Bao, Ouyang Chen, Huaxin Sheng, Jeffrey Zhang, Yikai Luo, Byron W Hayes, Han Liang, Wolfgang Liedtke, Ru-Rong Ji, Soman N Abraham
A Mast Cell-Thermoregulatory Neuron Circuit Axis Regulates Hypothermia In Anaphylaxis, Chunjing Bao, Ouyang Chen, Huaxin Sheng, Jeffrey Zhang, Yikai Luo, Byron W Hayes, Han Liang, Wolfgang Liedtke, Ru-Rong Ji, Soman N Abraham
Faculty, Staff and Student Publications
IgE-mediated anaphylaxis is an acute life-threatening systemic reaction to allergens, including certain foods and venoms. Anaphylaxis is triggered when blood-borne allergens activate IgE-bound perivascular mast cells (MCs) throughout the body, causing an extensive systemic release of MC mediators. Through precipitating vasodilatation and vascular leakage, these mediators are believed to trigger a sharp drop in blood pressure in humans and in core body temperature in animals. We report that the IgE/MC-mediated drop in body temperature in mice associated with anaphylaxis also requires the body's thermoregulatory neural circuit. This circuit is activated when granule-borne chymase from MCs is deposited on proximal TRPV1+ …
Comparison Of Efficacy And Inflammatory Response To Thermoconjunctivoplasty Performed With Cautery Or Pulsed 1460 Nm Laser, Rodrigo Guimaraes De Souza, David Huang, Scott Prahl, Lauren Nakhleh, Stephen C Pflugfelder
Comparison Of Efficacy And Inflammatory Response To Thermoconjunctivoplasty Performed With Cautery Or Pulsed 1460 Nm Laser, Rodrigo Guimaraes De Souza, David Huang, Scott Prahl, Lauren Nakhleh, Stephen C Pflugfelder
Faculty, Staff and Students Publications
Conjunctivochalasis is a degenerative condition of the conjunctiva that disrupts tear distribution and causes irritation. Thermoreduction of the redundant conjunctiva is required if symptoms are not relieved with medical therapy. Near-infrared laser treatment is a more controlled method to shrink the conjunctiva than thermocautery. This study compared tissue shrinkage, histology, and postoperative inflammation in thermoconjunctivoplasty performed on the mouse conjunctiva using either thermocautery or pulsed 1460 nm near-infrared laser irradiation. Three sets of experiments were performed on female C57BL/6J mice (
Targeted Delivery Of Therapeutic Agents To The Mouse Brain Using A Stereotactic-Guided Focused Ultrasound Device, Zhongtao Hu, Yaoheng Yang, Dezhuang Ye, Si Chen, Yan Gong, Chinwendu Chukwu, Hong Chen
Targeted Delivery Of Therapeutic Agents To The Mouse Brain Using A Stereotactic-Guided Focused Ultrasound Device, Zhongtao Hu, Yaoheng Yang, Dezhuang Ye, Si Chen, Yan Gong, Chinwendu Chukwu, Hong Chen
2020-Current year OA Pubs
Existing protocols of focused ultrasound (FUS) combined with microbubble-mediated blood-brain barrier (BBB) opening (FUS-BBBO) in preclinical research require expensive ultrasound equipment and complex operating procedures. We developed a low-cost, easy-to-use, and precise FUS device for small animal models in preclinical research. Here, we provide a detailed protocol for building the FUS transducer, attaching the transducer to a stereotactic frame for precise brain targeting, applying the integrated FUS device to perform FUS-BBBO in mice, and evaluating the FUS-BBBO outcome. For complete details on the use and execution of this protocol, please refer to Hu et al. (2022).
Zoledronic Acid Blocks Overactive Kir6.1/Sur2-Dependent Katp Channels In Skeletal Muscle And Osteoblasts In A Murine Model Of Cantú Syndrome, Rosa Scala, Fatima Maqoud, Conor Mcclenaghan, Theresa M Harter, Maria Grazia Perrone, Antonio Scilimati, Colin G Nichols, Domenico Tricarico
Zoledronic Acid Blocks Overactive Kir6.1/Sur2-Dependent Katp Channels In Skeletal Muscle And Osteoblasts In A Murine Model Of Cantú Syndrome, Rosa Scala, Fatima Maqoud, Conor Mcclenaghan, Theresa M Harter, Maria Grazia Perrone, Antonio Scilimati, Colin G Nichols, Domenico Tricarico
2020-Current year OA Pubs
Cantú syndrome (CS) is caused by the gain of function mutations in the
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Cristian T Badea, Thomas L Chenevert, Heike E Daldrup-Link, Li Ding, Lacey E Dobrolecki, A Mcgarry Houghton, Paul E Kinahan, John Kurhanewicz, Michael T Lewis, Shunqiang Li, Gary D Luker, Cynthia X Ma, H Charles Manning, Yvonne M Mowery, Peter J O'Dwyer, Robia G Pautler, Mark A Rosen, Raheleh Roudi, Brian D Ross, Kooresh I Shoghi, Renuka Sriram, Moshe Talpaz, Richard L Wahl, Rong Zhou
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Cristian T Badea, Thomas L Chenevert, Heike E Daldrup-Link, Li Ding, Lacey E Dobrolecki, A Mcgarry Houghton, Paul E Kinahan, John Kurhanewicz, Michael T Lewis, Shunqiang Li, Gary D Luker, Cynthia X Ma, H Charles Manning, Yvonne M Mowery, Peter J O'Dwyer, Robia G Pautler, Mark A Rosen, Raheleh Roudi, Brian D Ross, Kooresh I Shoghi, Renuka Sriram, Moshe Talpaz, Richard L Wahl, Rong Zhou
Faculty, Staff and Student Publications
The availability of high-fidelity animal models for oncology research has grown enormously in recent years, enabling preclinical studies relevant to prevention, diagnosis, and treatment of cancer to be undertaken. This has led to increased opportunities to conduct co-clinical trials, which are studies on patients that are carried out parallel to or sequentially with animal models of cancer that mirror the biology of the patients' tumors. Patient-derived xenografts (PDX) and genetically engineered mouse models (GEMM) are considered to be the models that best represent human disease and have high translational value. Notably, one element of co-clinical trials that still needs significant …
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Li Ding, Kooresh I Shoghi, Et Al.
Animal Models And Their Role In Imaging-Assisted Co-Clinical Trials, Donna M Peehl, Li Ding, Kooresh I Shoghi, Et Al.
2020-Current year OA Pubs
The availability of high-fidelity animal models for oncology research has grown enormously in recent years, enabling preclinical studies relevant to prevention, diagnosis, and treatment of cancer to be undertaken. This has led to increased opportunities to conduct co-clinical trials, which are studies on patients that are carried out parallel to or sequentially with animal models of cancer that mirror the biology of the patients' tumors. Patient-derived xenografts (PDX) and genetically engineered mouse models (GEMM) are considered to be the models that best represent human disease and have high translational value. Notably, one element of co-clinical trials that still needs significant …
The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty
The Alpha7 Integrin Subunit In Astrocytes Promotes Endothelial Blood-Brain Barrier Integrity, Zhihua Chen, Jack R Kelly, John E Morales, Raymond C Sun, Arpan De, Dean J Burkin, Joseph H Mccarty
Faculty, Staff and Student Publications
The blood-brain barrier (BBB) is a vascular endothelial cell boundary that partitions the circulation from the central nervous system to promote normal brain health. We have a limited understanding of how the BBB is formed during development and maintained in adulthood. We used quantitative transcriptional profiling to investigate whether specific adhesion molecules are involved in BBB functions, with an emphasis on understanding how astrocytes interact with endothelial cells. Our results reveal a striking enrichment of multiple genes encoding laminin subunits as well as the laminin receptor gene Itga7, which encodes the alpha7 integrin subunit, in astrocytes. Genetic ablation of Itga7 …
Generation Of Periventricular Reactive Astrocytes Overexpressing Aquaporin 4 Is Stimulated By Mesenchymal Stem Cell Therapy, María García-Bonilla, Kirill Shumilov, James P Mcallister 2nd, David D Limbrick Jr., Et Al.
Generation Of Periventricular Reactive Astrocytes Overexpressing Aquaporin 4 Is Stimulated By Mesenchymal Stem Cell Therapy, María García-Bonilla, Kirill Shumilov, James P Mcallister 2nd, David D Limbrick Jr., Et Al.
2020-Current year OA Pubs
Aquaporin-4 (AQP4) plays a crucial role in brain water circulation and is considered a therapeutic target in hydrocephalus. Congenital hydrocephalus is associated with a reaction of astrocytes in the periventricular white matter both in experimental models and human cases. A previous report showed that bone marrow-derived mesenchymal stem cells (BM-MSCs) transplanted into the lateral ventricles of hyh mice exhibiting severe congenital hydrocephalus are attracted by the periventricular astrocyte reaction, and the cerebral tissue displays recovery. The present investigation aimed to test the effect of BM-MSC treatment on astrocyte reaction formation. BM-MSCs were injected into the lateral ventricles of four-day-old hyh …
Tsks Localizes To Nuage In Spermatids And Regulates Cytoplasmic Elimination During Spermiation, Keisuke Shimada, Soojin Park, Seiya Oura, Taichi Noda, Akane Morohoshi, Martin M Matzuk, Masahito Ikawa
Tsks Localizes To Nuage In Spermatids And Regulates Cytoplasmic Elimination During Spermiation, Keisuke Shimada, Soojin Park, Seiya Oura, Taichi Noda, Akane Morohoshi, Martin M Matzuk, Masahito Ikawa
Faculty, Staff and Students Publications
Spermatozoa have a streamlined shape to swim through the oviduct to fertilize oocytes. To become svelte spermatozoa, spermatid cytoplasm must be eliminated in several steps including sperm release, which is part of spermiation. Although this process has been well observed, the molecular mechanisms that underlie it remain unclear. In male germ cells, there are membraneless organelles called nuage, which are observed by electron microscopy in various forms of dense material. Reticulated body (RB) and chromatoid body remnant (CR) are two types of nuage in spermatids, but the functions of both are unknown. Using CRISPR/Cas9 technology, we deleted the entire coding …
In Vivo Functional Characterization Of Egfr Variants Identifies Novel Drivers Of Glioblastoma, Kwanha Yu, Kathleen Kong, Brittney Lozzi, Estefania Luna-Figueroa, Alexis Cervantes, Rachel Curry, Carrie A Mohila, Ganesh Rao, Ali Jalali, Gordon B Mills, Kenneth L Scott, Benjamin Deneen
In Vivo Functional Characterization Of Egfr Variants Identifies Novel Drivers Of Glioblastoma, Kwanha Yu, Kathleen Kong, Brittney Lozzi, Estefania Luna-Figueroa, Alexis Cervantes, Rachel Curry, Carrie A Mohila, Ganesh Rao, Ali Jalali, Gordon B Mills, Kenneth L Scott, Benjamin Deneen
Faculty, Staff and Students Publications
BACKGROUND: Glioblastoma is the most common and aggressive primary brain tumor. Large-scale sequencing initiatives have cataloged its mutational landscape in hopes of elucidating mechanisms driving this deadly disease. However, a major bottleneck in harnessing this data for new therapies is deciphering "driver" and "passenger" events amongst the vast volume of information.
METHODS: We utilized an autochthonous, in vivo screening approach to identify driver, EGFR variants. RNA-Seq identified unique molecular signatures of mouse gliomas across these variants, which only differ by a single amino acid change. In particular, we identified alterations to lipid metabolism, which we further validated through an unbiased …
Acute Acat1/Soat1 Blockade Increases Mam Cholesterol And Strengthens Er-Mitochondria Connectivity., Taylor C Harned, Radu V Stan, Ze Cao, Rajarshi Chakrabarti, Henry N Higgs, Catherine C Y Chang, Ta Yuan Chang
Acute Acat1/Soat1 Blockade Increases Mam Cholesterol And Strengthens Er-Mitochondria Connectivity., Taylor C Harned, Radu V Stan, Ze Cao, Rajarshi Chakrabarti, Henry N Higgs, Catherine C Y Chang, Ta Yuan Chang
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Cholesterol is a key component of all mammalian cell membranes. Disruptions in cholesterol metabolism have been observed in the context of various diseases, including neurodegenerative disorders such as Alzheimer's disease (AD). The genetic and pharmacological blockade of acyl-CoA:cholesterol acyltransferase 1/sterol O-acyltransferase 1 (ACAT1/SOAT1), a cholesterol storage enzyme found on the endoplasmic reticulum (ER) and enriched at the mitochondria-associated ER membrane (MAM), has been shown to reduce amyloid pathology and rescue cognitive deficits in mouse models of AD. Additionally, blocking ACAT1/SOAT1 activity stimulates autophagy and lysosomal biogenesis; however, the exact molecular connection between the ACAT1/SOAT1 blockade and these observed benefits remain …
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Glut1 Is Redundant In Hypoxic And Glycolytic Nucleus Pulposus Cells Of The Intervertebral Disc, Shira N. Johnston, Elizabeth S. Silagi, Vedavathi Madhu, Duc H. Nguyen, Irving M. Shapiro, Makarand V. Risbud
Department of Orthopaedic Surgery Faculty Papers
Glycolysis is central to homeostasis of nucleus pulposus (NP) cells in the avascular intervertebral disc. Since the glucose transporter, GLUT1, is a highly enriched phenotypic marker of NP cells, we hypothesized that it is vital for the development and postnatal maintenance of the disc. Surprisingly, primary NP cells treated with 2 well-characterized GLUT1 inhibitors maintained normal rates of glycolysis and ATP production, indicating intrinsic compensatory mechanisms. We showed in vitro that NP cells mitigated GLUT1 loss by rewiring glucose import through GLUT3. Of note, we demonstrated that substrates, such as glutamine and palmitate, did not compensate for glucose restriction resulting …
Hypomorphic Brca2 And Rad51c Double Mutant Mice Display Fanconi Anemia, Cancer And Polygenic Replication Stress, Karl-Heinz Tomaszowski, Sunetra Roy, Carolina Guerrero, Poojan Shukla, Caezaan Keshvani, Yue Chen, Martina Ott, Xiaogang Wu, Jianhua Zhang, Courtney D Dinardo, Detlev Schindler, Katharina Schlacher
Hypomorphic Brca2 And Rad51c Double Mutant Mice Display Fanconi Anemia, Cancer And Polygenic Replication Stress, Karl-Heinz Tomaszowski, Sunetra Roy, Carolina Guerrero, Poojan Shukla, Caezaan Keshvani, Yue Chen, Martina Ott, Xiaogang Wu, Jianhua Zhang, Courtney D Dinardo, Detlev Schindler, Katharina Schlacher
Faculty, Staff and Student Publications
The prototypic cancer-predisposition disease Fanconi Anemia (FA) is identified by biallelic mutations in any one of twenty-three FANC genes. Puzzlingly, inactivation of one Fanc gene alone in mice fails to faithfully model the pleiotropic human disease without additional external stress. Here we find that FA patients frequently display FANC co-mutations. Combining exemplary homozygous hypomorphic Brca2/Fancd1 and Rad51c/Fanco mutations in mice phenocopies human FA with bone marrow failure, rapid death by cancer, cellular cancer-drug hypersensitivity and severe replication instability. These grave phenotypes contrast the unremarkable phenotypes seen in mice with single gene-function inactivation, revealing an unexpected synergism between Fanc mutations. Beyond …
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Smad2/3 Signaling In The Uterine Epithelium Controls Endometrial Cell Homeostasis And Regeneration, Maya L Kriseman, Suni Tang, Zian Liao, Peixin Jiang, Sydney E Parks, Dominique I Cope, Fei Yuan, Fengju Chen, Ramya P Masand, Patricia D Castro, Michael M Ittmann, Chad J Creighton, Zhi Tan, Diana Monsivais
Faculty, Staff and Students Publications
The regenerative potential of the endometrium is attributed to endometrial stem cells; however, the signaling pathways controlling its regenerative potential remain obscure. In this study, genetic mouse models and endometrial organoids are used to demonstrate that SMAD2/3 signaling controls endometrial regeneration and differentiation. Mice with conditional deletion of SMAD2/3 in the uterine epithelium using Lactoferrin-iCre develop endometrial hyperplasia at 12-weeks and metastatic uterine tumors by 9-months of age. Mechanistic studies in endometrial organoids determine that genetic or pharmacological inhibition of SMAD2/3 signaling disrupts organoid morphology, increases the glandular and secretory cell markers, FOXA2 and MUC1, and alters the genome-wide distribution …
Brain Injury Accelerates The Onset Of A Reversible Age-Related Microglial Phenotype Associated With Inflammatory Neurodegeneration, Rodney M Ritzel, Yun Li, Yun Jiao, Zhuofan Lei, Sarah J Doran, Junyun He, Rami A Shahror, Rebecca J Henry, Romeesa Khan, Chunfeng Tan, Shaolin Liu, Bogdan A Stoica, Alan I Faden, Gregory Szeto, David J Loane, Junfang Wu
Brain Injury Accelerates The Onset Of A Reversible Age-Related Microglial Phenotype Associated With Inflammatory Neurodegeneration, Rodney M Ritzel, Yun Li, Yun Jiao, Zhuofan Lei, Sarah J Doran, Junyun He, Rami A Shahror, Rebecca J Henry, Romeesa Khan, Chunfeng Tan, Shaolin Liu, Bogdan A Stoica, Alan I Faden, Gregory Szeto, David J Loane, Junfang Wu
Faculty, Staff and Student Publications
Lipofuscin is an autofluorescent (AF) pigment formed by lipids and misfolded proteins, which accumulates in postmitotic cells with advanced age. Here, we immunophenotyped microglia in the brain of old C57BL/6 mice (>18 months old) and demonstrate that in comparison to young mice, one-third of old microglia are AF, characterized by profound changes in lipid and iron content, phagocytic activity, and oxidative stress. Pharmacological depletion of microglia in old mice eliminated the AF microglia following repopulation and reversed microglial dysfunction. Age-related neurological deficits and neurodegeneration after traumatic brain injury (TBI) were attenuated in old mice lacking AF microglia. Furthermore, increased …
Towards A Biomarker For Acute Arterial Thrombosis Using Complete Blood Count And White Blood Cell Differential Parameters In Mice, Hee Jeong Jang, Dawid Schellingerhout, Jiwon Kim, Jinyong Chung, Dong-Eog Kim
Towards A Biomarker For Acute Arterial Thrombosis Using Complete Blood Count And White Blood Cell Differential Parameters In Mice, Hee Jeong Jang, Dawid Schellingerhout, Jiwon Kim, Jinyong Chung, Dong-Eog Kim
Faculty, Staff and Student Publications
There is no blood biomarker diagnostic of arterial thrombosis. We investigated if arterial thrombosis per se was associated with alterations in complete blood count (CBC) and white blood cell (WBC) differential count in mice. Twelve-week-old C57Bl/6 mice were used for FeCl3-mediated carotid thrombosis (n = 72), sham-operation (n = 79), or non-operation (n = 26). Monocyte count (/µL) at 30-min after thrombosis (median 160 [interquartile range 140-280]) was ~ 1.3-fold higher than at 30-min after sham-operation (120 [77.5-170]), and twofold higher than in non-operated mice (80 [47.5-92.5]). At day-1 and -4 post-thrombosis, compared with 30-min, monocyte count decreased by about …
Mechanism Of Kmt5b Haploinsufficiency In Neurodevelopment In Humans And Mice, Sarah E Sheppard, Marisa Andrews, Dustin Baldridge, John Constantino, Et Al.
Mechanism Of Kmt5b Haploinsufficiency In Neurodevelopment In Humans And Mice, Sarah E Sheppard, Marisa Andrews, Dustin Baldridge, John Constantino, Et Al.
2020-Current year OA Pubs
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Engineering T Cells To Suppress Acute Gvhd And Leukemia Relapse After Allogeneic Hematopoietic Stem Cell Transplantation, Feiyan Mo, Norihiro Watanabe, Kayleigh I Omdahl, Phillip M Burkhardt, Xiaoyun Ding, Eiko Hayase, Angela Panoskaltsis-Mortari, Robert R Jenq, Helen E Heslop, Leslie S Kean, Malcolm K Brenner, Victor Tkachev, Maksim Mamonkin
Engineering T Cells To Suppress Acute Gvhd And Leukemia Relapse After Allogeneic Hematopoietic Stem Cell Transplantation, Feiyan Mo, Norihiro Watanabe, Kayleigh I Omdahl, Phillip M Burkhardt, Xiaoyun Ding, Eiko Hayase, Angela Panoskaltsis-Mortari, Robert R Jenq, Helen E Heslop, Leslie S Kean, Malcolm K Brenner, Victor Tkachev, Maksim Mamonkin
Faculty, Staff and Student Publications
Acute graft-versus-host disease (aGVHD) limits the therapeutic benefit of allogeneic hematopoietic stem cell transplantation (allo-HSCT) and requires immunosuppressive prophylaxis that compromises antitumor and antipathogen immunity. OX40 is a costimulatory receptor upregulated on circulating T cells in aGVHD and plays a central role in driving the expansion of alloreactive T cells. Here, we show that OX40 is also upregulated on T cells infiltrating GVHD target organs in a rhesus macaque model, supporting the hypothesis that targeted ablation of OX40+ T cells will mitigate GVHD pathogenesis. We thus created an OX40-specific cytotoxic receptor that, when expressed on human T cells, enables selective …
Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel
Neuronal Sirt3 Deletion Predisposes To Female-Specific Alterations In Cellular Metabolism, Memory, And Network Excitability, Jennifer N Pearson-Smith, Ruth Fulton, Christopher Q Huynh, Anna G Figueroa, Gia B Huynh, Li-Ping Liang, Lindsey B Gano, Cole R Michel, Nichole Reisdorph, Richard Reisdorph, Kristofer S Fritz, Eric Verdin, Manisha Patel
Faculty, Staff and Students Publications
Mitochondrial dysfunction is an early event in the pathogenesis of neurologic disorders and aging. Sirtuin 3 (SIRT3) regulates mitochondrial function in response to the cellular environment through the reversible deacetylation of proteins involved in metabolism and reactive oxygen species detoxification. As the primary mitochondrial deacetylase, germline, or peripheral tissue-specific deletion of SIRT3 produces mitochondrial hyperacetylation and the accelerated development of age-related diseases. Given the unique metabolic demands of neurons, the role of SIRT3 in the brain is only beginning to emerge. Using mass spectrometry-based acetylomics, high-resolution respirometry, video-EEG, and cognition testing, we report targeted deletion of SIRT3 from select neurons …
Adipose-Targeted Swell1 Deletion Exacerbates Obesity- And Age-Related Nonalcoholic Fatty Liver Disease, Susheel K. Gunasekar, John Heebink, Danielle H Carpenter, Ashutosh Kumar, Litao Xie, Haixia Zhang, Joel D. Schilling, Rajan Sah
Adipose-Targeted Swell1 Deletion Exacerbates Obesity- And Age-Related Nonalcoholic Fatty Liver Disease, Susheel K. Gunasekar, John Heebink, Danielle H Carpenter, Ashutosh Kumar, Litao Xie, Haixia Zhang, Joel D. Schilling, Rajan Sah
2020-Current year OA Pubs
Healthy expansion of adipose tissue is critical for the maintenance of metabolic health, providing an optimized reservoir for energy storage in the form of triacylglycerol-rich lipoproteins. Dysfunctional adipocytes that are unable to efficiently store lipid can result in lipodystrophy and contribute to nonalcoholic fatty liver disease (NAFLD) and metabolic syndrome. Leucine-rich repeat containing protein 8a/SWELL1 functionally encodes the volume-regulated anion channel complex in adipocytes, is induced in early obesity, and is required for normal adipocyte expansion during high-fat feeding. Adipose-specific SWELL1 ablation (Adipo KO) leads to insulin resistance and hyperglycemia during caloric excess, both of which are associated with NAFLD. …
Multifaceted Role For P53 In Pancreatic Cancer Suppression, Stephano S Mello, Brittany M Flowers, Pawel K Mazur, James J Lee, Fabian Müller, Sarah K Denny, Sofia Ferreira, Kathryn Hanson, Seung K Kim, William J Greenleaf, Laura D Wood, Laura D Attardi
Multifaceted Role For P53 In Pancreatic Cancer Suppression, Stephano S Mello, Brittany M Flowers, Pawel K Mazur, James J Lee, Fabian Müller, Sarah K Denny, Sofia Ferreira, Kathryn Hanson, Seung K Kim, William J Greenleaf, Laura D Wood, Laura D Attardi
Faculty, Staff and Student Publications
The vast majority of human pancreatic ductal adenocarcinomas (PDACs) harbor TP53 mutations, underscoring p53's critical role in PDAC suppression. PDAC can arise when pancreatic acinar cells undergo acinar-to-ductal metaplasia (ADM), giving rise to premalignant pancreatic intraepithelial neoplasias (PanINs), which finally progress to PDAC. The occurrence of TP53 mutations in late-stage PanINs has led to the idea that p53 acts to suppress malignant transformation of PanINs to PDAC. However, the cellular basis for p53 action during PDAC development has not been explored in detail. Here, we leverage a hyperactive p53 variant-p5353,54-which we previously showed is a more robust PDAC suppressor than …
A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan
A Comprehensive And Integrative Approach To Mecp2 Disease Transcriptomics, Alexander J Trostle, Lucian Li, Seon-Young Kim, Jiasheng Wang, Rami Al-Ouran, Hari Krishna Yalamanchili, Zhandong Liu, Ying-Wooi Wan
Faculty, Staff and Students Publications
Mutations in MeCP2 result in a crippling neurological disease, but we lack a lucid picture of MeCP2's molecular role. Individual transcriptomic studies yield inconsistent differentially expressed genes. To overcome these issues, we demonstrate a methodology to analyze all modern public data. We obtained relevant raw public transcriptomic data from GEO and ENA, then homogeneously processed it (QC, alignment to reference, differential expression analysis). We present a web portal to interactively access the mouse data, and we discovered a commonly perturbed core set of genes that transcends the limitations of any individual study. We then found functionally distinct, consistently up- and …