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Articles 2401 - 2430 of 4657

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A Genetic Locus Complements Resistance To Bordetella Pertussis-Induced Histamine Sensitization., Abbas Raza, Sean A Diehl, Dimitry N Krementsov, Laure K Case, Dawei Li, Jason Kost, Robyn L Ball, Elissa J Chesler, Vivek M. Philip, Rui Huang, Yan Chen, Runlin Ma, Anna L Tyler, J Matthew Mahoney, Elizabeth P Blankenhorn, Cory Teuscher Mar 2023

A Genetic Locus Complements Resistance To Bordetella Pertussis-Induced Histamine Sensitization., Abbas Raza, Sean A Diehl, Dimitry N Krementsov, Laure K Case, Dawei Li, Jason Kost, Robyn L Ball, Elissa J Chesler, Vivek M. Philip, Rui Huang, Yan Chen, Runlin Ma, Anna L Tyler, J Matthew Mahoney, Elizabeth P Blankenhorn, Cory Teuscher

Faculty Research 2023

Histamine plays pivotal role in normal physiology and dysregulated production of histamine or signaling through histamine receptors (HRH) can promote pathology. Previously, we showed that Bordetella pertussis or pertussis toxin can induce histamine sensitization in laboratory inbred mice and is genetically controlled by Hrh1/HRH1. HRH1 allotypes differ at three amino acid residues with P


Heterochronic Parabiosis Causes Dacryoadenitis In Young Lacrimal Glands, Kaitlin K Scholand, Alexis F Mack, Gary U Guzman, Michael E Maniskas, Ritu Sampige, Gowthaman Govindarajan, Louise D Mccullough, Cintia S De Paiva Mar 2023

Heterochronic Parabiosis Causes Dacryoadenitis In Young Lacrimal Glands, Kaitlin K Scholand, Alexis F Mack, Gary U Guzman, Michael E Maniskas, Ritu Sampige, Gowthaman Govindarajan, Louise D Mccullough, Cintia S De Paiva

Faculty, Staff and Student Publications

Aging is associated with inflammation and oxidative stress in the lacrimal gland (LG). We investigated if heterochronic parabiosis of mice could modulate age-related LG alterations. In both males and females, there were significant increases in total immune infiltration in isochronic aged LGs compared to that in isochronic young LGs. Male heterochronic young LGs were significantly more infiltrated compared to male isochronic young LGs. While both females and males had significant increases in inflammatory and B-cell-related transcripts in isochronic and heterochronic aged LGs compared to levels isochronic and heterochronic young LGs, females had a greater fold expression of some of these …


Perivascular Cells Induce Microglial Phagocytic States And Synaptic Engulfment Via Spp1 In Mouse Models Of Alzheimer's Disease., Sebastiaan De Schepper, Judy Z Ge, Gerard Crowley, Laís S S Ferreira, Dylan Garceau, Christina E Toomey, Dimitra Sokolova, Javier Rueda-Carrasco, Sun-Hye Shin, Jung-Seok Kim, Thomas Childs, Tammaryn Lashley, Jemima J Burden, Michael Sasner, Carlo Sala Frigerio, Steffen Jung, Soyon Hong Mar 2023

Perivascular Cells Induce Microglial Phagocytic States And Synaptic Engulfment Via Spp1 In Mouse Models Of Alzheimer's Disease., Sebastiaan De Schepper, Judy Z Ge, Gerard Crowley, Laís S S Ferreira, Dylan Garceau, Christina E Toomey, Dimitra Sokolova, Javier Rueda-Carrasco, Sun-Hye Shin, Jung-Seok Kim, Thomas Childs, Tammaryn Lashley, Jemima J Burden, Michael Sasner, Carlo Sala Frigerio, Steffen Jung, Soyon Hong

Faculty Research 2023

Alzheimer's disease (AD) is characterized by synaptic loss, which can result from dysfunctional microglial phagocytosis and complement activation. However, what signals drive aberrant microglia-mediated engulfment of synapses in AD is unclear. Here we report that secreted phosphoprotein 1 (SPP1/osteopontin) is upregulated predominantly by perivascular macrophages and, to a lesser extent, by perivascular fibroblasts. Perivascular SPP1 is required for microglia to engulf synapses and upregulate phagocytic markers including C1qa, Grn and Ctsb in presence of amyloid-β oligomers. Absence of Spp1 expression in AD mouse models results in prevention of synaptic loss. Furthermore, single-cell RNA sequencing and putative cell-cell interaction analyses reveal …


High Sucrose Consumption Decouples Intrinsic And Synaptic Excitability Of Agrp Neurons Without Altering Body Weight., Austin C Korgan, Klausen Oliveira-Abreu, Wei Wei, Sophie L A Martin, Zoey J D Bridges, José Henrique Leal-Cardoso, Catherine Kaczorowski, Kristen M S O'Connell Mar 2023

High Sucrose Consumption Decouples Intrinsic And Synaptic Excitability Of Agrp Neurons Without Altering Body Weight., Austin C Korgan, Klausen Oliveira-Abreu, Wei Wei, Sophie L A Martin, Zoey J D Bridges, José Henrique Leal-Cardoso, Catherine Kaczorowski, Kristen M S O'Connell

Faculty Research 2023

BACKGROUND/OBJECTIVE: As the obesity epidemic continues, the understanding of macronutrient influence on central nervous system function is critical for understanding diet-induced obesity and potential therapeutics, particularly in light of the increased sugar content in processed foods. Previous research showed mixed effects of sucrose feeding on body weight gain but has yet to reveal insight into the impact of sucrose on hypothalamic functioning. Here, we explore the impact of liquid sucrose feeding for 12 weeks on body weight, body composition, caloric intake, and hypothalamic AgRP neuronal function and synaptic plasticity.

METHODS: Patch-clamp electrophysiology of hypothalamic AgRP neurons, metabolic phenotyping and food …


Genetic Mapping Of Microbial And Host Traits Reveals Production Of Immunomodulatory Lipids By Akkermansia Muciniphila In The Murine Gut., Qijun Zhang, Vanessa Linke, Katherine A Overmyer, Lindsay L Traeger, Kazuyuki Kasahara, Ian J Miller, Daniel E Manson, Thomas J Polaske, Robert L Kerby, Julia H Kemis, Edna A Trujillo, Thiru R Reddy, Jason D Russell, Kathryn L Schueler, Donald S Stapleton, Mary E Rabaglia, Marcus Seldin, Daniel M Gatti, Gregory R Keele, Duy T Pham, Joseph P Gerdt, Eugenio I Vivas, Aldons J Lusis, Mark P Keller, Gary Churchill, Helen E Blackwell, Karl W Broman, Alan D Attie, Joshua J Coon, Federico E Rey Mar 2023

Genetic Mapping Of Microbial And Host Traits Reveals Production Of Immunomodulatory Lipids By Akkermansia Muciniphila In The Murine Gut., Qijun Zhang, Vanessa Linke, Katherine A Overmyer, Lindsay L Traeger, Kazuyuki Kasahara, Ian J Miller, Daniel E Manson, Thomas J Polaske, Robert L Kerby, Julia H Kemis, Edna A Trujillo, Thiru R Reddy, Jason D Russell, Kathryn L Schueler, Donald S Stapleton, Mary E Rabaglia, Marcus Seldin, Daniel M Gatti, Gregory R Keele, Duy T Pham, Joseph P Gerdt, Eugenio I Vivas, Aldons J Lusis, Mark P Keller, Gary Churchill, Helen E Blackwell, Karl W Broman, Alan D Attie, Joshua J Coon, Federico E Rey

Faculty Research 2023

The molecular bases of how host genetic variation impacts the gut microbiome remain largely unknown. Here we used a genetically diverse mouse population and applied systems genetics strategies to identify interactions between host and microbe phenotypes including microbial functions, using faecal metagenomics, small intestinal transcripts and caecal lipids that influence microbe-host dynamics. Quantitative trait locus (QTL) mapping identified murine genomic regions associated with variations in bacterial taxa; bacterial functions including motility, sporulation and lipopolysaccharide production and levels of bacterial- and host-derived lipids. We found overlapping QTL for the abundance of Akkermansia muciniphila and caecal levels of ornithine lipids. Follow-up in …


Exposure To Pcb126 During The Nursing Period Reversibly Impacts Early-Life Glucose Tolerance, Brittany Breon Rice, Keegan W. Sammons, Sara Y. Ngo Tenlep, Madeline T. Weltzer, Leryn J. Reynolds, Cetewayo S. Rashid, Hollie I. Swanson, Kevin J. Pearson Mar 2023

Exposure To Pcb126 During The Nursing Period Reversibly Impacts Early-Life Glucose Tolerance, Brittany Breon Rice, Keegan W. Sammons, Sara Y. Ngo Tenlep, Madeline T. Weltzer, Leryn J. Reynolds, Cetewayo S. Rashid, Hollie I. Swanson, Kevin J. Pearson

Markey Cancer Center Faculty Publications

Polychlorinated biphenyls (PCBs) are persistent environmental organic pollutants known to have detrimental health effects. Using a mouse model, we previously demonstrated that PCB126 exposure before and during pregnancy and throughout the perinatal period adversely affected offspring glucose tolerance and/or body composition profiles. The purpose of this study was to investigate the glucose tolerance and body composition of offspring born to dams exposed to PCB126 during the nursing period only. Female ICR mice were bred, and half of the dams were exposed to either vehicle (safflower oil) or 1 μmole PCB126 per kg of body weight via oral gavage on postnatal …


Macrophage-Derived Mlkl In Alcohol-Associated Liver Disease: Regulation Of Phagocytosis, Xiaoqin Wu, Xiude Fan, Megan R Mcmullen, Tatsunori Miyata, Adam Kim, Vai Pathak, Jianguo Wu, Le Z Day, Josiah E Hardesty, Nicole Welch, Jaividhya Dasarathy, Daniela S Allende, Arthur J Mccullough, Jon M Jacobs, Daniel M Rotroff, Srinivasan Dasarathy, Laura E Nagy Mar 2023

Macrophage-Derived Mlkl In Alcohol-Associated Liver Disease: Regulation Of Phagocytosis, Xiaoqin Wu, Xiude Fan, Megan R Mcmullen, Tatsunori Miyata, Adam Kim, Vai Pathak, Jianguo Wu, Le Z Day, Josiah E Hardesty, Nicole Welch, Jaividhya Dasarathy, Daniela S Allende, Arthur J Mccullough, Jon M Jacobs, Daniel M Rotroff, Srinivasan Dasarathy, Laura E Nagy

Faculty, Staff and Student Publications

BACKGROUND AND AIMS: Mixed lineage kinase domain-like pseudokinase (MLKL), a key terminal effector of necroptosis, also plays a role in intracellular vesicle trafficking that is critical for regulating liver inflammation and injury in alcohol-associated liver disease (ALD). Although receptor interacting protein kinase 3 (Rip3)-/- mice are completely protected from ethanol-induced liver injury, Mlkl-/- mice are only partially protected. Therefore, we hypothesized that cell-specific functions of MLKL may contribute to ethanol-induced injury.

APPROACH AND RESULTS: Bone marrow transplants between Mlkl-/- mice and littermates were conducted to distinguish the role of myeloid versus nonmyeloid Mlkl in the Gao-binge model of ALD. Ethanol-induced …


A Potent And Broad Neutralization Of Sars-Cov-2 Variants Of Concern By Darpins, Vikas Chonira, Young D Kwon, Jason Gorman, James Brett Case, Zhiqiang Ku, Rudo Simeon, Ryan G Casner, Darcy R Harris, Adam S Olia, Tyler Stephens, Lawrence Shapiro, Michael F Bender, Hannah Boyd, I-Ting Teng, Yaroslav Tsybovsky, Florian Krammer, Ningyan Zhang, Michael S Diamond, Peter D Kwong, Zhiqiang An, Zhilei Chen Mar 2023

A Potent And Broad Neutralization Of Sars-Cov-2 Variants Of Concern By Darpins, Vikas Chonira, Young D Kwon, Jason Gorman, James Brett Case, Zhiqiang Ku, Rudo Simeon, Ryan G Casner, Darcy R Harris, Adam S Olia, Tyler Stephens, Lawrence Shapiro, Michael F Bender, Hannah Boyd, I-Ting Teng, Yaroslav Tsybovsky, Florian Krammer, Ningyan Zhang, Michael S Diamond, Peter D Kwong, Zhiqiang An, Zhilei Chen

Faculty, Staff and Student Publications

We report the engineering and selection of two synthetic proteins-FSR16m and FSR22-for the possible treatment of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) infection. FSR16m and FSR22 are trimeric proteins composed of DARPin SR16m or SR22 fused with a T4 foldon. Despite selection by a spike protein from a now historical SARS-CoV-2 strain, FSR16m and FSR22 exhibit broad-spectrum neutralization of SARS-CoV-2 strains, inhibiting authentic B.1.351, B.1.617.2 and BA.1.1 viruses, with respective IC


Endotrophin Neutralization Through Targeted Antibody Treatment Protects From Renal Fibrosis In A Podocyte Ablation Model, Yu A An, Wei Xiong, Shiuhwei Chen, Dawei Bu, Joseph M Rutkowski, Joel P Berger, Christine M Kusminski, Ningyan Zhang, Zhiqiang An, Philipp E Scherer Mar 2023

Endotrophin Neutralization Through Targeted Antibody Treatment Protects From Renal Fibrosis In A Podocyte Ablation Model, Yu A An, Wei Xiong, Shiuhwei Chen, Dawei Bu, Joseph M Rutkowski, Joel P Berger, Christine M Kusminski, Ningyan Zhang, Zhiqiang An, Philipp E Scherer

Faculty, Staff and Student Publications

OBJECTIVE: Renal fibrosis is a hallmark for chronic kidney disease (CKD), and often leads to end stage renal disease (ESRD). However, limited interventions are available clinically to ameliorate or reverse renal fibrosis.

METHODS: Herein, we evaluated whether blockade of endotrophin through neutralizing antibodies protects from renal fibrosis in the podocyte insult model (the "POD-ATTAC" mouse). We determined the therapeutic effects of endotrophin targeted antibody through assessing renal function, renal inflammation and fibrosis at histological and transcriptional levels, and podocyte regeneration.

RESULTS: We demonstrated that neutralizing endotrophin antibody treatment significantly ameliorates renal fibrosis at the transcriptional, morphological, and functional levels. In …


New Mouse Models With Hypomorphic Sumf1 Variants Mimic Attenuated Forms Of Multiple Sulfatase Deficiency, Nicolina Cristina Sorrentino, Maximiliano Presa, Sergio Attanasio, Vincenzo Cacace, Martina Sofia, Aamir Zuberi, Jennifer Ryan, Somdatta Ray, Igor Petkovic, Karthikeyan Radhakrishnan, Lars Schlotawa, Andrea Ballabio, Cathleen Lutz, Nicola Brunetti-Pierri Mar 2023

New Mouse Models With Hypomorphic Sumf1 Variants Mimic Attenuated Forms Of Multiple Sulfatase Deficiency, Nicolina Cristina Sorrentino, Maximiliano Presa, Sergio Attanasio, Vincenzo Cacace, Martina Sofia, Aamir Zuberi, Jennifer Ryan, Somdatta Ray, Igor Petkovic, Karthikeyan Radhakrishnan, Lars Schlotawa, Andrea Ballabio, Cathleen Lutz, Nicola Brunetti-Pierri

Duncan NRI Faculty and Staff Publications

Multiple sulfatase deficiency (MSD) is an ultrarare lysosomal storage disorder due to deficiency of all known sulfatases. MSD is caused by mutations in the Sulfatase Modifying Factor 1 (SUMF1) gene encoding the enzyme responsible for the post-translational modification and activation of all sulfatases. Most MSD patients carry hypomorph SUMF1 variants resulting in variable degrees of residual sulfatase activities. In contrast, Sumf1 null mice with complete deficiency in all sulfatase enzyme activities, have very short lifespan with significant pre-wean lethality, owing to a challenging preclinical model. To overcome this limitation, we genetically engineered and characterized in mice two commonly …


Highly Synchronized Cortical Circuit Dynamics Mediate Spontaneous Pain In Mice, Weihua Ding, Lukas Fischer, Qian Chen, Ziyi Li, Liuyue Yang, Zerong You, Kun Hu, Xinbo Wu, Xue Zhou, Wei Chao, Peter Hu, Tewodros Mulugeta Dagnew, Daniel M Dubreuil, Shiyu Wang, Suyun Xia, Caroline Bao, Shengmei Zhu, Lucy Chen, Changning Wang, Brian Wainger, Peng Jin, Jianren Mao, Guoping Feng, Mark T Harnett, Shiqian Shen Mar 2023

Highly Synchronized Cortical Circuit Dynamics Mediate Spontaneous Pain In Mice, Weihua Ding, Lukas Fischer, Qian Chen, Ziyi Li, Liuyue Yang, Zerong You, Kun Hu, Xinbo Wu, Xue Zhou, Wei Chao, Peter Hu, Tewodros Mulugeta Dagnew, Daniel M Dubreuil, Shiyu Wang, Suyun Xia, Caroline Bao, Shengmei Zhu, Lucy Chen, Changning Wang, Brian Wainger, Peng Jin, Jianren Mao, Guoping Feng, Mark T Harnett, Shiqian Shen

Faculty, Staff and Student Publications

Cortical neural dynamics mediate information processing for the cerebral cortex, which is implicated in fundamental biological processes such as vision and olfaction, in addition to neurological and psychiatric diseases. Spontaneous pain is a key feature of human neuropathic pain. Whether spontaneous pain pushes the cortical network into an aberrant state and, if so, whether it can be brought back to a "normal" operating range to ameliorate pain are unknown. Using a clinically relevant mouse model of neuropathic pain with spontaneous pain-like behavior, we report that orofacial spontaneous pain activated a specific area within the primary somatosensory cortex (S1), displaying synchronized …


High Pulse Pressure Impairs Cerebral Artery Endothelial Function In Young, But Not Old, Mice, Nick R Winder, Emily H Reeve, Elise K Kronquist, Aleena Khurana, Byron Lee, Thuan Nguyen, Grant D Henson, Ashley E Walker Mar 2023

High Pulse Pressure Impairs Cerebral Artery Endothelial Function In Young, But Not Old, Mice, Nick R Winder, Emily H Reeve, Elise K Kronquist, Aleena Khurana, Byron Lee, Thuan Nguyen, Grant D Henson, Ashley E Walker

Faculty, Staff and Student Publications

One of the hallmarks of vascular aging is increased pulse pressure. This elevated pulse pressure is associated with deleterious effects on cerebral vascular function; however, it is unknown if age modulates the susceptibility to high pulse pressure. To examine the effects of age on the cerebral artery response to pulse pressure, we studied isolated cerebral arteries collected from young (6.1 ± 0.2 mo) and old (26.7 ± 0.5 mo) male C57BL/6 mice. Isolated cerebral arteries were exposed ex vivo to static pressure, low pulse pressure (25 mmHg), and high pulse pressure (50 mmHg). In cerebral arteries from young mice, endothelium-dependent …


Linoleic Acid Improves Piezo2 Dysfunction In A Mouse Model Of Angelman Syndrome, Luis O Romero, Rebeca Caires, A Kaitlyn Victor, Juanma Ramirez, Francisco J Sierra-Valdez, Patrick Walsh, Vincent Truong, Jungsoo Lee, Ugo Mayor, Lawrence T Reiter, Valeria Vásquez, Julio F Cordero-Morales Mar 2023

Linoleic Acid Improves Piezo2 Dysfunction In A Mouse Model Of Angelman Syndrome, Luis O Romero, Rebeca Caires, A Kaitlyn Victor, Juanma Ramirez, Francisco J Sierra-Valdez, Patrick Walsh, Vincent Truong, Jungsoo Lee, Ugo Mayor, Lawrence T Reiter, Valeria Vásquez, Julio F Cordero-Morales

Faculty, Staff and Student Publications

Angelman syndrome (AS) is a neurogenetic disorder characterized by intellectual disability and atypical behaviors. AS results from loss of expression of the E3 ubiquitin-protein ligase UBE3A from the maternal allele in neurons. Individuals with AS display impaired coordination, poor balance, and gait ataxia. PIEZO2 is a mechanosensitive ion channel essential for coordination and balance. Here, we report that PIEZO2 activity is reduced in Ube3a deficient male and female mouse sensory neurons, a human Merkel cell carcinoma cell line and female human iPSC-derived sensory neurons with UBE3A knock-down, and de-identified stem cell-derived neurons from individuals with AS. We find that loss …


The Microbiome And Its Impact On Allogeneic Hematopoietic Cell Transplantation, Florent Malard, Robert R Jenq Mar 2023

The Microbiome And Its Impact On Allogeneic Hematopoietic Cell Transplantation, Florent Malard, Robert R Jenq

Faculty, Staff and Student Publications

Allogeneic hematopoietic cell transplantation (alloHCT) is a standard curative therapy for a variety of benign and malignant hematological diseases. Previously, patients who underwent alloHCT were at high risk for complications with potentially life-threatening toxicities, including a variety of opportunistic infections as well as acute and chronic manifestations of graft-versus-host disease (GVHD), where the transplanted immune system can produce inflammatory damage to the patient. With recent advances, including newer conditioning regimens, advances in viral and fungal infection prophylaxis, and novel GVHD prophylactic and treatment strategies, improvements in clinical outcomes have steadily improved. One modality with great potential that has yet to …


Dysregulated Amino Acid Sensing Drives Colorectal Cancer Growth And Metabolic Reprogramming Leading To Chemoresistance, Sumeet Solanki, Katherine Sanchez, Varun Ponnusamy, Vasudha Kota, Hannah N Bell, Chun-Seok Cho, Allison H Kowalsky, Michael Green, Jun Hee Lee, Yatrik M Shah Mar 2023

Dysregulated Amino Acid Sensing Drives Colorectal Cancer Growth And Metabolic Reprogramming Leading To Chemoresistance, Sumeet Solanki, Katherine Sanchez, Varun Ponnusamy, Vasudha Kota, Hannah N Bell, Chun-Seok Cho, Allison H Kowalsky, Michael Green, Jun Hee Lee, Yatrik M Shah

Faculty, Staff and Student Publications

BACKGROUND & AIMS: Colorectal cancer (CRC) is a devastating disease that is highly modulated by dietary nutrients. Mechanistic target of rapamycin complex 1 (mTORC1) contributes to tumor growth and limits therapy responses. Growth factor signaling is a major mechanism of mTORC1 activation. However, compensatory pathways exist to sustain mTORC1 activity after therapies that target oncogenic growth factor signaling. Amino acids potently activate mTORC1 via amino acid-sensing GTPase activity towards Rags (GATOR). The role of amino acid-sensing pathways in CRC is unclear.

METHODS: Human colon cancer cell lines, preclinical intestinal epithelial-specific GATOR1 and GATOR2 knockout mice subjected to colitis-induced or sporadic …


Long-Chain Polyunsaturated Lipids Associated With Responsiveness To Anti-Pd-1 Therapy Are Colocalized With Immune Infiltrates In The Tumor Microenvironment, Mary E King, Robert Yuan, Jeremy Chen, Komal Pradhan, Isabel Sariol, Shirley Li, Ashish Chakraborty, Oscar Ekpenyong, Jennifer H Yearley, Janica C Wong, Luis Zúñiga, Daniela Tomazela, Maribel Beaumont, Jin-Hwan Han, Livia S Eberlin Mar 2023

Long-Chain Polyunsaturated Lipids Associated With Responsiveness To Anti-Pd-1 Therapy Are Colocalized With Immune Infiltrates In The Tumor Microenvironment, Mary E King, Robert Yuan, Jeremy Chen, Komal Pradhan, Isabel Sariol, Shirley Li, Ashish Chakraborty, Oscar Ekpenyong, Jennifer H Yearley, Janica C Wong, Luis Zúñiga, Daniela Tomazela, Maribel Beaumont, Jin-Hwan Han, Livia S Eberlin

Faculty, Staff and Students Publications

The programmed cell death protein-1 (PD-1) is highly expressed on the surface of antigen-specific exhausted T cells and, upon interaction with its ligand PD-L1, can result in inhibition of the immune response. Anti-PD-1 treatment has been shown to extend survival and result in durable responses in several cancers, yet only a subset of patients benefit from this therapy. Despite the implication of metabolic alteration following cancer immunotherapy, mechanistic associations between antitumor responses and metabolic changes remain unclear. Here, we used desorption electrospray ionization mass spectrometry imaging to examine the lipid profiles of tumor tissue from three syngeneic murine models with …


Ectopic Lymphoid Structures In The Aged Lacrimal Glands, Jeremias G Galletti, Kaitlin K Scholand, Claudia M Trujillo-Vargas, Zhiyuan Yu, Olivier Mauduit, Vanessa Delcroix, Helen P Makarenkova, Cintia S De Paiva Mar 2023

Ectopic Lymphoid Structures In The Aged Lacrimal Glands, Jeremias G Galletti, Kaitlin K Scholand, Claudia M Trujillo-Vargas, Zhiyuan Yu, Olivier Mauduit, Vanessa Delcroix, Helen P Makarenkova, Cintia S De Paiva

Faculty, Staff and Students Publications

Aging is a complex biological process in which many organs are pathologically affected. We previously reported that aged C57BL/6J had increased lacrimal gland (LG) lymphoid infiltrates that suggest ectopic lymphoid structures. However, these ectopic lymphoid structures have not been fully investigated. Using C57BL/6J mice of different ages, we analyzed the transcriptome of aged murine LGs and characterized the B and T cell populations. Age-related changes in the LG include increased differentially expressed genes associated with B and T cell activation, germinal center formation, and infiltration by marginal zone-like B cells. We also identified an age-related increase in B1


Tubular-Specific Expression Of Hiv Protein Vpr Leads To Severe Tubulointerstitial Damage Accompanied By Progressive Fibrosis And Cystic Development, Yuqiang Chen, Ya Chen, Jia Fu, Zeguo Sun, Huilin Li, Wenzhen Xiao, Jing E, Benjamin Y Lo, Niansong Wang, Weijia Zhang, Mary E Klotman, Paul E Klotman, Jeffrey B Kopp, Vivette D D'Agati, John Cijiang He, Kyung Lee Mar 2023

Tubular-Specific Expression Of Hiv Protein Vpr Leads To Severe Tubulointerstitial Damage Accompanied By Progressive Fibrosis And Cystic Development, Yuqiang Chen, Ya Chen, Jia Fu, Zeguo Sun, Huilin Li, Wenzhen Xiao, Jing E, Benjamin Y Lo, Niansong Wang, Weijia Zhang, Mary E Klotman, Paul E Klotman, Jeffrey B Kopp, Vivette D D'Agati, John Cijiang He, Kyung Lee

Faculty, Staff and Students Publications

Chronic kidney disease (CKD) is a common cause of morbidity in human immunodeficiency virus (HIV)-positive individuals. HIV infection leads to a wide spectrum of kidney cell damage, including tubular epithelial cell (TEC) injury. Among the HIV-1 proteins, the pathologic effects of viral protein R (Vpr) are well established and include DNA damage response, cell cycle arrest, and cell death. Several in vitro studies have unraveled the molecular pathways driving the cytopathic effects of Vpr in tubular epithelial cells. However, the in vivo effects of Vpr on tubular injury and CKD pathogenesis have not been thoroughly investigated. Here, we use a …


Apoptosis Of Hematopoietic Stem Cells Contributes To Bone Marrow Suppression Following Chimeric Antigen Receptor T Cell Therapy, Jay A Read, Rayne H Rouce, Feiyan Mo, Maksim Mamonkin, Katherine Y King Mar 2023

Apoptosis Of Hematopoietic Stem Cells Contributes To Bone Marrow Suppression Following Chimeric Antigen Receptor T Cell Therapy, Jay A Read, Rayne H Rouce, Feiyan Mo, Maksim Mamonkin, Katherine Y King

Faculty, Staff and Students Publications

Background: CAR-T therapy represents a revolutionary treatment for patients with relapsed/refractory hematologic malignancies. However, its use can result in significant toxicities, including cytokine release syndrome (CRS), a potentially life-threatening clinical syndrome resulting from release of pro-inflammatory cytokines upon T cell activation. In addition, patients who develop CRS often experience prolonged cytopenias and those with the most severe CRS also have the greatest delay in full marrow recovery. While an association between CRS and delayed bone marrow recovery has been established, the precise mechanism underlying this phenomenon remains unknown.

Objective: To test our hypothesis that delayed bone marrow recovery following CAR-T …


Targeted Deletion Of Fgf9 In Tendon Disrupts Mineralization Of The Developing Enthesis, Elahe Ganji, Connor Leek, William Duncan, Debabrata Patra, David M Ornitz, Megan L Killian Mar 2023

Targeted Deletion Of Fgf9 In Tendon Disrupts Mineralization Of The Developing Enthesis, Elahe Ganji, Connor Leek, William Duncan, Debabrata Patra, David M Ornitz, Megan L Killian

2020-Current year OA Pubs

The enthesis is a transitional tissue between tendon and bone that matures postnatally. The development and maturation of the enthesis involve cellular processes likened to an arrested growth plate. In this study, we explored the role of fibroblast growth factor 9 (Fgf9), a known regulator of chondrogenesis and vascularization during bone development, on the structure and function of the postnatal enthesis. First, we confirmed spatial expression of Fgf9 in the tendon and enthesis using in situ hybridization. We then used Cre-lox recombinase to conditionally knockout Fgf9 in mouse tendon and enthesis (Scx-Cre) and characterized enthesis morphology as well as mechanical …


A New Mouse Model Of Elastin Haploinsufficiency Highlights The Importance Of Elastin To Vascular Development And Blood Pressure Regulation, Bridget M Brengle, Michelle Lin, Robyn A Roth, Kara D Jones, Jessica E Wagenseil, Robert P Mecham, Carmen M Halabi Mar 2023

A New Mouse Model Of Elastin Haploinsufficiency Highlights The Importance Of Elastin To Vascular Development And Blood Pressure Regulation, Bridget M Brengle, Michelle Lin, Robyn A Roth, Kara D Jones, Jessica E Wagenseil, Robert P Mecham, Carmen M Halabi

2020-Current year OA Pubs

Supravalvular aortic stenosis (SVAS) is an autosomal dominant disease resulting from elastin (ELN) haploinsufficiency. Individuals with SVAS typically develop a thickened arterial media with an increased number of elastic lamellae and smooth muscle cell (SMC) layers and stenosis superior to the aortic valve. A mouse model of SVAS (Eln


Resolution Of Hepatic Fibrosis After Zfn-Mediated Gene Editing In The Piz Mouse Model Of Human Α1-Antitrypsin Deficiency, Yanfeng Li, Chandan Guha, Patrik Asp, Xia Wang, Tatyana L. Tchaikovskya, Kenneth Kim, Matthew Mendel, Gregory J. Cost, David H. Perlmutter, Namita Roy-Chowdhury, Ira J. Fox, Anthony Conway, Jayanta Roy-Chowdhury Mar 2023

Resolution Of Hepatic Fibrosis After Zfn-Mediated Gene Editing In The Piz Mouse Model Of Human Α1-Antitrypsin Deficiency, Yanfeng Li, Chandan Guha, Patrik Asp, Xia Wang, Tatyana L. Tchaikovskya, Kenneth Kim, Matthew Mendel, Gregory J. Cost, David H. Perlmutter, Namita Roy-Chowdhury, Ira J. Fox, Anthony Conway, Jayanta Roy-Chowdhury

2020-Current year OA Pubs

BACKGROUND: α1-antitrypsin deficiency is most commonly caused by a mutation in exon-7 of SERPINA1 (SA1-ATZ), resulting in hepatocellular accumulation of a misfolded variant (ATZ). Human SA1-ATZ-transgenic (PiZ) mice exhibit hepatocellular ATZ accumulation and liver fibrosis. We hypothesized that disrupting the SA1-ATZ transgene in PiZ mice by in vivo genome editing would confer a proliferative advantage to the genome-edited hepatocytes, enabling them to repopulate the liver.

METHODS: To create a targeted DNA break in exon-7 of the SA1-ATZ transgene, we generated 2 recombinant adeno-associated viruses (rAAV) expressing a zinc-finger nuclease pair (rAAV-ZFN), and another rAAV for gene correction by targeted insertion …


Aging And Obesity Prime The Methylome And Transcriptome Of Adipose Stem Cells For Disease And Dysfunction, Shaojun Xie, Sulbha Choudhari, Chia-Lung Wu, Karen Abramson, David Corcoran, Simon G Gregory, Jyothi Thimmapuram, Farshid Guilak, Dianne Little Mar 2023

Aging And Obesity Prime The Methylome And Transcriptome Of Adipose Stem Cells For Disease And Dysfunction, Shaojun Xie, Sulbha Choudhari, Chia-Lung Wu, Karen Abramson, David Corcoran, Simon G Gregory, Jyothi Thimmapuram, Farshid Guilak, Dianne Little

2020-Current year OA Pubs

The epigenome of stem cells occupies a critical interface between genes and environment, serving to regulate expression through modification by intrinsic and extrinsic factors. We hypothesized that aging and obesity, which represent major risk factors for a variety of diseases, synergistically modify the epigenome of adult adipose stem cells (ASCs). Using integrated RNA- and targeted bisulfite-sequencing in murine ASCs from lean and obese mice at 5- and 12-months of age, we identified global DNA hypomethylation with either aging or obesity, and a synergistic effect of aging combined with obesity. The transcriptome of ASCs in lean mice was relatively stable to …


Cnih3 Deletion Dysregulates Dorsal Hippocampal Transcription Across The Estrous Cycle, Bernard Mulvey, Hannah E. Frye, Tania Lintz, Stuart Fass, Eric Tycksen, Elliot C. Nelson, Jose A. Morón, Joseph D. Dougherty Mar 2023

Cnih3 Deletion Dysregulates Dorsal Hippocampal Transcription Across The Estrous Cycle, Bernard Mulvey, Hannah E. Frye, Tania Lintz, Stuart Fass, Eric Tycksen, Elliot C. Nelson, Jose A. Morón, Joseph D. Dougherty

2020-Current year OA Pubs

In females, the hippocampus, a critical brain region for coordination of learning, memory, and behavior, displays altered physiology and behavioral output across the estrous or menstrual cycle. However, the molecular effectors and cell types underlying these observed cyclic changes have only been partially characterized to date. Recently, profiling of mice null for the AMPA receptor trafficking gene


Jaml Immunotherapy Targets Recently Activated Tumor-Infiltrating Cd8+ T Cells, Simon Eschweiler, Alice Wang, Ciro Ramírez-Suástegui, Adrian Von Witzleben, Yingcong Li, Serena J Chee, Hayley Simon, Monalisa Mondal, Matthew Ellis, Gareth J Thomas, Vivek Chandra, Christian H Ottensmeier, Pandurangan Vijayanand Feb 2023

Jaml Immunotherapy Targets Recently Activated Tumor-Infiltrating Cd8+ T Cells, Simon Eschweiler, Alice Wang, Ciro Ramírez-Suástegui, Adrian Von Witzleben, Yingcong Li, Serena J Chee, Hayley Simon, Monalisa Mondal, Matthew Ellis, Gareth J Thomas, Vivek Chandra, Christian H Ottensmeier, Pandurangan Vijayanand

Faculty, Staff and Student Publications

Junctional adhesion molecule-like protein (JAML) serves as a co-stimulatory molecule in γδ T cells. While it has recently been described as a cancer immunotherapy target in mice, its potential to cause toxicity, specific mode of action with regard to its cellular targets, and whether it can be targeted in humans remain unknown. Here, we show that JAML is induced by T cell receptor engagement, reveal that this induction is linked to cis-regulatory interactions between the CD3D and JAML gene loci. When compared with other immunotherapy targets plagued by low target specificity and end-organ toxicity, we find JAML to be mostly …


Single Cell Preparations Of Mycobacterium Tuberculosis Damage The Mycobacterial Envelope And Disrupt Macrophage Interactions, Ekansh Mittal, Andrew T Roth, Anushree Seth, Srikanth Singamaneni, Wandy Beatty, Jennifer A Philips Feb 2023

Single Cell Preparations Of Mycobacterium Tuberculosis Damage The Mycobacterial Envelope And Disrupt Macrophage Interactions, Ekansh Mittal, Andrew T Roth, Anushree Seth, Srikanth Singamaneni, Wandy Beatty, Jennifer A Philips

2020-Current year OA Pubs

For decades, investigators have studied the interaction of


The Er Protein Translocation Channel Subunit Sbh1 Controls Virulence Of Cryptococcus Neoformans, Felipe H. Santiago-Tirado, Thomas Hurtaux, Jennifer Geddes-Mcalister, Duy Nguyen, Volkhard Helms, Tamara L Doering, Karin Römisch Feb 2023

The Er Protein Translocation Channel Subunit Sbh1 Controls Virulence Of Cryptococcus Neoformans, Felipe H. Santiago-Tirado, Thomas Hurtaux, Jennifer Geddes-Mcalister, Duy Nguyen, Volkhard Helms, Tamara L Doering, Karin Römisch

2020-Current year OA Pubs

The fungal pathogen Cryptococcus neoformans is distinguished by a cell-wall-anchored polysaccharide capsule that is critical for virulence. Biogenesis of both cell wall and capsule relies on the secretory pathway. Protein secretion begins with polypeptide translocation across the endoplasmic reticulum (ER) membrane through a highly conserved channel formed by three proteins: Sec61, Sbh1, and Sss1. Sbh1, the most divergent, contains multiple phosphorylation sites, which may allow it to regulate entry into the secretory pathway in a species- and protein-specific manner. Absence of


Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi Feb 2023

Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi

Faculty, Staff and Students Publications

Loss- and gain-of-function of MeCP2 causes Rett syndrome (RTT) and MECP2 duplication syndrome (MDS), respectively. MeCP2 binds methyl-cytosines to finely tune gene expression in the brain, but identifying genes robustly regulated by MeCP2 has been difficult. By integrating multiple transcriptomics datasets, we revealed that MeCP2 finely regulates growth differentiation factor 11 (Gdf11). Gdf11 is down-regulated in RTT mouse models and, conversely, up-regulated in MDS mouse models. Strikingly, genetically normalizing Gdf11 dosage levels improved several behavioral deficits in a mouse model of MDS. Next, we discovered that losing one copy of Gdf11 alone was sufficient to cause multiple neurobehavioral …


Trpv1-Mediated Sonogenetic Neuromodulation Of Motor Cortex In Freely Moving Mice, Kevin Xu, Yaoheng Yang, Zhongtao Hu, Yimei Yue, Yan Gong, Jianmin Cui, Joseph P Culver, Michael R Bruchas, Hong Chen Feb 2023

Trpv1-Mediated Sonogenetic Neuromodulation Of Motor Cortex In Freely Moving Mice, Kevin Xu, Yaoheng Yang, Zhongtao Hu, Yimei Yue, Yan Gong, Jianmin Cui, Joseph P Culver, Michael R Bruchas, Hong Chen

2020-Current year OA Pubs

No abstract provided.


Orthodenticle Homeobox 2 Is Transported To Lysosomes By Nuclear Budding Vesicles, Jun Woo Park, Eun Jung Lee, Eunyoung Moon, Hong-Lim Kim, In-Beom Kim, Didier Hodzic, Namsuk Kim, Hee-Seok Kweon, Jin Woo Kim Feb 2023

Orthodenticle Homeobox 2 Is Transported To Lysosomes By Nuclear Budding Vesicles, Jun Woo Park, Eun Jung Lee, Eunyoung Moon, Hong-Lim Kim, In-Beom Kim, Didier Hodzic, Namsuk Kim, Hee-Seok Kweon, Jin Woo Kim

2020-Current year OA Pubs

Transcription factors (TFs) are transported from the cytoplasm to the nucleus and disappear from the nucleus after they regulate gene expression. Here, we discover an unconventional nuclear export of the TF, orthodenticle homeobox 2 (OTX2), in nuclear budding vesicles, which transport OTX2 to the lysosome. We further find that torsin1a (Tor1a) is responsible for scission of the inner nuclear vesicle, which captures OTX2 using the LINC complex. Consistent with this, in cells expressing an ATPase-inactive Tor1aΔE mutant and the LINC (linker of nucleoskeleton and cytoskeleton) breaker KASH2, OTX2 accumulated and formed aggregates in the nucleus. Consequently, in the mice expressing …