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Articles 181 - 210 of 6285
Full-Text Articles in Entire DC Network
Glycative Stress Disrupts The Mitochondrial-Lysosome Axis And Promotes Geroconversion In Aging Cardiomyocytes, Diana Bou-Teen, Simonas Valiuska, Elisabet Miro-Casas, Chiara Rubeo, Elena Bonzon-Kulichenko, Zuzana Nichtova, Celia Fernandez-Sanz, Javier Inserte, Antonio Rodriguez-Sinovas, Begoña Benito, Eduard Ródenas-Alesina, Jesús Vázquez, Ignacio Ferreira-González, Marisol Ruiz-Meana
Glycative Stress Disrupts The Mitochondrial-Lysosome Axis And Promotes Geroconversion In Aging Cardiomyocytes, Diana Bou-Teen, Simonas Valiuska, Elisabet Miro-Casas, Chiara Rubeo, Elena Bonzon-Kulichenko, Zuzana Nichtova, Celia Fernandez-Sanz, Javier Inserte, Antonio Rodriguez-Sinovas, Begoña Benito, Eduard Ródenas-Alesina, Jesús Vázquez, Ignacio Ferreira-González, Marisol Ruiz-Meana
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Aging is a major risk factor for heart failure, yet the molecular mechanisms linking cardiac aging to the inflammatory pathophysiology of heart failure remain elusive. Mitochondrial dysfunction and defective organelle quality control are emerging hallmarks of the aging heart, but their biochemical underpinnings are poorly defined. Using comprehensive glycomics, we found that cardiac mitochondria from physiologically aged mice (≥ 20 months) are the major intracellular reservoirs of advanced glycation end products (AGEs), derived primarily from the chemical attack of some α-oxoaldehydes on proteins. This was associated with mild mitochondrial dysfunction and structural remodeling. Lysosomes in aged hearts were enlarged, more …
Megakaryocyte And Platelet Thrombospondin-1 Regulates Matrix Remodeling By Stabilizing Basement Membrane Col6a1 In Lung Injury, Hernán F Peñaloza, Atish Gheware, Ananya Gupta, Donovan Watza, Anupam Kumari, Zeyu Xiong, Pooja Bhojraj, Jae-Sung Kim, Bo-Ram Jin, Kyunghee Choi, Matthew R Rosengart, Jaehyung Cho, Janet S Lee, Et Al.
Megakaryocyte And Platelet Thrombospondin-1 Regulates Matrix Remodeling By Stabilizing Basement Membrane Col6a1 In Lung Injury, Hernán F Peñaloza, Atish Gheware, Ananya Gupta, Donovan Watza, Anupam Kumari, Zeyu Xiong, Pooja Bhojraj, Jae-Sung Kim, Bo-Ram Jin, Kyunghee Choi, Matthew R Rosengart, Jaehyung Cho, Janet S Lee, Et Al.
2020-Current year OA Pubs
An early event after lung injury is extracellular matrix (ECM) remodeling and the formation of a provisional matrix. While megakaryocytes and platelets (Mgk/plt) play important roles in hemostasis, their impact on the matrix in lung injury is not fully understood. Using lung intravital microscopy, 3D large area scanning with multiphoton confocal hybrid imaging, and label-free quantitative proteomics, the matricellular protein thrombospondin-1 (TSP1) arising from Mgk/plt protects the lung from alveolar injury. Mgk/plt cell-specific Thbs1 knockout (cKO) mice show increased alveolar barrier disruption with exaggerated neutrophil-mediated injury. The cKO mice exhibit striking extracellular matrix re-organization with reduction in basement membrane matrix …
Mist: A Hierarchical Bayesian Framework For Detecting Differential Dna Methylation Dynamics In Single-Cell Data, Daoyu Duan, Wenjing Ma, Wen Tang, Hao Wu, Liangliang Zhang, Hao Feng
Mist: A Hierarchical Bayesian Framework For Detecting Differential Dna Methylation Dynamics In Single-Cell Data, Daoyu Duan, Wenjing Ma, Wen Tang, Hao Wu, Liangliang Zhang, Hao Feng
Faculty, Staff and Student Publications
Recent advancements in single-cell DNA methylation (scDNAm) sequencing technologies have enabled the profiling of epigenetic landscapes at unprecedented resolution, offering insights into cellular heterogeneity, differentiation and evolution. Trajectory inference, which orders cells along pseudotime, allows researchers to track genomics changes across continuous cell states and identify key loci exhibiting differential methylation. However, no methods currently exist to model methylation changes along pseudotime in scDNAm data. Here, we present a hierarchical Bayesian framework for scDNAm data analysis. Our method, named mist (methylation inference for single-cell along trajectory), models stage-specific biological variations, identifies genomic features with significant methylation changes along pseudotime, and …
Genetic Architecture Of The Murine Red Blood Cell Proteome Reveals Central Role Of Hemoglobin Beta Cysteine 93 In Maintaining Redox Balance., Gregory R Keele, Monika Dzieciatkowska, Ariel M Hay, Matthew Vincent, Callan O'Connor, Daniel Stephenson, Julie A Reisz, Travis Nemkov, Kirk C Hansen, Grier P Page, James C Zimring, Gary Churchill, Angelo D'Alessandro
Genetic Architecture Of The Murine Red Blood Cell Proteome Reveals Central Role Of Hemoglobin Beta Cysteine 93 In Maintaining Redox Balance., Gregory R Keele, Monika Dzieciatkowska, Ariel M Hay, Matthew Vincent, Callan O'Connor, Daniel Stephenson, Julie A Reisz, Travis Nemkov, Kirk C Hansen, Grier P Page, James C Zimring, Gary Churchill, Angelo D'Alessandro
Faculty Research 2026
Red blood cells (RBCs) transport oxygen but accumulate oxidative damage over time, reducing function in vivo and during storage, critical for transfusions. To explore the genetics of RBC resilience, we profiled proteins, metabolites, and lipids from fresh and stored RBCs from 350 genetically diverse mice. Our analysis identified over 6,000 quantitative trait loci (QTLs). Compared to other tissues, the prevalence of trans genetic effects over cis ones reflects the absence of de novo protein synthesis in anucleated RBCs. QTL hotspots at Hbb, Hba, Mon1a, and (storage-specific) Steap3 linked ferroptosis to hemolysis. Proteasome QTLs clustered at multiple loci, underscoring the importance …
Genetic Architecture Of The Murine Red Blood Cell Proteome Reveals Central Role Of Hemoglobin Beta Cysteine 93 In Maintaining Redox Balance., Gregory R Keele, Monika Dzieciatkowska, Ariel M Hay, Matthew Vincent, Callan O'Connor, Daniel Stephenson, Julie A Reisz, Travis Nemkov, Kirk C Hansen, Grier P Page, James C Zimring, Gary Churchill, Angelo D'Alessandro
Genetic Architecture Of The Murine Red Blood Cell Proteome Reveals Central Role Of Hemoglobin Beta Cysteine 93 In Maintaining Redox Balance., Gregory R Keele, Monika Dzieciatkowska, Ariel M Hay, Matthew Vincent, Callan O'Connor, Daniel Stephenson, Julie A Reisz, Travis Nemkov, Kirk C Hansen, Grier P Page, James C Zimring, Gary Churchill, Angelo D'Alessandro
Faculty Research 2026
Red blood cells (RBCs) transport oxygen but accumulate oxidative damage over time, reducing function in vivo and during storage, critical for transfusions. To explore the genetics of RBC resilience, we profiled proteins, metabolites, and lipids from fresh and stored RBCs from 350 genetically diverse mice. Our analysis identified over 6,000 quantitative trait loci (QTLs). Compared to other tissues, the prevalence of trans genetic effects over cis ones reflects the absence of de novo protein synthesis in anucleated RBCs. QTL hotspots at Hbb, Hba, Mon1a, and (storage-specific) Steap3 linked ferroptosis to hemolysis. Proteasome QTLs clustered at multiple loci, underscoring the importance …
Differential Contributions Of Clpx And Clpp To Pulmonary Virulence In Classical And Hypervirulent Klebsiella Pneumoniae, Nathan M Lin, Emily C Marino, Jordan M Schlotmann, David A Rosen
Differential Contributions Of Clpx And Clpp To Pulmonary Virulence In Classical And Hypervirulent Klebsiella Pneumoniae, Nathan M Lin, Emily C Marino, Jordan M Schlotmann, David A Rosen
2020-Current year OA Pubs
No abstract provided.
An Acetylation-Dependent Switch Underlies Host Disease Tolerance During Streptococcal Infection, Sumit Kumar Paudel, Sowmya Gannavaram, Michael G Caparon, Wei Xu
An Acetylation-Dependent Switch Underlies Host Disease Tolerance During Streptococcal Infection, Sumit Kumar Paudel, Sowmya Gannavaram, Michael G Caparon, Wei Xu
2020-Current year OA Pubs
Building on our finding that Streptococcus pyogenes pyruvate dehydrogenase (PDH) suppresses host disease tolerance (DT) via short-chain fatty acid (SCFA)-mediated modulation of host acetyl-CoA and IL-10 levels, we characterize the global transcriptomic and epigenetic mechanisms underlying this immunometabolic manipulation. Combining new histological and ultrastructural analyses with an in-depth re-analysis of single-cell and bulk RNA-seq datasets to more comprehensively characterize the DT response, we show that PDH deficiency is associated with broad immunologic rewiring, characterized by intracellular bacterial containment within phagocytes, expansion of pro-resolving myeloid cells, and altered cell-cell communication. Metabolic analysis of ΔPdh-infected tissues revealed a shift away from acetyl-CoA …
Modulating Alternative Splicing Of Mecp2 Is A Potential Therapeutic Strategy For Rett Syndrome, Harini P Tirumala, Li Wang, Yan Li, Sameer S Bajikar, Ashley G Anderson, Wei Wang, Alexander J Trostle, Mahla Zahabiyon, Aleksandar Bajic, Jean J Kim, Hu Chen, Zhandong Liu, Huda Y Zoghbi
Modulating Alternative Splicing Of Mecp2 Is A Potential Therapeutic Strategy For Rett Syndrome, Harini P Tirumala, Li Wang, Yan Li, Sameer S Bajikar, Ashley G Anderson, Wei Wang, Alexander J Trostle, Mahla Zahabiyon, Aleksandar Bajic, Jean J Kim, Hu Chen, Zhandong Liu, Huda Y Zoghbi
Faculty, Staff and Students Publications
Rett syndrome (RTT) is a neurological disorder caused by loss-of-function mutations in methyl CpG binding protein 2 (MECP2), a transcriptional regulator essential for maintenance of normal neuronal function. The current FDA-approved treatment for RTT, Trofinetide, mildly alleviates some symptoms. In contrast, re-introducing MeCP2 or increasing its amount through transgenesis in mouse RTT models improves most neurological phenotypes and enhances survival. Here, we devised a therapeutic strategy to moderately increase MeCP2 protein by modulating the alternative splicing of MECP2 to switch the less efficiently translated e2 to the more efficiently translated e1 isoform. We deleted Mecp2 exon 2 (unique …
Ifn Signaling Is Associated With Radiotherapy Response In Malignant Peripheral Nerve Sheath Tumors., Iowis Zhu, Julian Chien, Gabriel E Rech, Kanish Mirchia, Sixuan Pan, Kaeli Miller, Joanna Pak, Rosanna Wustrack, Varun Monga, Steve E Braunstein, Mark D Adams, Line Jacques, Melike Pekmezci, S John Liu, Harish N Vasudevan
Ifn Signaling Is Associated With Radiotherapy Response In Malignant Peripheral Nerve Sheath Tumors., Iowis Zhu, Julian Chien, Gabriel E Rech, Kanish Mirchia, Sixuan Pan, Kaeli Miller, Joanna Pak, Rosanna Wustrack, Varun Monga, Steve E Braunstein, Mark D Adams, Line Jacques, Melike Pekmezci, S John Liu, Harish N Vasudevan
Faculty Research 2026
Patients with malignant peripheral nerve sheath tumors (MPNSTs) have poor outcomes despite multimodal treatment with surgery, radiation, and systemic therapy. The responses to radiotherapy (RT) are mixed, and the biologic mechanisms underlying this heterogeneity in the radiation response of MPNSTs are not understood. Here, we combined bulk and single-cell transcriptomics, genome-wide CRISPR interference screens, and multiplatform molecular analysis across MPNST cells, mouse allograft models, and patients' samples to understand the mediators of the radiation response. Our data revealed that MPNSTs, but not benign plexiform neurofibromas, induced a type I IFN signature that functionally mediated the radiation response. Moreover, irradiation of …
Ifn Signaling Is Associated With Radiotherapy Response In Malignant Peripheral Nerve Sheath Tumors., Iowis Zhu, Julian Chien, Gabriel E Rech, Kanish Mirchia, Sixuan Pan, Kaeli Miller, Joanna Pak, Rosanna Wustrack, Varun Monga, Steve E Braunstein, Mark D Adams, Line Jacques, Melike Pekmezci, S John Liu, Harish N Vasudevan
Ifn Signaling Is Associated With Radiotherapy Response In Malignant Peripheral Nerve Sheath Tumors., Iowis Zhu, Julian Chien, Gabriel E Rech, Kanish Mirchia, Sixuan Pan, Kaeli Miller, Joanna Pak, Rosanna Wustrack, Varun Monga, Steve E Braunstein, Mark D Adams, Line Jacques, Melike Pekmezci, S John Liu, Harish N Vasudevan
Faculty Research 2026
Patients with malignant peripheral nerve sheath tumors (MPNSTs) have poor outcomes despite multimodal treatment with surgery, radiation, and systemic therapy. The responses to radiotherapy (RT) are mixed, and the biologic mechanisms underlying this heterogeneity in the radiation response of MPNSTs are not understood. Here, we combined bulk and single-cell transcriptomics, genome-wide CRISPR interference screens, and multiplatform molecular analysis across MPNST cells, mouse allograft models, and patients' samples to understand the mediators of the radiation response. Our data revealed that MPNSTs, but not benign plexiform neurofibromas, induced a type I IFN signature that functionally mediated the radiation response. Moreover, irradiation of …
Jax Animal Behavior System (Jabs), A Genetics-Informed, End-To-End Advanced Behavioral Phenotyping Platform For The Laboratory Mouse., Anshul Choudhary, Brian Q Geuther, Thomas J. Sproule, Glen L Beane, Vivek Kohar, Jarek Trapszo, Vivek Kumar
Jax Animal Behavior System (Jabs), A Genetics-Informed, End-To-End Advanced Behavioral Phenotyping Platform For The Laboratory Mouse., Anshul Choudhary, Brian Q Geuther, Thomas J. Sproule, Glen L Beane, Vivek Kohar, Jarek Trapszo, Vivek Kumar
Faculty Research 2026
Automated detection of complex animal behavior remains a challenge in neuroscience. Developments in computer vision have greatly advanced automated behavior detection and allow high-throughput preclinical and mechanistic studies. An integrated hardware and software solution is necessary to facilitate the adoption of these advances in the field of behavioral neurogenetics, particularly for non-computational laboratories. We have published a series of papers using an open field arena to annotate complex behaviors such as grooming, posture, and gait as well as higher-level constructs such as biological age and pain. Here, we present our integrated rodent phenotyping platform, JAX Animal Behavior System (JABS), to …
Jax Animal Behavior System (Jabs), A Genetics-Informed, End-To-End Advanced Behavioral Phenotyping Platform For The Laboratory Mouse., Anshul Choudhary, Brian Q Geuther, Thomas J. Sproule, Glen L Beane, Vivek Kohar, Jarek Trapszo, Vivek Kumar
Jax Animal Behavior System (Jabs), A Genetics-Informed, End-To-End Advanced Behavioral Phenotyping Platform For The Laboratory Mouse., Anshul Choudhary, Brian Q Geuther, Thomas J. Sproule, Glen L Beane, Vivek Kohar, Jarek Trapszo, Vivek Kumar
Faculty Research 2026
Automated detection of complex animal behavior remains a challenge in neuroscience. Developments in computer vision have greatly advanced automated behavior detection and allow high-throughput preclinical and mechanistic studies. An integrated hardware and software solution is necessary to facilitate the adoption of these advances in the field of behavioral neurogenetics, particularly for non-computational laboratories. We have published a series of papers using an open field arena to annotate complex behaviors such as grooming, posture, and gait as well as higher-level constructs such as biological age and pain. Here, we present our integrated rodent phenotyping platform, JAX Animal Behavior System (JABS), to …
Ectopic B Lymphocyte Follicles Exacerbate Ischemic Brain Damage Via Mif-Cd74/Cxcr4 And Interferon Signaling, Sheng Yang, Hang Zhang, Lu-Lu Xu, Luo-Qi Zhou, Yun-Hui Chu, Lian Chen, Xiao-Wei Pang, Lu-Yang Zhang, Li-Fang Zhu, Ming-Hao Dong, Ke Shang, Jun Xiao, Long-Jun Wu, Wei Wang, Dai-Shi Tian, Chuan Qin
Ectopic B Lymphocyte Follicles Exacerbate Ischemic Brain Damage Via Mif-Cd74/Cxcr4 And Interferon Signaling, Sheng Yang, Hang Zhang, Lu-Lu Xu, Luo-Qi Zhou, Yun-Hui Chu, Lian Chen, Xiao-Wei Pang, Lu-Yang Zhang, Li-Fang Zhu, Ming-Hao Dong, Ke Shang, Jun Xiao, Long-Jun Wu, Wei Wang, Dai-Shi Tian, Chuan Qin
Faculty, Staff and Student Publications
Neuroinflammation, encompassing both innate and adaptive immune responses, plays a crucial role in ischemic stroke. Although B lymphocytes are central to adaptive immunity, their contributions to ischemic stroke remain poorly understood. Here, we demonstrated that B lymphocytes accumulate in ischemic lesions, forming germinal center-like structures at the later stage after stroke, which mainly depended on in situ proliferation. This accumulation correlated with worsened neuroinflammation and ischemic injury, whereas B cell depletion reduced chronic brain damage during stroke. Mechanistically, microglia recruited B cells into ischemic lesions through MIF-CD74/CXCR4 signaling during the early phase of stroke, while IFN-related pathways in B cells …
Poly(Adp-Ribose) Glycohydrolase Enforces P21 Degradation Via Deparylation To Promote Gastric Cancer Progression, Yangchan Hu, Qimei Bao, Yixing Huang, Yan Wang, Xin Zhao, Junjun Nan, Yuxin Meng, Mingcong Deng, Yuancong Li, Zirui Zhuang, Hanyi He, Dan Zu, Yuke Zhong, Chunkai Zhang, Bing Wang, Ran Li, Yanhua He, Qihan Wang, Min Liu, John A Tainer, Yin Shi, Xiangdong Cheng, Ji Jing, Zu Ye
Poly(Adp-Ribose) Glycohydrolase Enforces P21 Degradation Via Deparylation To Promote Gastric Cancer Progression, Yangchan Hu, Qimei Bao, Yixing Huang, Yan Wang, Xin Zhao, Junjun Nan, Yuxin Meng, Mingcong Deng, Yuancong Li, Zirui Zhuang, Hanyi He, Dan Zu, Yuke Zhong, Chunkai Zhang, Bing Wang, Ran Li, Yanhua He, Qihan Wang, Min Liu, John A Tainer, Yin Shi, Xiangdong Cheng, Ji Jing, Zu Ye
Faculty, Staff and Student Publications
Dysregulation of cell cycle checkpoints is a cancer hallmark, with ubiquitination-controlled protein stability playing a pivotal role. Although p21, a key cyclin-dependent kinase inhibitor, is tightly regulated by ubiquitin-mediated degradation, the key upstream modulators of its ubiquitination remain incompletely defined. Here, we identify poly(ADP-ribose) glycohydrolase (PARG) as a regulator of p21 stability in gastric cancer (GC) cells. We show that PARG expression is markedly upregulated in GC tissues and correlates with poor patient prognosis. Functional assays revealed that genetic depletion of PARG triggers G2/M phase arrest and impairs GC cell proliferation. Mechanistically, we demonstrate that PARG loss enhances p21 PARylation, …
Mechanometabolism Instructs Hematopoietic Stem Cell Specification, Paulina D Horton, Alina Syed, Michelle Winkler, Abishek B Vaidya, Michael Rariden, Neha Arora, Yong Zhou, Michihiro Kobayashi, Momoko Yoshimoto, Hyun Jung Lee, Hyun-Eui Kim, John P Hagan, Catherine Denicourt, Travis I Moore, Pamela L Wenzel
Mechanometabolism Instructs Hematopoietic Stem Cell Specification, Paulina D Horton, Alina Syed, Michelle Winkler, Abishek B Vaidya, Michael Rariden, Neha Arora, Yong Zhou, Michihiro Kobayashi, Momoko Yoshimoto, Hyun Jung Lee, Hyun-Eui Kim, John P Hagan, Catherine Denicourt, Travis I Moore, Pamela L Wenzel
Faculty, Staff and Student Publications
Mechanical force generated by blood flow stimulates emergence of the first hematopoietic stem cells (HSCs) that populate the blood system. Force drives the transition of HSC precursors from an endothelial to hematopoietic identity, yet the molecular regulation of this fate switch remains poorly understood. We report that shear stress triggers adaptation in mitochondrial composition, ultrastructure, and function, which are essential for hematopoietic fate and engraftment potential. Shear stress remodels mitochondria in hemogenic endothelium by promoting mitochondrial gene transcription and protein synthesis. Laminar flow selectively initiates translation of 5' terminal polypyrimidine (5'TOP) motif-containing transcripts, which commonly encode ribosome and translation machinery. …
Activin A Secretion By Muscle-Repairing Macrophages Induces Heterotopic Ossification In Mice, Wenqiang Yin, Kazuo Okamoto, Asuka Terashima, Warunee Pluemsakunthai, Takehito Ono, Taku Ito-Kureha, Shizuo Akira, Yoshinobu Hashizume, Roland Baron, Satoshi Ueha, Kouji Matsushima, Martin M Matzuk, Yuji Mishina, Hiroshi Takayanagi
Activin A Secretion By Muscle-Repairing Macrophages Induces Heterotopic Ossification In Mice, Wenqiang Yin, Kazuo Okamoto, Asuka Terashima, Warunee Pluemsakunthai, Takehito Ono, Taku Ito-Kureha, Shizuo Akira, Yoshinobu Hashizume, Roland Baron, Satoshi Ueha, Kouji Matsushima, Martin M Matzuk, Yuji Mishina, Hiroshi Takayanagi
Faculty, Staff and Students Publications
The immune system is not only essential for host defense, but it is also involved in tissue maintenance and disease pathogenesis. Macrophages play a key role in tissue repair, fibrosis, and tumorigenesis, but the mechanisms underlying their multifunctionality have not been fully explored. Here, we identified Mrep (Ly6ChiCX3CR1loPDPN+CD9+) as a crucial subset of macrophages for muscle regeneration after muscle injury. Muscle regeneration required Mrep-derived activin A, which was produced via the TLR4/TIR domain-containing adapter-inducing interferon-β/TANK-binding kinase 1/interferon regulatory factor 3/7 signaling pathway in response to muscle injury. Mrep exerted pathological effects by secreting activin A in a model of genetically …
Meta-Analysis Of Genetic Mapping Studies In Mice Reveals Candidate Epilepsy Modifier Genes That Are Outside The Current Drug Development Landscape., Giovanna L Durante, Anna L. Tyler, Rod C Scott, Amanda E Hernan, J Matthew Mahoney
Meta-Analysis Of Genetic Mapping Studies In Mice Reveals Candidate Epilepsy Modifier Genes That Are Outside The Current Drug Development Landscape., Giovanna L Durante, Anna L. Tyler, Rod C Scott, Amanda E Hernan, J Matthew Mahoney
Faculty Research 2026
OBJECTIVE: Despite decades of development in anti-seizure medications, ~30% of individuals remain refractory to all treatments, and none of the existing therapies are disease modifying. Identifying targets outside the current preclinical paradigm is critically important. This study aimed to characterize the landscape of current epilepsy treatments at the level of gene interaction networks and identify novel genetic modifiers of epilepsy as potential novel therapeutic targets.
METHODS: We performed a functional network analysis to score genes based on their interactions with known epilepsy genes, and we integrated these functional scores with population genetics data and drug tractability information. In parallel, we …
Meta-Analysis Of Genetic Mapping Studies In Mice Reveals Candidate Epilepsy Modifier Genes That Are Outside The Current Drug Development Landscape., Giovanna L Durante, Anna L. Tyler, Rod C Scott, Amanda E Hernan, J Matthew Mahoney
Meta-Analysis Of Genetic Mapping Studies In Mice Reveals Candidate Epilepsy Modifier Genes That Are Outside The Current Drug Development Landscape., Giovanna L Durante, Anna L. Tyler, Rod C Scott, Amanda E Hernan, J Matthew Mahoney
Faculty Research 2026
OBJECTIVE: Despite decades of development in anti-seizure medications, ~30% of individuals remain refractory to all treatments, and none of the existing therapies are disease modifying. Identifying targets outside the current preclinical paradigm is critically important. This study aimed to characterize the landscape of current epilepsy treatments at the level of gene interaction networks and identify novel genetic modifiers of epilepsy as potential novel therapeutic targets.
METHODS: We performed a functional network analysis to score genes based on their interactions with known epilepsy genes, and we integrated these functional scores with population genetics data and drug tractability information. In parallel, we …
Cholecalciferol (Vitamin D3) Is An Agonist Of The Alzheimer's Disease-Associated Immune Receptor Trem2, Hunter B Dean, Ryan A Tuckey, Rory A Greer, Jessica A Greven, Shan-Zhong Yang, Daniel S Elston, Gunnar N Eastep, Yuwei Song, Thomas J Brett, Yuhua Song, Erik D Roberson
Cholecalciferol (Vitamin D3) Is An Agonist Of The Alzheimer's Disease-Associated Immune Receptor Trem2, Hunter B Dean, Ryan A Tuckey, Rory A Greer, Jessica A Greven, Shan-Zhong Yang, Daniel S Elston, Gunnar N Eastep, Yuwei Song, Thomas J Brett, Yuhua Song, Erik D Roberson
2020-Current year OA Pubs
Triggering Receptor Expressed on Myeloid Cells 2 (TREM2) is one of the strongest genetic risk factors for late-onset Alzheimer's disease (AD). Several TREM2 ligands are known, including charged lipids and AD-associated proteins like apolipoprotein E and amyloid-β, but the full range of endogenous ligands for TREM2 remains unknown. Here we combined virtual screening of the Human Metabolome Database with molecular dynamics simulations, binding free energy estimation, and biolayer interferometry to identify novel TREM2 ligands and map their binding sites. Cholecalciferol, the unmodified parent form of vitamin D3, emerged as a top candidate. Structural modeling indicated that cholecalciferol binds TREM2 at …
Astrocyte-Specific Deletion Of Lrrc8a Causes Neurological Dysfunction But Not Chronic White Matter Edema, Sven Kerst, Leoni Hoogterp, Marjolein Breur, Gemma M Van Rooijen-Van Leeuwen, Marianna Bugiani, Rajan Sah, Huibert D Mansvelder, Marjo S Van Der Knaap, Rogier Min
Astrocyte-Specific Deletion Of Lrrc8a Causes Neurological Dysfunction But Not Chronic White Matter Edema, Sven Kerst, Leoni Hoogterp, Marjolein Breur, Gemma M Van Rooijen-Van Leeuwen, Marianna Bugiani, Rajan Sah, Huibert D Mansvelder, Marjo S Van Der Knaap, Rogier Min
2020-Current year OA Pubs
Volume-regulated anion channels (VRACs) are central to cell volume homeostasis. They mediate swelling-induced efflux of chloride and organic osmolytes to drive regulatory volume decrease. In the brain, VRACs have been proposed to play a key role in astrocytic volume regulation. Genetic defects in astrocytic VRAC modulating proteins (MLC1, GlialCAM, Aquaporin-4, GPRC5B) cause the leukodystrophy Megalencephalic leukoencephalopathy with subcortical cysts (MLC), characterized by chronic white matter edema and myelin vacuolization. Disrupted VRAC activity in MLC-patient-derived lymphoblasts and primary astrocytes from MLC mice further supports a pathogenic link between defective VRAC activity and MLC. Here, we studied the physiological and pathological consequences …
Omni: A Modular Open-Source Framework For Interactive Multi-Omics Data Integration And Visualization., Grace Potter, Jacob A Beierle, Camron Bryant, Sadhna Phanse, Carl White, Andrew Emili, Indranil Paul
Omni: A Modular Open-Source Framework For Interactive Multi-Omics Data Integration And Visualization., Grace Potter, Jacob A Beierle, Camron Bryant, Sadhna Phanse, Carl White, Andrew Emili, Indranil Paul
Faculty Research 2026
Omics Notebook Interactive (OmNI) is an R-based, open-source, and modular framework engineered for streamlined multi-omics data inte- gration and analysis across diverse data types, incorporating interactive visualizations at each processing step. OmNI performs differential expression analysis utilizing customizable linear models, accommodating various covariates and complex experimental designs. For cross- omic layer integration, OmNI employs a modified S-score statistic, ensuring sensitive detection of differential features. The framework also integrates network and metabolomics data, offering detailed insights into regulatory mechanisms through comprehensive enrichment analy- sis using multiple pathway databases. Outputs include interactive HTML reports, CSV/TSV files, and Cytoscape-compatible objects. OmNI is readily …
Aging Reduces Motivation Through Decreased Bdnf Expression In The Ventral Tegmental Area, Hanyue Cecilia Lei, Kyle E Parker, Chao-Cheng Kuo, Carla M Yuede, Jordan G Mccall, Shin-Ichiro Imai
Aging Reduces Motivation Through Decreased Bdnf Expression In The Ventral Tegmental Area, Hanyue Cecilia Lei, Kyle E Parker, Chao-Cheng Kuo, Carla M Yuede, Jordan G Mccall, Shin-Ichiro Imai
2020-Current year OA Pubs
Age-associated reduced motivation is a hallmark of neuropsychiatric disorders in the elderly. In our rapidly aging societies, it is critical to keep motivation levels high enough to promote healthspan and lifespan. However, how motivation is reduced during aging remains unknown. Here, we used multiple mouse models to evaluate motivation and related affective states in young and old mice. We also compared the effect of social isolation, a common stressor in aged populations, to those of aging. We found that both social isolation and aging decreased motivation in mice, but that Bdnf expression in the ventral tegmental area (VTA) was selectively …
Bach2 Regulates T Cell Lineage State To Enhance Car T Cell Function, Tien-Ching Chang, Amanda Heard, John Lattin, John M Warrington, Amanda Barrett, Jack H Landmann, Yangdon Tenzin, Vishaal Ganesh, Bryant Thompson, Sadia Afrin, Deepesh Kumar Gupta, Ju-Fang Chang, Julie Ritchey, Mehmet Emrah Selli, Yu-Sung Hsu, A J Federico, Avery Horn, Michael P Meers, John F Dipersio, Nathan Singh, Et Al.
Bach2 Regulates T Cell Lineage State To Enhance Car T Cell Function, Tien-Ching Chang, Amanda Heard, John Lattin, John M Warrington, Amanda Barrett, Jack H Landmann, Yangdon Tenzin, Vishaal Ganesh, Bryant Thompson, Sadia Afrin, Deepesh Kumar Gupta, Ju-Fang Chang, Julie Ritchey, Mehmet Emrah Selli, Yu-Sung Hsu, A J Federico, Avery Horn, Michael P Meers, John F Dipersio, Nathan Singh, Et Al.
2020-Current year OA Pubs
Nearly all chimeric antigen receptors (CARs) signal in the absence of antigen, referred to as 'tonic signaling'. Tonic signaling of CARs containing 41BB domains enhances T cell fitness and function, in contrast to the exhaustion driven by CD28-containing CARs. Here we show that 41BB induces BACH2, a transcriptional regulator that directs stem and memory programs. Overexpression of BACH2 successfully prevented exhaustion but locked CAR T cells in a quiescent state. We linked BACH2 to a degradation domain to tune BACH2, enabling us to prevent exhaustion while enabling potent effector function that broadly enhanced the long-term efficacy of CAR T cells …
Cdk4/6 Inhibition Mitigates Chemotherapy-Induced Expansion Of Tp53-Mutant Clonal Hematopoiesis, Irenaeus C C Chan, Giulia Petrone, J Scott Beeler, Duc Tran, Griffen Mustion, Catrina Fronick, Carlos Cruchaga, Kelly L Bolton, Et Al.
Cdk4/6 Inhibition Mitigates Chemotherapy-Induced Expansion Of Tp53-Mutant Clonal Hematopoiesis, Irenaeus C C Chan, Giulia Petrone, J Scott Beeler, Duc Tran, Griffen Mustion, Catrina Fronick, Carlos Cruchaga, Kelly L Bolton, Et Al.
2020-Current year OA Pubs
Therapy-related myeloid neoplasm (tMN) is a fatal consequence of exposure to cytotoxic therapy administered in the treatment of cancer. Individuals with pre-existing TP53 clonal hematopoiesis (CH) are at high risk of tMN, with avoidance of therapy being the only strategy to reduce tMN risk. Here, in four randomized clinical trials, we show that the CDK4/6 inhibitor trilaciclib, given in conjunction with a variety of chemotherapeutic regimens and across diverse populations of patients with cancer, mitigates chemotherapy-related expansion of CH clones with mutations in DNA damage response genes, including TP53. This finding was also observed in a syngeneic mouse model of …
Synovial Fibroblast Responses To Different Types Of Injury Resulting In Cartilage Repair Or Osteoarthritis, Fraser L Collins, Alexander J Knights, Tristan Maerz, Anke J Roelofs, Cosimo De Bari
Synovial Fibroblast Responses To Different Types Of Injury Resulting In Cartilage Repair Or Osteoarthritis, Fraser L Collins, Alexander J Knights, Tristan Maerz, Anke J Roelofs, Cosimo De Bari
2020-Current year OA Pubs
OBJECTIVE: Single-cell RNA-sequencing (scRNA-seq) has advanced our understanding of the heterogeneity of synovial fibroblasts and their roles in tissue repair and osteoarthritis. Here, we compared the fibroblast responses to different types and duration of joint injury in mice.
DESIGN: Published scRNA-seq data of synovial fibroblasts from a model of joint surface injury (JSI, day 6) and two post-traumatic osteoarthritis models, destabilisation of the medial meniscus (DMM, day 7 and 2 months) and anterior cruciate ligament rupture (ACLR, day 7 and day 28), were integrated and analysed using clustering, DEG, gene-set enrichment, regulon, pseudotime trajectory and cell-cycle analyses.
RESULTS: The response …
Diversity And Immune Dynamics Of Choroid Plexus Macrophages Are Shaped By Distinct Developmental Origins, Siling Du, Khai M Nguyen, Alina Ulezko Antonova, Jose L Fachi, Patrick Fernandes Rodrigues, Alice Verdiani, Martina Molgora, Igor Smirnov, Jasmin Herz, Tornike Mamuladze, Jennifer Ponce, Amanda Swain, Mattia Bugatti, Susan Gilfillan, Marina Cella, William Vermi, Jonathan Kipnis, Marco Colonna, Simone Brioschi
Diversity And Immune Dynamics Of Choroid Plexus Macrophages Are Shaped By Distinct Developmental Origins, Siling Du, Khai M Nguyen, Alina Ulezko Antonova, Jose L Fachi, Patrick Fernandes Rodrigues, Alice Verdiani, Martina Molgora, Igor Smirnov, Jasmin Herz, Tornike Mamuladze, Jennifer Ponce, Amanda Swain, Mattia Bugatti, Susan Gilfillan, Marina Cella, William Vermi, Jonathan Kipnis, Marco Colonna, Simone Brioschi
The Brown Foundation: Institute of Molecular Medicine
The choroid plexus forms a key barrier and signaling interface between the brain and peripheral circulation, yet its immune landscape remains incompletely understood. Using single-cell transcriptomics combined with lineage and spatial tracing methods, we identified three biologically distinct populations of choroid plexus macrophages, defined by differential expression of CD163, MHCII or CD9. These subsets arise from separate hematopoietic waves, occupy distinct anatomical niches and differentially rely on CSF1 and IL-34 for survival. We found that TGFβ signaling is essential to maintain their tissue-specific identities, and deletion of Tgfbr2 in these cells induces broad phenotypic reprogramming. During neuroinflammation, choroid plexus macrophages …
Glutamatergic Dysfunction Of Astrocytes In Paraventricular Nucleus Of Thalamus Contributes To Adult Anxiety Susceptibility In Adolescent Ethanol Exposed Mice, Aubrey Bennett, Hyunjung Kim, David Thomas, Peter Biggs, Roxan Ara, Asamoah Bosomtwi, Seungwoo Kang
Glutamatergic Dysfunction Of Astrocytes In Paraventricular Nucleus Of Thalamus Contributes To Adult Anxiety Susceptibility In Adolescent Ethanol Exposed Mice, Aubrey Bennett, Hyunjung Kim, David Thomas, Peter Biggs, Roxan Ara, Asamoah Bosomtwi, Seungwoo Kang
The Brown Foundation: Institute of Molecular Medicine
Repeated ethanol exposure during adolescence increases adult anxiety risk, but the underlying mechanisms remain unclear. The paraventricular nucleus of the thalamus (PVT) has been considered a hub for controlling anxiety and is affected by experiences from early life. Thus, this study investigated how adolescent intermittent repeated ethanol exposure (AIE) affects the PVT activities and anxiety-related behaviors in adulthood. We found that AIE triggers anxiety-like behaviors and parallelly exhibited elevated firing rates and increased calcium signaling in the PVT neurons compared to control counterpart mice. Chemogenetic inhibition of PVT neurons reduced anxiety-like behaviors in AIE-treated animals, confirming PVT's role in adolescent …
Pharmacokinetic Modeling Strategies For Dynamic Hyperpolarized Urea Imaging, Keith A Michel, Collin J Harlan, Christopher M Walker, Matthew E Merritt, Yunyun Chen, Stephen Y Lai, James A Bankson
Pharmacokinetic Modeling Strategies For Dynamic Hyperpolarized Urea Imaging, Keith A Michel, Collin J Harlan, Christopher M Walker, Matthew E Merritt, Yunyun Chen, Stephen Y Lai, James A Bankson
Faculty, Staff and Student Publications
Purpose: To evaluate pharmacokinetic modeling methods for quantification of tissue perfusion/permeability with hyperpolarized 13C urea.
Methods: Three models for quantitative analysis of dynamic HP urea imaging data were proposed and evaluated in numerical simulations and a thyroid cancer mouse model. A multicompartment model resembling the extended Tofts model for DCE-MRI (Model I) and two simplified models were used. The simplified models each eliminate a volume parameter representing vascular (Model II) or impermeable cellular space (Model III). Signal curves were generated from Model I, and models were fit to these synthetic data to quantify the effects of acquisition settings, bias in …
Alpha 7 Nicotinic Acetylcholine Receptor Contributes To Long-Term Cognitive Recovery Following Ischemic Stroke, Dustin T Nguyen, Kate Mendoza, Cassandra Hall, Chunfeng Tan, Anjali Chauhan
Alpha 7 Nicotinic Acetylcholine Receptor Contributes To Long-Term Cognitive Recovery Following Ischemic Stroke, Dustin T Nguyen, Kate Mendoza, Cassandra Hall, Chunfeng Tan, Anjali Chauhan
Faculty, Staff and Student Publications
Stroke is associated with autonomic dysfunction and reduced acetylcholine (ACh), a neurotransmitter critical for cognition. ACh signals in part through the alpha-7 nicotinic acetylcholine receptor (α7nAChR), a ligand-gated ion channel involved in synaptic plasticity, learning, and memory. Impaired α7nAChR signaling has been linked to heightened neuroinflammation and poor acute stroke recovery. Here, we investigated whether α7nAChR contributes to post-stroke cognitive recovery in young male mice. Wild-type (WT) and α7nAChR knockout (α7n0KO) mice underwent 60-min middle cerebral artery occlusion (MCAO). In a pharmacology cohort, the α7nAChR agonist GTS-21 was administered immediately after reperfusion and then daily for 20 days. Cognitive performance …
Selective Deletion Of Fgfr1 In Agrp Neurons Impairs Energy Homeostasis Under High-Fat Diet In Mice, Daniel Shookster, Shea O'Connell, Patel Darshan, Taylor Landry, Wyatt Bunner, Zhiying Jiang, Qingchun Tong, Hu Huang
Selective Deletion Of Fgfr1 In Agrp Neurons Impairs Energy Homeostasis Under High-Fat Diet In Mice, Daniel Shookster, Shea O'Connell, Patel Darshan, Taylor Landry, Wyatt Bunner, Zhiying Jiang, Qingchun Tong, Hu Huang
Faculty, Staff and Student Publications
Background: The global obesity crisis and the limited success of current treatments underscore the need to identify novel regulatory pathways. While central administration of α-Klotho exerts anti-obesity effects in rodents through AgRP neurons, the intracellular signaling mechanisms that mediate this process remain undefined.
Methods: To define the role of FGFR1 within the α-Klotho signaling pathway in AgRP neurons, we performed a targeted deletion of the receptor in adult mice using an AAV-mediated CRISPR/Cas9 system alongside transgenic models.
Results: Deletion of FGFR1 in AgRP neurons disrupted energy homeostasis, promoting weight gain induced by a high-fat diet. Electrophysiological recordings revealed that FGFR1 …