Open Access. Powered by Scholars. Published by Universities.®

Digital Commons Network™

Open Access. Powered by Scholars. Published by Universities.®

Animals

Discipline
Institution
Publication Year
Publication
Publication Type
File Type

Articles 241 - 270 of 9188

Full-Text Articles in Entire DC Network

Avian Influenza Preparedness In Ghana: A Cross-Sectional Assessment Of Knowledge, Attitudes, And Practices Among Residents Of Nsawam-Adoagyiri Municipality, Eastern Region, Christopher Yaw Dumevi, George Boateng Kyei, Et Al. Mar 2026

Avian Influenza Preparedness In Ghana: A Cross-Sectional Assessment Of Knowledge, Attitudes, And Practices Among Residents Of Nsawam-Adoagyiri Municipality, Eastern Region, Christopher Yaw Dumevi, George Boateng Kyei, Et Al.

2020-Current year OA Pubs

BACKGROUND: Avian influenza (AI) represents a persistent threat to public health, food security, and livelihoods in Ghana, where outbreaks of H5N1 and H9N2 have occurred. This cross-sectional study evaluated the knowledge, attitudes, and practices (KAP) related to avian influenza among residents of the Nsawam-Adoagyiri Municipality; an area characterized by intensive poultry production with the aim of delineating deficits in community-level preparedness and guiding evidence-based public health interventions. METHODS: A community-based cross-sectional study was conducted from May to July 2025 using a four-stage sampling technique. We surveyed 321 adults via structured questionnaires, evaluating socio-demographics and KAP related to AI. Scale reliability …


Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim Mar 2026

Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim

Faculty Research 2026

Thymic epithelial tumors (TET), comprising various histologic types of thymomas and thymic carcinomas, originate from thymic epithelial cells (TEC). Each histologic type is typically associated with a distinct immune cell composition and clinical manifestation. A better understanding of the cellular origins and molecular pathways underlying this heterogeneity is needed to improve patient stratification and treatment. In this study, we conducted an integrated genomic and transcriptomic analysis of 124 thymomas and 13 thymic carcinomas, including 20 newly sequenced cases, combined with 117 cases from publicly available datasets. Single-cell transcriptomic data from murine thymic tissues across developmental stages were incorporated to further …


Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim Mar 2026

Integrative Multiomic Classification Reveals Distinct Origins And Evolutionary Trajectories Of Thymic Epithelial Tumors., Seongyeol Park, Kijong Yi, Jieun Lee, Myung Jin Yang, Joo-Hye Song, Joonoh Lim, Taewoo Kim, Seokhwi Kim, Su Yeon Kim, Hyung-Don Kim, Yoon Ho Kim, Sae Bom Lee, Yoo Jin Jung, Hansol Park, Jake June-Koo Lee, Yohan An, Jeonghwan Youk, Kwon Joong Na, Samina Park, Hyun Joo Lee, In Kyu Park, Chang Hyun Kang, Eui-Cheol Shin, Tae Min Kim, Won Do Heo, Charles Lee, Gou Young Koh, Sung-Yup Cho, Young Seok Ju, Young Tae Kim

Faculty Research 2026

Thymic epithelial tumors (TET), comprising various histologic types of thymomas and thymic carcinomas, originate from thymic epithelial cells (TEC). Each histologic type is typically associated with a distinct immune cell composition and clinical manifestation. A better understanding of the cellular origins and molecular pathways underlying this heterogeneity is needed to improve patient stratification and treatment. In this study, we conducted an integrated genomic and transcriptomic analysis of 124 thymomas and 13 thymic carcinomas, including 20 newly sequenced cases, combined with 117 cases from publicly available datasets. Single-cell transcriptomic data from murine thymic tissues across developmental stages were incorporated to further …


Cell Type-Specific Enhancers Regulate Il-22 Expression In Innate And Adaptive Type 3 Lymphoid Cells, Ankita Saini, Leone S Hopkins, Vanida A Serna, Matthew V D Mccullen, Nicholas G Selner, Bishan Bhattarai, José L Fachi, Rebecca A Glynn, Katharina E Hayer, Craig H Bassing, Marco Colonna, Eugene M Oltz Mar 2026

Cell Type-Specific Enhancers Regulate Il-22 Expression In Innate And Adaptive Type 3 Lymphoid Cells, Ankita Saini, Leone S Hopkins, Vanida A Serna, Matthew V D Mccullen, Nicholas G Selner, Bishan Bhattarai, José L Fachi, Rebecca A Glynn, Katharina E Hayer, Craig H Bassing, Marco Colonna, Eugene M Oltz

2020-Current year OA Pubs

IL-22, a signature cytokine for type 3 lymphoid cells, including T helper 17/22 (Th17/22) and type 3 innate lymphoid cells (ILC3), mediates epithelial homeostasis and protective pathogen responses in barrier tissues. Upon dysregulation, IL-22 can drive chronic inflammatory diseases, yet little is known about transcriptional elements modulating its expression. Here, we identify two enhancers, E22-1 and E22-2, with distinct capacities for regulating Il22 expression in type 3 lymphoid cells. Both enhancers are necessary for protection from Citrobacter rodentium infection and for the onset of IL-22-mediated psoriasis. E22-2 is specifically required for IL-22 expression in ILC3s, while E22-1 functions in both …


Persistent Microglial Activation Following Neonatal Cmv Infection Mediates Neurodegeneration, Jessica L. Mccord, Debotri Chatterjee, John Y.S. Han, Drew Scoles, Richard J. Smeyne, Nancy J. Philp, Christopher M. Snyder Mar 2026

Persistent Microglial Activation Following Neonatal Cmv Infection Mediates Neurodegeneration, Jessica L. Mccord, Debotri Chatterjee, John Y.S. Han, Drew Scoles, Richard J. Smeyne, Nancy J. Philp, Christopher M. Snyder

Department of Microbiology and Immunology Faculty Papers

Human cytomegalovirus (HCMV) causes the most common congenital viral infection in the United States, with well-known acute and late-onset neurological pathologies. Moreover, HCMV, like multiple herpesviruses, has been associated with neuroinflammation and neurodegeneration. Using a well-established neonatal murine (M)CMV infection model, we found that early-life infection drove adult-onset neuron loss and neuropathology in the retina and brain, without evident viral reactivation. Pathology was associated with the persistence of highly activated and inflammatory damage-associated microglia. Transient depletion of these microglia before the development of pathology resulted in repopulation of the tissue by microglia with a more reparative profile, which was then …


Breaking Into Hiv-1'S Epigenetic Vault: Cure Strategies To Eliminate The Viral Reservoir, Joanna Jones, Chelsea Gunderson, Brian Wigdahl, Michael Nonnemacher Mar 2026

Breaking Into Hiv-1'S Epigenetic Vault: Cure Strategies To Eliminate The Viral Reservoir, Joanna Jones, Chelsea Gunderson, Brian Wigdahl, Michael Nonnemacher

Kimmel Cancer Center Faculty Papers

Human immunodeficiency virus type 1 (HIV-1) is a retrovirus that integrates into the host cell's DNA as a provirus. Transcription from the provirus is regulated in large part by cellular proteins and epigenetic factors. These may be repressive or permissive to productive infection. The host factors that regulate this balance are therefore attractive targets for HIV-1 therapeutics. Indeed, proviral chromatin is the focus of two of the current HIV-1 cure strategies. "Shock and Kill" uses latency reversal agents to open the provirus's chromatin, promoting high levels of gene expression that induce the killing of infected cells. "Block and Lock" uses …


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 Mar 2026

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. Mar 2026

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 Mar 2026

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 …


Pkmζ-Kibra Interactions, Molecular Turnover, And Memory, Changchi Hsieh, David A Cano, Panayiotis Tsokas, James E Cottrell, André Antonio Fenton, Harel Shouval, Todd Charlton Sacktor Mar 2026

Pkmζ-Kibra Interactions, Molecular Turnover, And Memory, Changchi Hsieh, David A Cano, Panayiotis Tsokas, James E Cottrell, André Antonio Fenton, Harel Shouval, Todd Charlton Sacktor

Faculty, Staff and Student Publications

How can the molecules that strengthen synaptic connections maintain memory in the face of molecular turnover? Our previous work showed that persistent interaction between the postsynaptic scaffolding protein, KIBRA, and the autonomously active PKC isoform, PKMζ, is crucial for maintaining synaptic long-term potentiation (LTP) and memory lasting at least a month. This duration is longer than the lifespans of individual KIBRA and PKMζ molecules. Biophysical modeling of the interaction suggests oligomers of KIBRA-PKMζ dimers, but not individual dimers or monomers, can overcome molecular turnover by continuously incorporating newly synthesized KIBRA and PKMζ, replacing those that have degraded. Here we used …


Molecular Insights Into The Regulation Of Gnptαβ By Lyset, Xi Yang, Balraj Doray, Danielle Henn, Varsha Venkatarangan, Benjamin C Jennings, Zhongzheng Dong, Jiaxuan Liang, Weichao Zhang, Bokai Zhang, Linchen Yu, Liang Chen, Stuart Kornfeld, Ming Li Mar 2026

Molecular Insights Into The Regulation Of Gnptαβ By Lyset, Xi Yang, Balraj Doray, Danielle Henn, Varsha Venkatarangan, Benjamin C Jennings, Zhongzheng Dong, Jiaxuan Liang, Weichao Zhang, Bokai Zhang, Linchen Yu, Liang Chen, Stuart Kornfeld, Ming Li

2020-Current year OA Pubs

In vertebrates, newly synthesized lysosomal enzymes traffic to lysosomes through the mannose-6-phosphate (M6P) pathway. The Golgi membrane protein LYSET was recently discovered to regulate lysosome biogenesis by controlling the level of GlcNAc-1-phosphotransferase (GNPT). However, its working mechanism remained unclear. In this study, we demonstrate that LYSET is a two-transmembrane protein essential for GNPT stability, cleavage by Site-1 Protease (S1P), and enzymatic activity. We reconcile conflicting models by showing that LYSET enhances GNPT cleavage and prevents its mislocalization to lysosomes for degradation. We further establish that LYSET achieves this by interacting with GOLPH3 and retromer complexes to anchor the LYSET-GNPT complex …


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 Mar 2026

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.


Underexplored Maternal Microbiomes: Immune, Metabolic, And Microbial Pathways Shaping Pregnancy Outcomes, Rafael Tomoya Michita, Nicole Jimenez, Melissa M Herbst-Kralovetz, Indira U Mysorekar Mar 2026

Underexplored Maternal Microbiomes: Immune, Metabolic, And Microbial Pathways Shaping Pregnancy Outcomes, Rafael Tomoya Michita, Nicole Jimenez, Melissa M Herbst-Kralovetz, Indira U Mysorekar

Faculty, Staff and Students Publications

Maternal microbial ecosystems play critical roles in shaping reproductive physiology and pregnancy outcomes. During the pre-conception and prenatal periods, these communities modulate maternal physiology by regulating immune tolerance, nutrient metabolism, and susceptibility to pregnancy complications such as preterm birth, hypertensive disorders, and gestational diabetes. While the gut microbiota has been extensively studied, the roles of cervicovaginal, urinary, respiratory, oral, and upper reproductive tract microbiomes remain less clear. In this minireview, we synthesize current knowledge on these underexplored maternal microbiomes, with an emphasis on the cervicovaginal and urinary microbiota and their interactions with the placenta and fetus. We discuss cross-niche microbial …


Crossing The Finish Line Towards A Disease-Modifying Treatment For Angelman Syndrome, Matthew C Judson, Jason J Yi, Et Al. Mar 2026

Crossing The Finish Line Towards A Disease-Modifying Treatment For Angelman Syndrome, Matthew C Judson, Jason J Yi, Et Al.

2020-Current year OA Pubs

Recent progress in the development of genetic therapies promises that impactful treatments for single-gene neurodevelopmental disorders are imminent. But can derailed neurodevelopmental processes be mended after broken genes are replaced or otherwise restored? The results of ongoing clinical trials for Angelman syndrome will soon yield answers to this pressing question, yet the trials face significant obstacles. Here we identify insights needed to aid the quest for a disease-modifying Angelman syndrome therapy, which could serve as a roadmap for the expeditious development of genetic therapies for other single-gene neurodevelopmental disorders.


Translation Of Expanded Cgg Repeats In Lrp12 Associated Oculopharyngodistal Myopathy, Chengcheng Li, Jil A Daw, Sara K Pittman, Connor J Maltby, Hidetoshi Sakurai, Peter K Todd, Conrad C Weihl Mar 2026

Translation Of Expanded Cgg Repeats In Lrp12 Associated Oculopharyngodistal Myopathy, Chengcheng Li, Jil A Daw, Sara K Pittman, Connor J Maltby, Hidetoshi Sakurai, Peter K Todd, Conrad C Weihl

2020-Current year OA Pubs

Oculopharyngodistal myopathy (OPDM) is characterized by ptosis, ophthalmoparesis, dysphagia, and distal weakness. Myopathological features include rimmed vacuoles and intranuclear inclusions. OPDM is associated with a pathogenic CGG repeat expansions in the 5'UTR of LRP12, NOTCH2NLC, GIPC1, RILPL1 and ABCD3. Translation of the repeat in the glycine reading frame has been demonstrated for expansions in FMR1, NOTCH2NLC and GIPC1. To assess for a similar phenomenon with LRP12, we expressed normal or expanded CGG repeats in the context of the 5'UTR of LRP12, upstream of a green fluorescent protein (GFP) in the three repeat reading frames. Repeat dependent translation occurs exclusively in …


A New Chromosome-Level Genome Assembly For Western Painted Turtle Chrysemys Picta Bellii, A Model For Extreme Physiological Adaptations, Junhao Chen, John R Bermingham Jr, Patrick Minx, Milinn Kremitzky, Zhenguo Lin, Daniel E Warren Mar 2026

A New Chromosome-Level Genome Assembly For Western Painted Turtle Chrysemys Picta Bellii, A Model For Extreme Physiological Adaptations, Junhao Chen, John R Bermingham Jr, Patrick Minx, Milinn Kremitzky, Zhenguo Lin, Daniel E Warren

2020-Current year OA Pubs

The western painted turtle, Chrysemys picta bellii, has the greatest tolerance to anoxia of any tetrapod studied to date. These turtles reside in the northern United States and southern Canada, and survive months of anoxia while submerged in ice-locked ponds and bogs. Reference genomes provide an important resource for elucidating the molecular bases for such unique physiological traits. The initial reference genome for this species, published in 2013, is highly fragmented, thereby limiting downstream analyses and biological interpretation. We created a new and improved assembly by combining PacBio HiFi, 10 × Genomics Chromium, Hi-C sequence data and Bionano optical mapping …


Brd4-Mediated Er Membrane Contact Creates Functionally Distinct Mitochondrial Subtypes, Brandon Chen, Rachel M Guerra, David J Pagliarini, Et Al. Mar 2026

Brd4-Mediated Er Membrane Contact Creates Functionally Distinct Mitochondrial Subtypes, Brandon Chen, Rachel M Guerra, David J Pagliarini, Et Al.

2020-Current year OA Pubs

Inter-organellar communication is critical for cellular metabolism. One of the most abundant inter-organellar interactions occurs at the endoplasmic reticulum and mitochondria contact sites (ERMCSs). However, an understanding of the mechanisms governing ERMCS regulation and their roles in cellular metabolism is limited by a lack of tools that permit temporal induction and reversal. Through screening approaches, we identified fedratinib, an FDA-approved drug that dramatically increases ERMCS abundance by inhibiting the epigenetic modifier BRD4. Fedratinib rapidly and reversibly modulates mitochondrial and ER morphology, induces a distinct ER-mitochondria envelopment structure, and alters metabolic homeostasis. Moreover, ERMCS modulation depends on mitochondrial electron transport chain …


Bi-Allelic Variants In Nrdc Cause A Neurodevelopmental Disorder Characterized By Neonatal Lethality, Microcephaly, And Brain Abnormalities, Davut Pehlivan, Abigail Sandoval, Reza Maroofian, François Lecoquierre, Aisha M Al Shamsi, Gyu S Lee, Osman Yesilbas, Preston Taylor, Matthew B Mcdougal, Vahid Bahrambeigi, Omid Aryani, Juan Felipe Ramirez, Khalid Hama Salih, Chadi Al Alam, Heba Morsy, Haytham Hussien, Tarek Omar, Ibrahim M Abdelrazek, Anne Claire Brehin, Dana Marafi, Tugba Kalayci, Jubran Abu Rahma, Jawabreh Kassem Talbeya, Husein Dabbah, Eric Verspyck, Toktam Moosavian, Jawid M Fatih, Tadahiro Mitani, Gulsen Akay, Daniel G Calame, Anne-Marie Guerrot, Wendy K Chung, Henry Houlden, James R Lupski, Adel Shalata, Wan Hee Yoon Mar 2026

Bi-Allelic Variants In Nrdc Cause A Neurodevelopmental Disorder Characterized By Neonatal Lethality, Microcephaly, And Brain Abnormalities, Davut Pehlivan, Abigail Sandoval, Reza Maroofian, François Lecoquierre, Aisha M Al Shamsi, Gyu S Lee, Osman Yesilbas, Preston Taylor, Matthew B Mcdougal, Vahid Bahrambeigi, Omid Aryani, Juan Felipe Ramirez, Khalid Hama Salih, Chadi Al Alam, Heba Morsy, Haytham Hussien, Tarek Omar, Ibrahim M Abdelrazek, Anne Claire Brehin, Dana Marafi, Tugba Kalayci, Jubran Abu Rahma, Jawabreh Kassem Talbeya, Husein Dabbah, Eric Verspyck, Toktam Moosavian, Jawid M Fatih, Tadahiro Mitani, Gulsen Akay, Daniel G Calame, Anne-Marie Guerrot, Wendy K Chung, Henry Houlden, James R Lupski, Adel Shalata, Wan Hee Yoon

Faculty, Staff and Students Publications

Nardilysin (NRDC) plays a role in multiple cellular functions in diverse cellular compartments, including ectodomain shedding in the plasma membrane, as well as chaperoning a key Krebs cycle enzyme in mitochondria. We had previously reported limited clinical information from two individuals with homozygous frameshift variants in NRDC. With inclusion of previously published individuals, here we report 14 individuals (10 females, four males) from nine unrelated families carrying homozygous NRDC pathogenic variants. Common clinical features include severe to profound developmental delay/intellectual disability (12/12), microcephaly (13/13), prematurity (5/13), lethality in the first 3 years of life (9/14), seizures (7/11), joint contractures (4/8), …


An Acetylation-Dependent Switch Underlies Host Disease Tolerance During Streptococcal Infection, Sumit Kumar Paudel, Sowmya Gannavaram, Michael G Caparon, Wei Xu Mar 2026

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 Mar 2026

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 …


A Neural Circuit Framework For Economic Choice: From Building Blocks Of Valuation To Compositionality In Multitasking, Aldo Battista, Camillo Padoa-Schioppa, Xiao-Jing Wang Mar 2026

A Neural Circuit Framework For Economic Choice: From Building Blocks Of Valuation To Compositionality In Multitasking, Aldo Battista, Camillo Padoa-Schioppa, Xiao-Jing Wang

2020-Current year OA Pubs

Value-guided decisions are a cornerstone of cognition, yet the underlying circuit-level mechanisms remain elusive. We used reinforcement learning to train recurrent neural network models endowed with Dale's law on a battery of economic choice tasks, which revealed a two-stage computational framework. First, value estimation occurs at the input level, where learned weights store subjective preferences and approximate the non-linear multiplication of reward magnitude and probability to yield expected values. This feedforward mechanism enables generalization to novel choice options. Second, option values are compared within the recurrent network, where specific connectivity patterns mediate robust winner-take-all decisions, with both excitatory and inhibitory …


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 Mar 2026

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 Mar 2026

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 …


The Relationship Between Apparent Potentiation And The Magnitude Of The Control Response, Joe Henry Steinbach, Gustav Akk Mar 2026

The Relationship Between Apparent Potentiation And The Magnitude Of The Control Response, Joe Henry Steinbach, Gustav Akk

2020-Current year OA Pubs

The effect of a potentiating drug on ion channel function is typically evaluated by comparing current responses to the control agonist in the presence and absence of the potentiator. Differences in ratios of responses are then taken as proof of distinct potentiation properties when comparing modulation by different compounds. In these experiments, the concentration of the agonist is typically kept low to generate a small fractional control response. The precise relative magnitude of the control response is, however, not standardized among labs and can range from a concentration producing a response equal to just 2% of maximal (EC2) to over …


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 Mar 2026

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 Mar 2026

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 Mar 2026

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 Mar 2026

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 Mar 2026

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 Mar 2026

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 …