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Arid1a Orchestrates Swi/Snf-Mediated Sequential Binding Of Transcription Factors With Arid1a Loss Driving Pre-Memory B Cell Fate And Lymphomagenesis, Darko Barisic, Christopher R Chin, Cem Meydan, Matt Teater, Ioanna Tsialta, Coraline Mlynarczyk, Amy Chadburn, Xuehai Wang, Margot Sarkozy, Min Xia, Sandra E Carson, Santo Raggiri, Sonia Debek, Benedikt Pelzer, Ceyda Durmaz, Qing Deng, Priya Lakra, Martin Rivas, Christian Steidl, David W Scott, Andrew P Weng, Christopher E Mason, Michael R Green, Ari Melnick Apr 2024

Arid1a Orchestrates Swi/Snf-Mediated Sequential Binding Of Transcription Factors With Arid1a Loss Driving Pre-Memory B Cell Fate And Lymphomagenesis, Darko Barisic, Christopher R Chin, Cem Meydan, Matt Teater, Ioanna Tsialta, Coraline Mlynarczyk, Amy Chadburn, Xuehai Wang, Margot Sarkozy, Min Xia, Sandra E Carson, Santo Raggiri, Sonia Debek, Benedikt Pelzer, Ceyda Durmaz, Qing Deng, Priya Lakra, Martin Rivas, Christian Steidl, David W Scott, Andrew P Weng, Christopher E Mason, Michael R Green, Ari Melnick

Faculty, Staff and Student Publications

ARID1A, a subunit of the canonical BAF nucleosome remodeling complex, is commonly mutated in lymphomas. We show that ARID1A orchestrates B cell fate during the germinal center (GC) response, facilitating cooperative and sequential binding of PU.1 and NF-kB at crucial genes for cytokine and CD40 signaling. The absence of ARID1A tilts GC cell fate toward immature IgM+CD80-PD-L2- memory B cells, known for their potential to re-enter new GCs. When combined with BCL2 oncogene, ARID1A haploinsufficiency hastens the progression of aggressive follicular lymphomas (FLs) in mice. Patients with FL with ARID1A-inactivating mutations preferentially display an immature memory B cell-like state with …


Smarca4 Is A Haploinsufficient B Cell Lymphoma Tumor Suppressor That Fine-Tunes Centrocyte Cell Fate Decisions, Qing Deng, Priya Lakra, Panhong Gou, Haopeng Yang, Cem Meydan, Matthew Teater, Christopher Chin, Wenchao Zhang, Tommy Dinh, Usama Hussein, Xubin Li, Estela Rojas, Weiguang Liu, Patrick K Reville, Atish Kizhakeyil, Darko Barisic, Sydney Parsons, Ashley Wilson, Jared Henderson, Brooks Scull, Channabasavaiah Gurumurthy, Francisco Vega, Amy Chadburn, Branko Cuglievan, Nader Kim El-Mallawany, Carl Allen, Christopher Mason, Ari Melnick, Michael R Green Apr 2024

Smarca4 Is A Haploinsufficient B Cell Lymphoma Tumor Suppressor That Fine-Tunes Centrocyte Cell Fate Decisions, Qing Deng, Priya Lakra, Panhong Gou, Haopeng Yang, Cem Meydan, Matthew Teater, Christopher Chin, Wenchao Zhang, Tommy Dinh, Usama Hussein, Xubin Li, Estela Rojas, Weiguang Liu, Patrick K Reville, Atish Kizhakeyil, Darko Barisic, Sydney Parsons, Ashley Wilson, Jared Henderson, Brooks Scull, Channabasavaiah Gurumurthy, Francisco Vega, Amy Chadburn, Branko Cuglievan, Nader Kim El-Mallawany, Carl Allen, Christopher Mason, Ari Melnick, Michael R Green

Faculty, Staff and Student Publications

SMARCA4 encodes one of two mutually exclusive ATPase subunits in the BRG/BRM associated factor (BAF) complex that is recruited by transcription factors (TFs) to drive chromatin accessibility and transcriptional activation. SMARCA4 is among the most recurrently mutated genes in human cancer, including ∼30% of germinal center (GC)-derived Burkitt lymphomas. In mice, GC-specific Smarca4 haploinsufficiency cooperated with MYC over-expression to drive lymphomagenesis. Furthermore, monoallelic Smarca4 deletion drove GC hyperplasia with centroblast polarization via significantly increased rates of centrocyte recycling to the dark zone. Mechanistically, Smarca4 loss reduced the activity of TFs that are activated in centrocytes to drive GC-exit, including SPI1 …


An In Vitro Neurogenetics Platform For Precision Disease Modeling In The Mouse., Daniel Cortes, Mélanie Escudero, Austin C Korgan, Arojit Mitra, Alyssa Edwards, Selcan Aydin, Steven C. Munger, Kevin Charland, Zhong-Wei Zhang, Kristen M S O'Connell, Laura G Reinholdt, Martin Pera Apr 2024

An In Vitro Neurogenetics Platform For Precision Disease Modeling In The Mouse., Daniel Cortes, Mélanie Escudero, Austin C Korgan, Arojit Mitra, Alyssa Edwards, Selcan Aydin, Steven C. Munger, Kevin Charland, Zhong-Wei Zhang, Kristen M S O'Connell, Laura G Reinholdt, Martin Pera

Faculty Research 2024

The power and scope of disease modeling can be markedly enhanced through the incorporation of broad genetic diversity. The introduction of pathogenic mutations into a single inbred mouse strain sometimes fails to mimic human disease. We describe a cross-species precision disease modeling platform that exploits mouse genetic diversity to bridge cell-based modeling with whole organism analysis. We developed a universal protocol that permitted robust and reproducible neural differentiation of genetically diverse human and mouse pluripotent stem cell lines and then carried out a proof-of-concept study of the neurodevelopmental gene DYRK1A. Results in vitro reliably predicted the effects of genetic background …


Subcellular Pathways Through Vglut3-Expressing Mouse Amacrine Cells Provide Locally Tuned Object-Motion-Selective Signals In The Retina, Karl Friedrichsen, Jen-Chun Hsiang, Chin-I Lin, Liam Mccoy, Katia Valkova, Daniel Kerschensteiner, Josh L Morgan Apr 2024

Subcellular Pathways Through Vglut3-Expressing Mouse Amacrine Cells Provide Locally Tuned Object-Motion-Selective Signals In The Retina, Karl Friedrichsen, Jen-Chun Hsiang, Chin-I Lin, Liam Mccoy, Katia Valkova, Daniel Kerschensteiner, Josh L Morgan

2020-Current year OA Pubs

VGluT3-expressing mouse retinal amacrine cells (VG3s) respond to small-object motion and connect to multiple types of bipolar cells (inputs) and retinal ganglion cells (RGCs, outputs). Because these input and output connections are intermixed on the same dendrites, making sense of VG3 circuitry requires comparing the distribution of synapses across their arbors to the subcellular flow of signals. Here, we combine subcellular calcium imaging and electron microscopic connectomic reconstruction to analyze how VG3s integrate and transmit visual information. VG3s receive inputs from all nearby bipolar cell types but exhibit a strong preference for the fast type 3a bipolar cells. By comparing …


Unraveling The Evolutionary Origin Of The Complex Nuclear Receptor Element (Cnre), A Cis-Regulatory Module Required For Preferential Expression In The Atrial Chamber., Luana Nunes Santos, Ângela Maria Sousa Costa, Martin Nikolov, João E Carvalho, Allysson Coelho Sampaio, Frank E Stockdale, Gang Feng Wang, Hozana Andrade Castillo, Mariana Bortoletto Grizante, Stefanie Dudczig, Michelle Vasconcelos, Nadia Rosenthal, Patricia Regina Jusuf, Hieu T Nim, Paulo De Oliveira, Tatiana Guimarães De Freitas Matos, William Nikovits, Izabella Luisa Tambones, Ana Carolina Migliorini Figueira, Michael Schubert, Mirana Ramialison, José Xavier-Neto Apr 2024

Unraveling The Evolutionary Origin Of The Complex Nuclear Receptor Element (Cnre), A Cis-Regulatory Module Required For Preferential Expression In The Atrial Chamber., Luana Nunes Santos, Ângela Maria Sousa Costa, Martin Nikolov, João E Carvalho, Allysson Coelho Sampaio, Frank E Stockdale, Gang Feng Wang, Hozana Andrade Castillo, Mariana Bortoletto Grizante, Stefanie Dudczig, Michelle Vasconcelos, Nadia Rosenthal, Patricia Regina Jusuf, Hieu T Nim, Paulo De Oliveira, Tatiana Guimarães De Freitas Matos, William Nikovits, Izabella Luisa Tambones, Ana Carolina Migliorini Figueira, Michael Schubert, Mirana Ramialison, José Xavier-Neto

Faculty Research 2024

Cardiac function requires appropriate proteins in each chamber. Atria requires slow myosin to act as reservoirs, while ventricles demand fast myosin for swift pumping. Myosins are thus under chamber-biased cis-regulation, with myosin gene expression imbalances leading to congenital heart dysfunction. To identify regulatory inputs leading to cardiac chamber-biased expression, we computationally and molecularly dissected the quail Slow Myosin Heavy Chain III (SMyHC III) promoter that drives preferential expression to the atria. We show that SMyHC III gene states are orchestrated by a complex Nuclear Receptor Element (cNRE) of 32 base pairs. Using transgenesis in zebrafish and mice, we demonstrate that …


Vista Checkpoint Inhibition By Ph-Selective Antibody Sns-101 With Optimized Safety And Pharmacokinetic Profiles Enhances Pd-1 Response, Thomas Thisted, Yoshiko Takeuchi, Robert D Schreiber, Et Al. Apr 2024

Vista Checkpoint Inhibition By Ph-Selective Antibody Sns-101 With Optimized Safety And Pharmacokinetic Profiles Enhances Pd-1 Response, Thomas Thisted, Yoshiko Takeuchi, Robert D Schreiber, Et Al.

2020-Current year OA Pubs

VISTA, an inhibitory myeloid-T-cell checkpoint, holds promise as a target for cancer immunotherapy. However, its effective targeting has been impeded by issues such as rapid clearance and cytokine release syndrome observed with previous VISTA antibodies. Here we demonstrate that SNS-101, a newly developed pH-selective VISTA antibody, addresses these challenges. Structural and biochemical analyses confirmed the pH-selectivity and unique epitope targeted by SNS-101. These properties confer favorable pharmacokinetic and safety profiles on SNS-101. In syngeneic tumor models utilizing human VISTA knock-in mice, SNS-101 shows in vivo efficacy when combined with a PD-1 inhibitor, modulates cytokine and chemokine signaling, and alters the …


Antibody-Mediated Targeting Of Human Microglial Leukocyte Ig-Like Receptor B4 Attenuates Amyloid Pathology In A Mouse Model, Jinchao Hou, Yun Chen, Zhangying Cai, Gyu Seong Heo, Carla M Yuede, Zuoxu Wang, Kent Lin, Fareeha Saadi, Tihana Trsan, Aivi T Nguyen, Eleni Constantopoulos, Rachel A Larsen, Yiyang Zhu, Nicole D Wagner, Nolan Mclaughlin, Xinyi Cynthia Kuang, Alexander D Barrow, Dian Li, Yingyue Zhou, Shoutang Wang, Susan Gilfillan, Michael L Gross, Simone Brioschi, Yongjian Liu, David M Holtzman, Marco Colonna Apr 2024

Antibody-Mediated Targeting Of Human Microglial Leukocyte Ig-Like Receptor B4 Attenuates Amyloid Pathology In A Mouse Model, Jinchao Hou, Yun Chen, Zhangying Cai, Gyu Seong Heo, Carla M Yuede, Zuoxu Wang, Kent Lin, Fareeha Saadi, Tihana Trsan, Aivi T Nguyen, Eleni Constantopoulos, Rachel A Larsen, Yiyang Zhu, Nicole D Wagner, Nolan Mclaughlin, Xinyi Cynthia Kuang, Alexander D Barrow, Dian Li, Yingyue Zhou, Shoutang Wang, Susan Gilfillan, Michael L Gross, Simone Brioschi, Yongjian Liu, David M Holtzman, Marco Colonna

The Brown Foundation: Institute of Molecular Medicine

Microglia help limit the progression of Alzheimer’s disease (AD) by constraining amyloid-β (Aβ) pathology, effected through a balance of activating and inhibitory intracellular signals delivered by distinct cell surface receptors. Human leukocyte Ig-like receptor B4 (LILRB4) is an inhibitory receptor of the immunoglobulin (Ig) superfamily that is expressed on myeloid cells and recognizes apolipoprotein E (ApoE) among other ligands. Here, we find that LILRB4 is highly expressed in microglia of patients with AD. Using mice that accumulate Aβ and carry a transgene encompassing a portion of the LILR region that includes LILRB4, we corroborated abundant LILRB4 expression in microglia …


Gabaergic/Glycinergic And Glutamatergic Neurons Mediate Distinct Neurodevelopmental Phenotypes Of Stxbp1 Encephalopathy, Joo Hyun Kim, Wu Chen, Eugene S Chao, Armando Rivera, Heet Naresh Kaku, Kevin Jiang, Dongwon Lee, Hongmei Chen, Jaimie M Vega, Teresa V Chin, Kevin Jin, Kelly T Nguyen, Sheldon S Zou, Zain Moin, Shawn Nguyen, Mingshan Xue 薛名杉 Apr 2024

Gabaergic/Glycinergic And Glutamatergic Neurons Mediate Distinct Neurodevelopmental Phenotypes Of Stxbp1 Encephalopathy, Joo Hyun Kim, Wu Chen, Eugene S Chao, Armando Rivera, Heet Naresh Kaku, Kevin Jiang, Dongwon Lee, Hongmei Chen, Jaimie M Vega, Teresa V Chin, Kevin Jin, Kelly T Nguyen, Sheldon S Zou, Zain Moin, Shawn Nguyen, Mingshan Xue 薛名杉

Faculty, Staff and Students Publications

An increasing number of pathogenic variants in presynaptic proteins involved in the synaptic vesicle cycle are being discovered in neurodevelopmental disorders. The clinical features of these synaptic vesicle cycle disorders are diverse, but the most prevalent phenotypes include intellectual disability, epilepsy, movement disorders, cerebral visual impairment, and psychiatric symptoms ( Verhage and Sørensen, 2020; Bonnycastle et al., 2021; John et al., 2021; Melland et al., 2021). Among this growing list of synaptic vesicle cycle disorders, the most frequent is STXBP1 encephalopathy caused by de novo heterozygous pathogenic variants in syntaxin-binding protein 1 (STXBP1, also known as …


Neutrophil Elastase Remodels Mammary Tumors To Facilitate Lung Metastasis, Amriti R Lulla, Said Akli, Cansu Karakas, Joseph A Caruso, Lucas D Warma, Natalie W Fowlkes, Xiayu Rao, Jing Wang, Kelly K Hunt, Stephanie S Watowich, Khandan Keyomarsi Apr 2024

Neutrophil Elastase Remodels Mammary Tumors To Facilitate Lung Metastasis, Amriti R Lulla, Said Akli, Cansu Karakas, Joseph A Caruso, Lucas D Warma, Natalie W Fowlkes, Xiayu Rao, Jing Wang, Kelly K Hunt, Stephanie S Watowich, Khandan Keyomarsi

Faculty, Staff and Student Publications

Metastatic disease remains the leading cause of death due to cancer, yet the mechanism(s) of metastasis and its timely detection remain to be elucidated. Neutrophil elastase (NE), a serine protease secreted by neutrophils, is a crucial mediator of chronic inflammation and tumor progression. In this study, we used the PyMT model (NE+/+ and NE-/-) of breast cancer to interrogate the tumor-intrinsic and -extrinsic mechanisms by which NE can promote metastasis. Our results showed that genetic ablation of NE significantly reduced lung metastasis and improved metastasis-free survival. RNA-sequencing analysis of primary tumors indicated differential regulation of tumor-intrinsic actin cytoskeleton signaling pathways …


Antigen-Clustered Nanovaccine Achieves Long-Term Tumor Remission By Promoting B/Cd 4 T Cell Crosstalk, Chengyi Li, Ryan Clauson, Luke F Bugada, Fang Ke, Bing He, Zhixin Yu, Hongwei Chen, Binyamin Jacobovitz, Hongxiang Hu, Polina Chuikov, Brett Dallas Hill, Syed M Rizvi, Yudong Song, Kai Sun, Pasieka Axenov, Daniel Huynh, Xinyi Wang, Lana Garmire, Yu Leo Lei, Irina Grigorova, Fei Wen, Marilia Cascalho, Wei Gao, Duxin Sun Apr 2024

Antigen-Clustered Nanovaccine Achieves Long-Term Tumor Remission By Promoting B/Cd 4 T Cell Crosstalk, Chengyi Li, Ryan Clauson, Luke F Bugada, Fang Ke, Bing He, Zhixin Yu, Hongwei Chen, Binyamin Jacobovitz, Hongxiang Hu, Polina Chuikov, Brett Dallas Hill, Syed M Rizvi, Yudong Song, Kai Sun, Pasieka Axenov, Daniel Huynh, Xinyi Wang, Lana Garmire, Yu Leo Lei, Irina Grigorova, Fei Wen, Marilia Cascalho, Wei Gao, Duxin Sun

Faculty, Staff and Student Publications

Current cancer vaccines using T cell epitopes activate antitumor T cell immunity through dendritic cell/macrophage-mediated antigen presentation, but they lack the ability to promote B/CD4 T cell crosstalk, limiting their anticancer efficacy. We developed antigen-clustered nanovaccine (ACNVax) to achieve long-term tumor remission by promoting B/CD4 T cell crosstalk. The topographic features of ACNVax were achieved using an iron nanoparticle core attached with an optimal number of gold nanoparticles, where the clusters of HER2 B/CD4 T cell epitopes were conjugated on the gold surface with an optimal intercluster distance of 5-10 nm. ACNVax effectively trafficked to lymph nodes and cross-linked with …


Targeting Branched N-Glycans And Fucosylation Sensitizes Ovarian Tumors To Immune Checkpoint Blockade, Hao Nie, Pratima Saini, Taito Miyamoto, Liping Liao, Rafal J Zielinski, Heng Liu, Wei Zhou, Chen Wang, Brennah Murphy, Martina Towers, Tyler Yang, Yuan Qi, Toshitha Kannan, Andrew Kossenkov, Hiroaki Tateno, Daniel T Claiborne, Nan Zhang, Mohamed Abdel-Mohsen, Rugang Zhang Apr 2024

Targeting Branched N-Glycans And Fucosylation Sensitizes Ovarian Tumors To Immune Checkpoint Blockade, Hao Nie, Pratima Saini, Taito Miyamoto, Liping Liao, Rafal J Zielinski, Heng Liu, Wei Zhou, Chen Wang, Brennah Murphy, Martina Towers, Tyler Yang, Yuan Qi, Toshitha Kannan, Andrew Kossenkov, Hiroaki Tateno, Daniel T Claiborne, Nan Zhang, Mohamed Abdel-Mohsen, Rugang Zhang

Faculty, Staff and Student Publications

Aberrant glycosylation is a crucial strategy employed by cancer cells to evade cellular immunity. However, it's unclear whether homologous recombination (HR) status-dependent glycosylation can be therapeutically explored. Here, we show that the inhibition of branched N-glycans sensitizes HR-proficient, but not HR-deficient, epithelial ovarian cancers (EOCs) to immune checkpoint blockade (ICB). In contrast to fucosylation whose inhibition sensitizes EOCs to anti-PD-L1 immunotherapy regardless of HR-status, we observe an enrichment of branched N-glycans on HR-proficient compared to HR-deficient EOCs. Mechanistically, BRCA1/2 transcriptionally promotes the expression of MGAT5, the enzyme responsible for catalyzing branched N-glycans. The branched N-glycans on HR-proficient tumors augment their …


Nfĸb Signaling Drives Myocardial Injury Via Ccr2+ Macrophages In A Preclinical Model Of Arrhythmogenic Cardiomyopathy, Stephen P. Chelko, Vinay R. Penna, Morgan Engel, Emily A. Shiel, Ann M. Centner, Waleed Farra, Elisa N. Cannon, Maicon Landim-Vieira, Niccole Schaible, Kory Lavine, Jeffrey E. Saffitz Apr 2024

Nfĸb Signaling Drives Myocardial Injury Via Ccr2+ Macrophages In A Preclinical Model Of Arrhythmogenic Cardiomyopathy, Stephen P. Chelko, Vinay R. Penna, Morgan Engel, Emily A. Shiel, Ann M. Centner, Waleed Farra, Elisa N. Cannon, Maicon Landim-Vieira, Niccole Schaible, Kory Lavine, Jeffrey E. Saffitz

2020-Current year OA Pubs

Nuclear factor κ-B (NFκB) is activated in iPSC-cardiac myocytes from patients with arrhythmogenic cardiomyopathy (ACM) under basal conditions, and inhibition of NFκB signaling prevents disease in Dsg2mut/mut mice, a robust mouse model of ACM. Here, we used genetic approaches and single-cell RNA-Seq to define the contributions of immune signaling in cardiac myocytes and macrophages in the natural progression of ACM using Dsg2mut/mut mice. We found that NFκB signaling in cardiac myocytes drives myocardial injury, contractile dysfunction, and arrhythmias in Dsg2mut/mut mice. NFκB signaling in cardiac myocytes mobilizes macrophages expressing C-C motif chemokine receptor-2 (CCR2+ cells) to affected areas within the …


A Compendium Of Multi-Omics Data Illuminating Host Responses To Lethal Human Virus Infections, Amie J Eisfeld, Larissa B Thackray, Qing Tan, Michael S Diamond, Et Al. Apr 2024

A Compendium Of Multi-Omics Data Illuminating Host Responses To Lethal Human Virus Infections, Amie J Eisfeld, Larissa B Thackray, Qing Tan, Michael S Diamond, Et Al.

2020-Current year OA Pubs

Human infections caused by viral pathogens trigger a complex gamut of host responses that limit disease, resolve infection, generate immunity, and contribute to severe disease or death. Here, we present experimental methods and multi-omics data capture approaches representing the global host response to infection generated from 45 individual experiments involving human viruses from the Orthomyxoviridae, Filoviridae, Flaviviridae, and Coronaviridae families. Analogous experimental designs were implemented across human or mouse host model systems, longitudinal samples were collected over defined time courses, and global multi-omics data (transcriptomics, proteomics, metabolomics, and lipidomics) were acquired by microarray, RNA sequencing, or mass spectrometry analyses. For …


Contributions Of Mouse Genetic Strain Background To Age-Related Phenotypes In Physically Active Het3 Mice., Jake W Willows, Zahra Alshahal, Naeemah M Story, Michele J Alves, Pablo Vidal, Hallie Harris, Rochelle Rodrigo, Kristin I Stanford, Juan Peng, Peter C. Reifsnyder, David E Harrison, W David Arnold, Kristy L Townsend Apr 2024

Contributions Of Mouse Genetic Strain Background To Age-Related Phenotypes In Physically Active Het3 Mice., Jake W Willows, Zahra Alshahal, Naeemah M Story, Michele J Alves, Pablo Vidal, Hallie Harris, Rochelle Rodrigo, Kristin I Stanford, Juan Peng, Peter C. Reifsnyder, David E Harrison, W David Arnold, Kristy L Townsend

Faculty Research 2024

We assessed aging hallmarks in skin, muscle, and adipose in the genetically diverse HET3 mouse, and generated a broad dataset comparing these to individual animal diagnostic SNPs from the 4 founding inbred strains of the HET3 line. For middle- and old-aged HET3 mice, we provided running wheel exercise to ensure our observations were not purely representative of sedentary animals, but age-related phenotypes were not improved with running wheel activity. Adipose tissue fibrosis, peripheral neuropathy, and loss of neuromuscular junction integrity were consistent phenotypes in older-aged HET3 mice regardless of physical activity, but aspects of these phenotypes were moderated by the …


Network-Based Analysis Predicts Interacting Genetic Modifiers From A Meta-Mapping Study Of Spike-Wave Discharge In Mice., Montana Kay Lara, Jeffrey L Brabec, Amanda E Hernan, Rod C Scott, Anna L. Tyler, J Matthew Mahoney Apr 2024

Network-Based Analysis Predicts Interacting Genetic Modifiers From A Meta-Mapping Study Of Spike-Wave Discharge In Mice., Montana Kay Lara, Jeffrey L Brabec, Amanda E Hernan, Rod C Scott, Anna L. Tyler, J Matthew Mahoney

Faculty Research 2024

Absence seizures are characterized by brief lapses in awareness accompanied by a hallmark spike-and-wave discharge (SWD) electroencephalographic pattern and are common to genetic generalized epilepsies (GGEs). While numerous genes have been associated with increased risk, including some Mendelian forms with a single causal allele, most cases of GGE are idiopathic and there are many unknown genetic modi- fiers of GGE influencing risk and severity. In a previous meta-mapping study, crosses between transgenic C57BL/6 and C3HeB/FeJ strains, each carrying one of three SWD-causing mutations (Gabrg2 tm1Spet(R43Q), Scn8a8j or Gria4spkw1), demonstrated an antagonistic epistatic interaction between loci on mouse chromosomes 2 and …


Genetic Diversity Promotes Resilience In A Mouse Model Of Alzheimer's Disease., Neelakshi Soni, Lindsay A Hohsfield, Kristine M Tran, Shimako Kawauchi, Amber Walker, Dominic Javonillo, Jimmy Phan, Dina Matheos, Celia Da Cunha, Asli Uyar, Giedre Milinkeviciute, Angela Gomez-Arboledas, Katelynn Tran, Catherine C Kaczorowski, Marcelo A Wood, Andrea J Tenner, Frank M Laferla, Gregory W. Carter, Ali Mortazavi, Vivek Swarup, Grant R Macgregor, Kim N Green Apr 2024

Genetic Diversity Promotes Resilience In A Mouse Model Of Alzheimer's Disease., Neelakshi Soni, Lindsay A Hohsfield, Kristine M Tran, Shimako Kawauchi, Amber Walker, Dominic Javonillo, Jimmy Phan, Dina Matheos, Celia Da Cunha, Asli Uyar, Giedre Milinkeviciute, Angela Gomez-Arboledas, Katelynn Tran, Catherine C Kaczorowski, Marcelo A Wood, Andrea J Tenner, Frank M Laferla, Gregory W. Carter, Ali Mortazavi, Vivek Swarup, Grant R Macgregor, Kim N Green

Faculty Research 2024

INTRODUCTION: Alzheimer's disease (AD) is a neurodegenerative disorder with multifactorial etiology, including genetic factors that play a significant role in disease risk and resilience. However, the role of genetic diversity in preclinical AD studies has received limited attention.

METHODS: We crossed five Collaborative Cross strains with 5xFAD C57BL/6J female mice to generate F1 mice with and without the 5xFAD transgene. Amyloid plaque pathology, microglial and astrocytic responses, neurofilament light chain levels, and gene expression were assessed at various ages.

RESULTS: Genetic diversity significantly impacts AD-related pathology. Hybrid strains showed resistance to amyloid plaque formation and neuronal damage. Transcriptome diversity was …


Unraveling The Genetics Of Arsenic Toxicity With Cellular Morphology Qtl., Callan O'Connor, Gregory R Keele, Whitney Martin, Tim J Stodola, Daniel M Gatti, Brian Hoffmann, Ron Korstanje, Gary Churchill, Laura G Reinholdt Apr 2024

Unraveling The Genetics Of Arsenic Toxicity With Cellular Morphology Qtl., Callan O'Connor, Gregory R Keele, Whitney Martin, Tim J Stodola, Daniel M Gatti, Brian Hoffmann, Ron Korstanje, Gary Churchill, Laura G Reinholdt

Faculty Research 2024

The health risks that arise from environmental exposures vary widely within and across human populations, and these differences are largely determined by genetic variation and gene-by-environment (gene-environment) interactions. However, risk assessment in laboratory mice typically involves isogenic strains and therefore, does not account for these known genetic effects. In this context, genetically heterogenous cell lines from laboratory mice are promising tools for population-based screening because they provide a way to introduce genetic variation in risk assessment without increasing animal use. Cell lines from genetic reference populations of laboratory mice offer genetic diversity, power for genetic mapping, and potentially, predictive value …


In Vivo Tissue Distribution Of Polystyrene Or Mixed Polymer Microspheres And Metabolomic Analysis After Oral Exposure In Mice, Marcus M. Garcia, Aaron S. Romero, Seth D. Merkley, Jewel L. Meyer-Hagen, Charles Forbes, Eliane El Hayek, David P. Sciezka, Rachel Templeton, Jorge Gonzalez-Estrella, Yan Jin, Haiwei Gu, Angelica Benavidez, Russell P. Hunter, Selita Lucas, Guy Herbert, Kyle Joohyung Kim, Julia Yue Cui, Rama R. Gullapalli, Julie G. In, Matthew J. Campen, Eliseo F. Castillo Apr 2024

In Vivo Tissue Distribution Of Polystyrene Or Mixed Polymer Microspheres And Metabolomic Analysis After Oral Exposure In Mice, Marcus M. Garcia, Aaron S. Romero, Seth D. Merkley, Jewel L. Meyer-Hagen, Charles Forbes, Eliane El Hayek, David P. Sciezka, Rachel Templeton, Jorge Gonzalez-Estrella, Yan Jin, Haiwei Gu, Angelica Benavidez, Russell P. Hunter, Selita Lucas, Guy Herbert, Kyle Joohyung Kim, Julia Yue Cui, Rama R. Gullapalli, Julie G. In, Matthew J. Campen, Eliseo F. Castillo

Pathology Research and Scholarship

BACKGROUND: Global plastic use has consistently increased over the past century with several different types of plastics now being produced. Much of these plastics end up in oceans or landfills leading to a substantial accumulation of plastics in the environment. Plastic debris slowly degrades into microplastics (MPs) that can ultimately be inhaled or ingested by both animals and humans. A growing body of evidence indicates that MPs can cross the gut barrier and enter into the lymphatic and systemic circulation leading to accumulation in tissues such as the lungs, liver, kidney, and brain. The impacts of mixed MPs exposure on …


Into The Wild: A Novel Wild-Derived Inbred Strain Resource Expands The Genomic And Phenotypic Diversity Of Laboratory Mouse Models., Beth L Dumont, Daniel Mario Gatti, Mallory A Ballinger, Dana Lin, Megan Phifer-Rixey, Michael J Sheehan, Taichi A Suzuki, Lydia K Wooldridge, Hilda Opoku Frempong, Raman Akinyanju Lawal, Gary Churchill, Cathleen Lutz, Nadia Rosenthal, Jacqueline K White, Michael W Nachman Apr 2024

Into The Wild: A Novel Wild-Derived Inbred Strain Resource Expands The Genomic And Phenotypic Diversity Of Laboratory Mouse Models., Beth L Dumont, Daniel Mario Gatti, Mallory A Ballinger, Dana Lin, Megan Phifer-Rixey, Michael J Sheehan, Taichi A Suzuki, Lydia K Wooldridge, Hilda Opoku Frempong, Raman Akinyanju Lawal, Gary Churchill, Cathleen Lutz, Nadia Rosenthal, Jacqueline K White, Michael W Nachman

Faculty Research 2024

The laboratory mouse has served as the premier animal model system for both basic and preclinical investigations for over a century. However, laboratory mice capture only a subset of the genetic variation found in wild mouse populations, ultimately limiting the potential of classical inbred strains to uncover phenotype-associated variants and pathways. Wild mouse populations are reservoirs of genetic diversity that could facilitate the discovery of new functional and disease-associated alleles, but the scarcity of commercially available, well-characterized wild mouse strains limits their broader adoption in biomedical research. To overcome this barrier, we have recently developed, sequenced, and phenotyped a set …


Gene Replacement-Alzheimer's Disease (Gr-Ad): Modeling The Genetics Of Human Dementias In Mice., Kellie Benzow, Kul Karanjeet, Adrian L Oblak, Gregory W. Carter, Michael Sasner, Michael D Koob Apr 2024

Gene Replacement-Alzheimer's Disease (Gr-Ad): Modeling The Genetics Of Human Dementias In Mice., Kellie Benzow, Kul Karanjeet, Adrian L Oblak, Gregory W. Carter, Michael Sasner, Michael D Koob

Faculty Research 2024

INTRODUCTION: Genetic studies conducted over the past four decades have provided us with a detailed catalog of genes that play critical roles in the etiology of Alzheimer's disease (AD) and related dementias (ADRDs). Despite this progress, as a field we have had only limited success in incorporating this rich complexity of human AD/ADRD genetics findings into our animal models of these diseases. Our primary goal for the gene replacement (GR)-AD project is to develop mouse lines that model the genetics of AD/ADRD as closely as possible.

METHODS: To do this, we are generating mouse lines in which the genes of …


E-Cadherin Loss Drives Diffuse-Type Gastric Tumorigenesis Via Ezh2-Mediated Reprogramming, Gengyi Zou, Yuanjian Huang, Shengzhe Zhang, Kyung-Pil Ko, Bongjun Kim, Jie Zhang, Vishwa Venkatesan, Melissa P Pizzi, Yibo Fan, Sohee Jun, Na Niu, Huamin Wang, Shumei Song, Jaffer A Ajani, Jae-Il Park Apr 2024

E-Cadherin Loss Drives Diffuse-Type Gastric Tumorigenesis Via Ezh2-Mediated Reprogramming, Gengyi Zou, Yuanjian Huang, Shengzhe Zhang, Kyung-Pil Ko, Bongjun Kim, Jie Zhang, Vishwa Venkatesan, Melissa P Pizzi, Yibo Fan, Sohee Jun, Na Niu, Huamin Wang, Shumei Song, Jaffer A Ajani, Jae-Il Park

Faculty, Staff and Student Publications

Diffuse-type gastric adenocarcinoma (DGAC) is a deadly cancer often diagnosed late and resistant to treatment. While hereditary DGAC is linked to CDH1 mutations, the role of CDH1/E-cadherin inactivation in sporadic DGAC tumorigenesis remains elusive. We discovered CDH1 inactivation in a subset of DGAC patient tumors. Analyzing single-cell transcriptomes in malignant ascites, we identified two DGAC subtypes: DGAC1 (CDH1 loss) and DGAC2 (lacking immune response). DGAC1 displayed distinct molecular signatures, activated DGAC-related pathways, and an abundance of exhausted T cells in ascites. Genetically engineered murine gastric organoids showed that Cdh1 knock-out (KO), KrasG12D, Trp53 KO (EKP) accelerates tumorigenesis with immune evasion …


Protective Effects Of The Postbiotic Lactobacillus Plantarum Md35 On Bone Loss In An Ovariectomized Mice Model, Ju-Yeong Myeong, Hye-Yeon Jung, Hyo-Seok Chae, Hyang Hyun Cho, Don-Kyu Kim, You-Jee Jang, Jae-Il Park Apr 2024

Protective Effects Of The Postbiotic Lactobacillus Plantarum Md35 On Bone Loss In An Ovariectomized Mice Model, Ju-Yeong Myeong, Hye-Yeon Jung, Hyo-Seok Chae, Hyang Hyun Cho, Don-Kyu Kim, You-Jee Jang, Jae-Il Park

Faculty, Staff and Student Publications

Postmenopausal osteoporosis is caused by estrogen deficiency, which impairs bone homeostasis, resulting in increased osteoclastic resorption without a corresponding increase in osteoblastic activity. Postbiotics have several therapeutic properties, including anti-obesity, anti-diabetic, anti-inflammatory, and anti-osteoporotic effects. However, the beneficial effects of the postbiotic MD35 of Lactobacillus plantarum on bone have not been studied. In this study, we demonstrated that the postbiotic L. plantarum MD35, isolated from young radish water kimchi, influences osteoclast differentiation in mouse bone marrow-derived macrophage (BMM) culture. In addition, it was effective protecting against estrogen deficiency-induced bone loss in ovariectomized (OVX) mice, an animal model of postmenopausal osteoporosis. …


Monophosphoryl Lipid A-Based Adjuvant To Promote The Immunogenicity Of Multivalent Meningococcal Polysaccharide Conjugate Vaccines, Kishore Alugupalli Apr 2024

Monophosphoryl Lipid A-Based Adjuvant To Promote The Immunogenicity Of Multivalent Meningococcal Polysaccharide Conjugate Vaccines, Kishore Alugupalli

Department of Microbiology and Immunology Faculty Papers

Activation of the adaptive immune system requires the engagement of costimulatory pathways in addition to B and T cell Ag receptor signaling, and adjuvants play a central role in this process. Many Gram-negative bacterial polysaccharide vaccines, including the tetravalent meningococcal conjugate vaccines (MCV4) and typhoid Vi polysaccharide vaccines, do not incorporate adjuvants. The immunogenicity of typhoid vaccines is due to the presence of associated TLR4 ligands in these vaccines. Because the immunogenicity of MCV4 is poor and requires boosters, I hypothesized that TLR4 ligands are absent in MCV4 and that incorporation of a TLR4 ligand-based adjuvant would improve their immunogenicity. …


Lac-Phe Mediates The Effects Of Metformin On Food Intake And Body Weight, Shuke Xiao, Veronica L Li, Xuchao Lyu, Xudong Chen, Wei Wei, Fahim Abbasi, Joshua W Knowles, Alan Sheng-Hwa Tung, Shuliang Deng, Gaurav Tiwari, Xu Shi, Shuning Zheng, Laurie Farrell, Zsu-Zsu Chen, Kent D Taylor, Xiuqing Guo, Mark O Goodarzi, Alexis C Wood, Yii-Der Ida Chen, Leslie A Lange, Stephen S Rich, Jerome I Rotter, Clary B Clish, Usman A Tahir, Robert E Gerszten, Mark D Benson, Jonathan Z Long Apr 2024

Lac-Phe Mediates The Effects Of Metformin On Food Intake And Body Weight, Shuke Xiao, Veronica L Li, Xuchao Lyu, Xudong Chen, Wei Wei, Fahim Abbasi, Joshua W Knowles, Alan Sheng-Hwa Tung, Shuliang Deng, Gaurav Tiwari, Xu Shi, Shuning Zheng, Laurie Farrell, Zsu-Zsu Chen, Kent D Taylor, Xiuqing Guo, Mark O Goodarzi, Alexis C Wood, Yii-Der Ida Chen, Leslie A Lange, Stephen S Rich, Jerome I Rotter, Clary B Clish, Usman A Tahir, Robert E Gerszten, Mark D Benson, Jonathan Z Long

Children’s Nutrition Research Center Staff Publications

Metformin is a widely prescribed anti-diabetic medicine that also reduces body weight. There is ongoing debate about the mechanisms that mediate metformin’s effects on energy balance. Here, we show that metformin is a powerful pharmacological inducer of the anorexigenic metabolite N-lactoyl-phenylalanine (Lac-Phe) in cells, in mice and two independent human cohorts. Metformin drives Lac-Phe biosynthesis through the inhibition of complex I, increased glycolytic flux and intracellular lactate mass action. Intestinal epithelial CNDP2+ cells, not macrophages, are the principal in vivo source of basal and metformin-inducible Lac-Phe. Genetic ablation of Lac-Phe biosynthesis in male mice renders animals resistant to the …


Fear Antiviral Response Pathway Is Independent Of Interferons And Countered By Poxvirus Proteins, Emily A Rex, Dahee Seo, Sruthi Chappidi, Chelsea Pinkham, Sabrynna Brito Oliveira, Aaron Embry, David Heisler, Yang Liu, Moiz Munir, Karolin Luger, Neal M Alto, Flávio Guimarães Da Fonseca, Robert Orchard, Dustin C Hancks, Don B Gammon Apr 2024

Fear Antiviral Response Pathway Is Independent Of Interferons And Countered By Poxvirus Proteins, Emily A Rex, Dahee Seo, Sruthi Chappidi, Chelsea Pinkham, Sabrynna Brito Oliveira, Aaron Embry, David Heisler, Yang Liu, Moiz Munir, Karolin Luger, Neal M Alto, Flávio Guimarães Da Fonseca, Robert Orchard, Dustin C Hancks, Don B Gammon

Faculty, Staff and Student Publications

The human facilitates chromatin transcription (FACT) complex is a chromatin remodeller composed of human suppressor of Ty 16 homologue (hSpt16) and structure-specific recognition protein-1 subunits that regulates cellular gene expression. Whether FACT regulates host responses to infection remained unclear. We identify a FACT-mediated, interferon-independent, antiviral pathway that restricts poxvirus replication. Cell culture and bioinformatics approaches suggest that early viral gene expression triggers nuclear accumulation of SUMOylated hSpt16 subunits required for the expression of E26 transformation-specific sequence-1 (ETS-1)-a transcription factor that activates virus restriction programs. However, biochemical studies show that poxvirus-encoded A51R proteins block ETS-1 expression by outcompeting structure-specific recognition protein-1 …


4r-Cembranoid Suppresses Glial Cells Inflammatory Phenotypes And Prevents Hippocampal Neuronal Loss In Lps-Treated Mice, Luis A Rojas-Colón, John B Redell, Pramod K Dash, Pedro E Vegas, Wanda Vélez-Torres Apr 2024

4r-Cembranoid Suppresses Glial Cells Inflammatory Phenotypes And Prevents Hippocampal Neuronal Loss In Lps-Treated Mice, Luis A Rojas-Colón, John B Redell, Pramod K Dash, Pedro E Vegas, Wanda Vélez-Torres

Faculty, Staff and Student Publications

Chronic neuroinflammation has been implicated in neurodegenerative disease pathogenesis. A key feature of neuroinflammation is neuronal loss and glial activation, including microglia and astrocytes. 4R-cembranoid (4R) is a natural compound that inhibits hippocampal pro-inflammatory cytokines and increases memory function in mice. We used the lipopolysaccharide (LPS) injection model to study the effect of 4R on neuronal density and microglia and astrocyte activation. C57BL/6J wild-type mice were injected with LPS (5 mg/kg) and 2 h later received either 4R (6 mg/kg) or vehicle. Mice were sacrificed after 72 h for analysis of brain pathology. Confocal images of brain sections immunostained for …


Readiness Of Nociceptor Cell Bodies To Generate Spontaneous Activity Results From Background Activity Of Diverse Ion Channels And High Input Resistance, Jinbin Tian, Alexis G Bavencoffe, Michael X Zhu, Edgar T Walters Apr 2024

Readiness Of Nociceptor Cell Bodies To Generate Spontaneous Activity Results From Background Activity Of Diverse Ion Channels And High Input Resistance, Jinbin Tian, Alexis G Bavencoffe, Michael X Zhu, Edgar T Walters

Faculty, Staff and Student Publications

Nociceptor cell bodies generate "spontaneous" discharge that can promote ongoing pain in persistent pain conditions. Little is known about the underlying mechanisms. Recordings from nociceptor cell bodies (somata) dissociated from rodent and human dorsal root ganglia have shown that previous pain in vivo is associated with low-frequency discharge controlled by irregular depolarizing spontaneous fluctuations of membrane potential (DSFs), likely produced by transient inward currents across the somal input resistance. Using mouse nociceptors, we show that DSFs are associated with high somal input resistance over a wide range of membrane potentials, including depolarized levels where DSFs approach action potential (AP) threshold. …


Loss-Of-Function Mutation In Prmt9 Causes Abnormal Synapse Development By Dysregulation Of Rna Alternative Splicing, Lei Shen, Xiaokuang Ma, Yuanyuan Wang, Zhihao Wang, Yi Zhang, Hoang Quoc Hai Pham, Xiaoqun Tao, Yuehua Cui, Jing Wei, Dimitri Lin, Tharindumala Abeywanada, Swanand Hardikar, Levon Halabelian, Noah Smith, Taiping Chen, Dalia Barsyte-Lovejoy, Shenfeng Qiu, Yi Xing, Yanzhong Yang Apr 2024

Loss-Of-Function Mutation In Prmt9 Causes Abnormal Synapse Development By Dysregulation Of Rna Alternative Splicing, Lei Shen, Xiaokuang Ma, Yuanyuan Wang, Zhihao Wang, Yi Zhang, Hoang Quoc Hai Pham, Xiaoqun Tao, Yuehua Cui, Jing Wei, Dimitri Lin, Tharindumala Abeywanada, Swanand Hardikar, Levon Halabelian, Noah Smith, Taiping Chen, Dalia Barsyte-Lovejoy, Shenfeng Qiu, Yi Xing, Yanzhong Yang

Faculty, Staff and Student Publications

Protein arginine methyltransferase 9 (PRMT9) is a recently identified member of the PRMT family, yet its biological function remains largely unknown. Here, by characterizing an intellectual disability associated PRMT9 mutation (G189R) and establishing a Prmt9 conditional knockout (cKO) mouse model, we uncover an important function of PRMT9 in neuronal development. The G189R mutation abolishes PRMT9 methyltransferase activity and reduces its protein stability. Knockout of Prmt9 in hippocampal neurons causes alternative splicing of ~1900 genes, which likely accounts for the aberrant synapse development and impaired learning and memory in the Prmt9 cKO mice. Mechanistically, we discover a methylation-sensitive protein-RNA interaction between …


Sting-Activating Cyclic Dinucleotide-Manganese Nanoparticles Evoke Robust Immunity Against Acute Myeloid Leukemia, Marisa E Aikins, Xiaoqi Sun, Hannah Dobson, Xingwu Zhou, Yao Xu, Yu Leo Lei, James J Moon Apr 2024

Sting-Activating Cyclic Dinucleotide-Manganese Nanoparticles Evoke Robust Immunity Against Acute Myeloid Leukemia, Marisa E Aikins, Xiaoqi Sun, Hannah Dobson, Xingwu Zhou, Yao Xu, Yu Leo Lei, James J Moon

Faculty, Staff and Student Publications

Acute myeloid leukemia (AML) is one of the most common types of leukemia in adults with a 5-year survival rate of 30.5%. These poor patient outcomes are attributed to tumor relapse, stemming from ineffective innate immune activation, T cell tolerance, and a lack of immunological memory. Thus, new strategies are needed to activate innate and effector immune cells and evoke long-term immunity against AML. One approach to address these issues is through Stimulator of Interferon Genes (STING) pathway activation, which produces Type I Interferons (Type I IFN) critical for innate and adaptive immune activation. Here, we report that systemic immunotherapy …


Early Elevations Of Ras Protein Level And Activity Are Critical For The Development Of Pdac In The Context Of Inflammation, Jianjia Ma, Fanghua Gong, Eunice Kim, James Xianxing Du, Cindy Leung, Qingchun Song, Craig D Logsdon, Yongde Luo, Xiaokun Li, Weiqin Lu Apr 2024

Early Elevations Of Ras Protein Level And Activity Are Critical For The Development Of Pdac In The Context Of Inflammation, Jianjia Ma, Fanghua Gong, Eunice Kim, James Xianxing Du, Cindy Leung, Qingchun Song, Craig D Logsdon, Yongde Luo, Xiaokun Li, Weiqin Lu

Faculty, Staff and Student Publications

The KRASG12D mutation was believed to be locked in a GTP-bound form, rendering it fully active. However, recent studies have indicated that the presence of mutant KRAS alone is insufficient; it requires additional activation through inflammatory stimuli to effectively drive the development of pancreatic ductal adenocarcinoma (PDAC). It remains unclear to what extent RAS activation occurs during the development of PDAC in the context of inflammation. Here, in a mouse model with the concurrent expression of KrasG12D/+ and inflammation mediator IKK2 in pancreatic acinar cells, we showed that, compared to KRASG12D alone, the cooperative interaction between KRASG12D and IKK2 rapidly …