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Optimizing Human Fcrn Mouse Models To Improve Pharmacokinetic Evaluation Of Antibody Drug Candidates., Gregory J. Christianson, Zachary M Howard, Samantha Kenney, Emily Lowell, Nijaguna Bethur, Derry C. Roopenian, Elena Gonzalo-Gil Dec 2026

Optimizing Human Fcrn Mouse Models To Improve Pharmacokinetic Evaluation Of Antibody Drug Candidates., Gregory J. Christianson, Zachary M Howard, Samantha Kenney, Emily Lowell, Nijaguna Bethur, Derry C. Roopenian, Elena Gonzalo-Gil

Faculty Research 2026

The use of animal models that can reliably predict drug performance in human patients is critical to antibody therapeutic development. Along with assessing toxicity and efficacy, determining the pharmacokinetic (PK) properties of therapeutics in Tg32 and Tg276 mice is essential to preclinical characterization. While Tg32 mice have been well established as indispensable in their ability to model the PK properties of antibody therapeutics, their intact immunity leaves them capable of mounting anti-drug antibody responses that interfere with PK interpretation. Here, we demonstrate the negative impact anti-drug responses can have on PK parameters derived from Tg32 mice, and provide strong evidence …


Optimizing Human Fcrn Mouse Models To Improve Pharmacokinetic Evaluation Of Antibody Drug Candidates., Gregory J. Christianson, Zachary M Howard, Samantha Kenney, Emily Lowell, Nijaguna Bethur, Derry C. Roopenian, Elena Gonzalo-Gil Dec 2026

Optimizing Human Fcrn Mouse Models To Improve Pharmacokinetic Evaluation Of Antibody Drug Candidates., Gregory J. Christianson, Zachary M Howard, Samantha Kenney, Emily Lowell, Nijaguna Bethur, Derry C. Roopenian, Elena Gonzalo-Gil

Faculty Research 2026

The use of animal models that can reliably predict drug performance in human patients is critical to antibody therapeutic development. Along with assessing toxicity and efficacy, determining the pharmacokinetic (PK) properties of therapeutics in Tg32 and Tg276 mice is essential to preclinical characterization. While Tg32 mice have been well established as indispensable in their ability to model the PK properties of antibody therapeutics, their intact immunity leaves them capable of mounting anti-drug antibody responses that interfere with PK interpretation. Here, we demonstrate the negative impact anti-drug responses can have on PK parameters derived from Tg32 mice, and provide strong evidence …


Steroid Receptor Coactivator 3-Deficient Regulatory T Cells Eradicate Multiple Solid Tumors In Syngeneic Mouse Models, Nuri Sung, Eunsu Kim, Yosef Gilad, Yuri Park, Adam M Dean, Yan Xia, Jianming Xu, Clifford C Dacso, David M Lonard, Sang Jun Han Dec 2026

Steroid Receptor Coactivator 3-Deficient Regulatory T Cells Eradicate Multiple Solid Tumors In Syngeneic Mouse Models, Nuri Sung, Eunsu Kim, Yosef Gilad, Yuri Park, Adam M Dean, Yan Xia, Jianming Xu, Clifford C Dacso, David M Lonard, Sang Jun Han

Faculty, Staff and Students Publications

Steroid receptor coactivator 3 (SRC-3) is highly expressed in regulatory T cells (Tregs) and is important for their immunosuppressive activity. Recently, we demonstrated that disrupting SRC-3 expression in Tregs eliminates triple-negative breast cancer (TNBC) and prostate cancer in syngeneic animal models by generating an anti-tumor immune microenvironment without inducing immune-related adverse events (irAEs). Further analysis of these mice revealed that SRC-3 knockout (KO) Tregs infiltrated breast tumors and facilitated the infiltration of CD8


Mtorc2-Nav1.2 Signaling Drives Early Hyperexcitability In Alzheimer’S Disease Mouse Model, Nolan M Dvorak, Jeffrey L Noebels Dec 2026

Mtorc2-Nav1.2 Signaling Drives Early Hyperexcitability In Alzheimer’S Disease Mouse Model, Nolan M Dvorak, Jeffrey L Noebels

Faculty, Staff and Students Publications

Hyperexcitability is a biomarker of early-stage Alzheimer’s Disease (AD) and hastens cognitive decline later in its course. Mechanistic target of rapamycin (mTOR) signaling contributes to the slope of this trajectory, as evidenced by early increased brain expression and the rescue of hyperexcitability by genetic deletion of mTOR complex 2 (mTORC2); however, a molecular mechanism directly linking mTOR signaling to membrane hyperexcitability in early-stage AD remains elusive. Here, we show that hyperactive mTOR signaling stimulates the voltage-gated Na+ channel 1.2 (Nav1.2), a previously identified downstream phosphorylation target of mTORC2 and a key regulator of membrane electrogenesis. Augmented Nav1.2 channel function induced …


Activity-Dependent Astrocytic Cholesterol Release Fine-Tunes Modes Of Synaptic Exo- And Endocytosis, Jongyun Myeong, Vitaly A Klyachko Oct 2026

Activity-Dependent Astrocytic Cholesterol Release Fine-Tunes Modes Of Synaptic Exo- And Endocytosis, Jongyun Myeong, Vitaly A Klyachko

2020-Current year OA Pubs

Cholesterol is essential for the organization of neurotransmitter release machinery, yet how it regulates the balance among different forms of synaptic exo- and endocytosis remains poorly understood. Moreover, which pre-synaptic processes rely on neuronal vs. astrocyte-derived cholesterol is unknown. Using nanoscale-precision imaging of single-vesicle release in hippocampal synapses, we demonstrate that astrocytic cholesterol is a critical determinant of both temporal and spatial aspects of presynaptic dynamics by differentially modulating the two main forms of synchronous release, univesicular (UVR) and multivesicular (MVR), effectively fine-tuning their balance. Moreover, astrocytic cholesterol determines the spatial distribution of vesicle release across the active zone and …


Complementary Vertebrate Wac Models Exhibit Phenotypes Relevant To Desanto-Shinawi Syndrome, Kang-Han Lee, Marwan Shinawi, Et Al. Sep 2026

Complementary Vertebrate Wac Models Exhibit Phenotypes Relevant To Desanto-Shinawi Syndrome, Kang-Han Lee, Marwan Shinawi, Et Al.

2020-Current year OA Pubs

Monogenic syndromes are associated with neurodevelopmental changes that result in cognitive impairments and neurobehavioral phenotypes, including autism and seizures. Limited studies and resources are available to make meaningful headway into the underlying molecular mechanisms that result in these symptoms. One such example is DeSanto-Shinawi Syndrome (DESSH), a rare disorder caused by pathogenic variants in the


Androgens Mediate Sexual Dimorphism In Pilarowski-Bjornsson Syndrome., Kimberley Jade Anderson, Eirny Tholl Thorolfsdottir, Ilana M. Nodelman, Sara Tholl Halldorsdottir, Stefania Benonisdottir, Malak A. Alghamdi, Naif A M Almontashiri, Brenda J. Barry, Matthias Begemann, Jacquelyn F. Britton, Sarah Burke, Benjamin Cogne, Ana S A Cohen, Carles De Diego Boguñá, Evan E. Eichler, Elizabeth C. Engle, Jill A. Fahrner, Laurence Faivre, Mélanie Fradin, Nico Fuhrmann, Christine W. Gao, Gunjan Garg, Dagmar Grečmalová, Mina Grippa, Jacqueline R. Harris, Kendra Hoekzema, Tova Hershkovitz, Sydney Hubbard, Katrien Janssens, Julie A. Jurgens, Stanislav Kmoch, Cordula Knopp, Meral Aktas Koptagel, Farah A. Ladha, Pablo Lapunzina, Tobias Lindau, Marije Meuwissen, Andreina Minicucci, Emily Neuhaus, Mathilde Nizon, Lenka Nosková, Kristen Park, Chirag Patel, Rolph Pfundt, Pankaj Prasun, Nils Rahner, Nathaniel H. Robin, Carey Ronspies, Jasmin Roohi, Jill Rosenfeld, Margarita Saenz, Carol J. Saunders, Zornitza Stark, Isabelle Thiffault, Sarah Thull, Danita Velasco, Clara Velmans, Jolijn Verseput, Antonio Vitobello, Tianyun Wang, Karin Weiss, Ingrid M. Wentzensen, Genay Pilarowski, Thor Eysteinsson, Madelyn Gillentine, Kári Stefánsson, Agnar Helgason, Gregory D. Bowman, Hans Tomas Bjornsson Sep 2026

Androgens Mediate Sexual Dimorphism In Pilarowski-Bjornsson Syndrome., Kimberley Jade Anderson, Eirny Tholl Thorolfsdottir, Ilana M. Nodelman, Sara Tholl Halldorsdottir, Stefania Benonisdottir, Malak A. Alghamdi, Naif A M Almontashiri, Brenda J. Barry, Matthias Begemann, Jacquelyn F. Britton, Sarah Burke, Benjamin Cogne, Ana S A Cohen, Carles De Diego Boguñá, Evan E. Eichler, Elizabeth C. Engle, Jill A. Fahrner, Laurence Faivre, Mélanie Fradin, Nico Fuhrmann, Christine W. Gao, Gunjan Garg, Dagmar Grečmalová, Mina Grippa, Jacqueline R. Harris, Kendra Hoekzema, Tova Hershkovitz, Sydney Hubbard, Katrien Janssens, Julie A. Jurgens, Stanislav Kmoch, Cordula Knopp, Meral Aktas Koptagel, Farah A. Ladha, Pablo Lapunzina, Tobias Lindau, Marije Meuwissen, Andreina Minicucci, Emily Neuhaus, Mathilde Nizon, Lenka Nosková, Kristen Park, Chirag Patel, Rolph Pfundt, Pankaj Prasun, Nils Rahner, Nathaniel H. Robin, Carey Ronspies, Jasmin Roohi, Jill Rosenfeld, Margarita Saenz, Carol J. Saunders, Zornitza Stark, Isabelle Thiffault, Sarah Thull, Danita Velasco, Clara Velmans, Jolijn Verseput, Antonio Vitobello, Tianyun Wang, Karin Weiss, Ingrid M. Wentzensen, Genay Pilarowski, Thor Eysteinsson, Madelyn Gillentine, Kári Stefánsson, Agnar Helgason, Gregory D. Bowman, Hans Tomas Bjornsson

Manuscripts, Articles, Book Chapters and Other Papers

Sex-specific penetrance in autosomal-dominant Mendelian conditions is largely understudied. The neurodevelopmental disorder Pilarowski-Bjornsson syndrome (PILBOS) was initially described in females. Here, we describe the clinical and genetic characteristics of the largest PILBOS cohort to date, showing that both sexes can exhibit PILBOS features, although males are overrepresented. A mouse model carrying a human-derived Chd1 missense variant (Chd1R616Q/+) displays female-restricted phenotypes, including growth deficiency, anxiety, and hypotonia. Orchiectomy unmasks a growth-deficiency phenotype in male Chd1R616Q/+ mice, while testosterone rescues the phenotype in females, implicating androgens in phenotype modulation. In the gnomAD and UK Biobank databases, rare missense variants …


Unlocking Cis-Regulatory Landscapes Across 500 Million Years Of Evolution And Disease Mechanisms, Tássia Mangetti Gonçalves, Casey L Stewart, Samantha D Baxley, Jason Xu, Kevin Boyer, Bijesh George, Daofeng Li, Chengran Yang, Harrison W Gabel, Xianhua Piao, Carlos Cruchaga, Yang E Li, Ting Wang, Oshri Avraham, Guoyan Zhao Sep 2026

Unlocking Cis-Regulatory Landscapes Across 500 Million Years Of Evolution And Disease Mechanisms, Tássia Mangetti Gonçalves, Casey L Stewart, Samantha D Baxley, Jason Xu, Kevin Boyer, Bijesh George, Daofeng Li, Chengran Yang, Harrison W Gabel, Xianhua Piao, Carlos Cruchaga, Yang E Li, Ting Wang, Oshri Avraham, Guoyan Zhao

2020-Current year OA Pubs

Genomic DNA encodes regulatory information that determines where, when, and to what extent genes are expressed. Theoretically, we should be able to identify these transcriptional "instructions" by examining genomic DNA sequence alone, yet this has remained challenging. Here we present the Vertebrate Regulatory MOdule Detector (VRMOD), a method that accurately predicts gene regulatory sequences using only the query genomic sequences. We applied VRMOD to 309 Ensembl genomes, generating a compendium of high-resolution, genome-position-fixed


Single Immunoglobulin Interleukin1-Related Receptor-Twist1 Axis Regulates Barrier Function In Neonatal Intestine., Aparna Venkatraman, Wei Yu, Heather Menden, Sherry M. Mabry, Joshua Wheatley, Shahid Umar, Susana Chavez-Bueno, Venkatesh Sampath Sep 2026

Single Immunoglobulin Interleukin1-Related Receptor-Twist1 Axis Regulates Barrier Function In Neonatal Intestine., Aparna Venkatraman, Wei Yu, Heather Menden, Sherry M. Mabry, Joshua Wheatley, Shahid Umar, Susana Chavez-Bueno, Venkatesh Sampath

Manuscripts, Articles, Book Chapters and Other Papers

BACKGROUND & AIMS: The genetic basis of impaired intestinal barrier function in preterm infants is poorly understood. Variants in single immunoglobulin interleukin1-related receptor, a negative regulator of Toll-like receptor signaling, have been identified in preterm infants with necrotizing enterocolitis. We hypothesized that single immunoglobulin interleukin1-related receptor variants associated with necrotizing enterocolitis impair gut barrier function to pathobionts. The aim of this study was to determine how single immunoglobulin interleukin1-related receptor genetic variants disrupt neonatal intestinal barrier integrity and promote susceptibility to Gram-negative bacteria implicated in sepsis and necrotizing enterocolitis pathogenesis.

METHODS: Transgenic mice and preterm infant-derived enteroids expressing SIGIRR variants …


Gamclust: Identification Of Regulated Metabolic Modules In Bulk, Single Cell And Spatial Gene Expression Data, Anastasiia Gainullina, Evgeniia Chikina, Maxim N Artyomov, Alexey Sergushichev Aug 2026

Gamclust: Identification Of Regulated Metabolic Modules In Bulk, Single Cell And Spatial Gene Expression Data, Anastasiia Gainullina, Evgeniia Chikina, Maxim N Artyomov, Alexey Sergushichev

2020-Current year OA Pubs

MOTIVATION: Metabolism operates as a highly interconnected biochemical network, and its regulation emerges from coordinated changes across many reactions and metabolites. The integration of gene expression profiling data with organism-scale metabolic networks has proven to be a valuable tool for understanding cellular metabolic regulation. However, the increasing complexity of profiling technologies and experimental designs requires the development of specialized tools.

RESULTS: Here, we present GAMclust, an R package implementing and extending the previously published GAM-clustering pipeline for identifying transcriptionally regulated metabolic modules in complex gene expression datasets. GAMclust supports bulk, single-cell, and spatial gene expression profiling. It includes built-in KEGG …


Mitochondrial Trna-Derived Fragments As Candidate Metastasis-Modifying Rna, Katy L. Swancutt, R. Mckinnon Walsh, Sydney Quijano, Emily Schueddig, Devin C. Koestler, Adam D. Scheid, Tony Vanden Bush, Yi Jing, Isidore Rigoutsos, Danny R. Welch Aug 2026

Mitochondrial Trna-Derived Fragments As Candidate Metastasis-Modifying Rna, Katy L. Swancutt, R. Mckinnon Walsh, Sydney Quijano, Emily Schueddig, Devin C. Koestler, Adam D. Scheid, Tony Vanden Bush, Yi Jing, Isidore Rigoutsos, Danny R. Welch

Computational Medicine Center Faculty Papers

UNLABELLED: How mitochondrial DNA (mtDNA) polymorphisms influence complex phenotypes remains poorly understood. Using mitochondrial-nuclear exchange mice, we previously showed that mtDNA single-nucleotide polymorphisms (SNP) modify metastasis, cardiovascular disease, and epigenetic marks independently of metabolic differences. The only mtDNA SNP correlating with these phenotypes resides in the gene encoding mitochondrial transfer RNA (tRNA)-arginine [mt-tRNAArg (UCG), mt-TR], suggesting a role for non-protein-coding loci. In this study, we identify and preliminarily characterize previously undescribed tRNA-derived fragments (tRF) generated from mt-TRs. Northern blotting revealed distinct tRF that are differentially expressed among mtDNA SNPs, between lung and liver, and between sexes. Surprisingly, small RNA sequencing …


Altered Postnatal Chromatin Development In The Nucleus Accumbens Primes Enduring Stress Sensitivity, Rebekah L Rashford, Lisa Z Fang, Michael Deberardine, Hye Ji J Kim, Laura W Hirschfield, Ella Cervi, Mason R Barrett, Jeremy M Thompson, Meaghan C Creed, Catherine Jensen Peña Aug 2026

Altered Postnatal Chromatin Development In The Nucleus Accumbens Primes Enduring Stress Sensitivity, Rebekah L Rashford, Lisa Z Fang, Michael Deberardine, Hye Ji J Kim, Laura W Hirschfield, Ella Cervi, Mason R Barrett, Jeremy M Thompson, Meaghan C Creed, Catherine Jensen Peña

2020-Current year OA Pubs

Early life stress (ELS) sensitizes individuals to subsequent stressors to increase lifetime risk for psychiatric disorders. Within the nucleus accumbens (NAc)-a key limbic and reward-associated brain region-ELS sensitizes both cellular and transcriptional response to later stress, which are programmed by enduring epigenetic changes. Among the histone modifications persistently enriched by ELS in NAc is H3K4me1, which is associated with open chromatin and epigenetic priming of genomic enhancers. Here, we sought to determine whether H3K4me1 enrichment in NAc was sufficient to prime cellular and behavioral responses to adult stress. Viral-mediated overexpression of the histone H3 monomethyltransferase


Heritable Transgenic Schistosomes As A Living Platform For Sars-Cov-2 Neutralizing Antibody Secretion, Wannaporn Ittiprasert, Bruce A Rosa, Sergej Djuranovic, Makedonka Mitreva, Et Al. Aug 2026

Heritable Transgenic Schistosomes As A Living Platform For Sars-Cov-2 Neutralizing Antibody Secretion, Wannaporn Ittiprasert, Bruce A Rosa, Sergej Djuranovic, Makedonka Mitreva, Et Al.

2020-Current year OA Pubs

We report the generation and propagation of not only the first heritable transgenic schistosome line but also a line that secretes a functional therapeutic protein in vivo. Using multiplexed CRISPR/Cas-mediated homology-directed knock-in targeted to a predicted genomic safe-harbor, we inserted a VHH-IgG1 Fc (termed C5-Fc) transgene into Schistosoma mansoni eggs. Single-miracidium infections of Biomphalaria glabrata yielded parental P0 lines; serial passage through snail and mouse hosts produced an F2 cohort in which all parasites carried the C5-Fc transgene and secreted C5-Fc into the murine venous circulation. Molecular assays confirmed chromosomal insertion, germline transmission and systemic secretion. Sera from mice harboring …


Cells And Networks In Flux: Rethinking Ontogenesis And Pathogenesis, Mark L. Tykocinski Aug 2026

Cells And Networks In Flux: Rethinking Ontogenesis And Pathogenesis, Mark L. Tykocinski

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Organ and tissue functions emerge from the coordinated activity of cell networks. Therapeutics that act on pathogenic cell networks, modulating their cellular interplay, follow naturally. Over several decades, our laboratory has developed a series of approaches for rewiring cell networks, culminating in a class of cell surface-directed signal converter proteins (SCPs) that do so by modulating juxtacrine and autocrine signaling in and among their nodal cells. A first such SCP has now produced encouraging clinical data for cancer immunotherapy. Yet, these early network-directed fusion proteins rest on a deliberately simplified picture: discrete end-cell types plugged into graphically tractable networks. That …


Selective Loss Of Primary Cilia And Neurotrophic Signaling In G51d Α-Synuclein Mice Highlights A Common Pathway To Parkinson’S Disease, Yu-En Lin, Ebsy Jaimon, Youngdoo Kim, Annabeth Loftman, Aaran Vijayakumaran, Benjamin D W Belfort, Claire Y Chiang, Benjamin R Arenkiel, Huda Y Zoghbi, Suzanne R Pfeffer Aug 2026

Selective Loss Of Primary Cilia And Neurotrophic Signaling In G51d Α-Synuclein Mice Highlights A Common Pathway To Parkinson’S Disease, Yu-En Lin, Ebsy Jaimon, Youngdoo Kim, Annabeth Loftman, Aaran Vijayakumaran, Benjamin D W Belfort, Claire Y Chiang, Benjamin R Arenkiel, Huda Y Zoghbi, Suzanne R Pfeffer

Duncan NRI Faculty and Staff Publications

Parkinson's disease is characterized by dopaminergic neuron loss and accumulation of α-synuclein aggregates in the brain. G51D α-synuclein knock-in mice provide a genetically and clinically relevant model of disease, exhibiting early olfactory deficits, age-dependent motor impairment, and progressive phospho-α-synuclein accumulation. In multiple Parkinson's disease models, striatal cholinergic and parvalbumin interneurons, as well as astrocytes, lose primary cilia and the neurotrophic signaling needed to sustain dopaminergic neurons. We show here that G51D α-synuclein mice share these phenotypes. Phospho-Ser129 α-synuclein accumulation correlates with cilia loss in cholinergic interneurons but not in spiny projection neurons that accumulate higher phospho-α-synuclein levels. In the piriform …


Hemodynamic Characterization Of Cardiac Dysfunction After Traumatic Brain Injury Using A Controlled Cortical Impact Model In Male Rats, Preston So, Amit Iyengar, Noah Weingarten, Mrinal Patel, Jessica Dominic, Andrew Belec, Joyce Ho, Samuel Shin, Pavan Atluri Aug 2026

Hemodynamic Characterization Of Cardiac Dysfunction After Traumatic Brain Injury Using A Controlled Cortical Impact Model In Male Rats, Preston So, Amit Iyengar, Noah Weingarten, Mrinal Patel, Jessica Dominic, Andrew Belec, Joyce Ho, Samuel Shin, Pavan Atluri

Division of Cardiology Faculty Papers

Traumatic brain injury (TBI) is associated with cardiovascular dysfunction that worsens clinical outcomes, yet the underlying mechanisms are poorly under stood. Clinical studies are limited by heterogeneity, highlighting the need for con trolled experimental models. Controlled cortical impact (CCI) provides precise control of injury severity, and invasive pressure- volume (PV) loop analysis allows detailed hemodynamic assessment. Adult male Wistar rats underwent sham op eration or mild or severe CCI- induced TBI. PV- loop assessment and transtho racic echocardiography were performed at 8 or 24 h after TBI or sham. Serum epinephrine (EPI) and norepinephrine (NE) were quantified by ELISA. At …


Telomere-To-Telomere Genome Assembly And A Pangenome For The Rat, Kai Li, Julia L Ciosek, Sergey Koren, Adam M Phillippy, Yaming Zhu, William A Lauer, Shelise Y Brooks, Gerard G Bouffard, Brandon D Pickett, Beth L Dumont, Melissa L Smith, Theodore S Kalbfleisch, Peter A Doris Aug 2026

Telomere-To-Telomere Genome Assembly And A Pangenome For The Rat, Kai Li, Julia L Ciosek, Sergey Koren, Adam M Phillippy, Yaming Zhu, William A Lauer, Shelise Y Brooks, Gerard G Bouffard, Brandon D Pickett, Beth L Dumont, Melissa L Smith, Theodore S Kalbfleisch, Peter A Doris

The Brown Foundation: Institute of Molecular Medicine

We report a complete rodent telomere-to-telomere genome assembly from the brown rat, Rattus norvegicus. Annotation was enriched with multi-tissue long-read RNA sequencing and uncovered numerous novel genes. Assembly of both sex chromosomes reveals the absence of gene coding in the presumed pseudo-autosomal regions and the presence of centromeric satellite repeats on distal chromosome Y (chrY). We provide evidence of meiotic conjunction between Xp and Yq. The genome assembly reveals several expanded autosomal regions enriched for testis-expressed genes. Finally, we have generated a pangenome from recent high-quality assemblies of 8 distinct inbred rat strain genomes. This allows the strain-specific distribution of …


Th17 Effector Cytokines Induce Shared And Distinct Microglial And Endothelial Cell Responses In A Mouse Model For Post-Streptococcal Encephalitis, Charlotte Wayne, Uğur Akcan, Travis Faust, Violeta Durán-Laforet, Danny Jamoul, Luca Bremner, Nicole Ampatey, Büşra Akcan, Sarah Ho, Bogoljub Ciric, Shannon Delaney, Wendy Vargas, Susan Swedo, Vilas Menon, Dorothy Schafer, Tyler Cutforth, Dritan Agalliu Aug 2026

Th17 Effector Cytokines Induce Shared And Distinct Microglial And Endothelial Cell Responses In A Mouse Model For Post-Streptococcal Encephalitis, Charlotte Wayne, Uğur Akcan, Travis Faust, Violeta Durán-Laforet, Danny Jamoul, Luca Bremner, Nicole Ampatey, Büşra Akcan, Sarah Ho, Bogoljub Ciric, Shannon Delaney, Wendy Vargas, Susan Swedo, Vilas Menon, Dorothy Schafer, Tyler Cutforth, Dritan Agalliu

Department of Neurology Faculty Papers

Group A Streptococcus (GAS) infections cause neuropsychiatric complications in children, but the mechanisms linking peripheral infection to brain dysfunction remain unclear. Using mouse genetics, single-cell RNA sequencing, and spatial transcriptomics, we show that GAS infections induce inflammatory transcriptional programs in microglia and brain endothelial cells (BECs), accompanied by loss of blood-brain barrier (BBB) gene expression in female mice. Spatial transcriptomic analyses reveal that GAS-responsive microglia localize near infiltrating CD4+ T cells. Several microglial chemokines induced in mice are elevated in sera from affected patients. Deletion of GM-CSF in CD4⁺ T cells partially reduces microglial chemokine gene expression, without restoring BBB …


Malt1 Protease Inhibition Restrains Glioblastoma Progression By Reversing Tumor-Associated Macrophage-Dependent Immunosuppression In Mice, Juliana Hofstätter Azambuja, Saigopalakrishna Yerneni, Lisa Maurer, Hannah Crentsil, Gabriela Debom, Linda Klei, Mei Smyers, Chaim Sneiderman, Kristina Schwab, Rajesh Acharya, Aivi Nguyen, Josie Emery, John Little, Jeffrey Meridew, Yijen Lin Wu, Prasanna Ekambaram, Dong Hu, Pete Gough, John Bertin, Ari Melnick, Gary Kohanbash, Riyue Bao, Peter Lucas, Linda Mcallister-Lucas Aug 2026

Malt1 Protease Inhibition Restrains Glioblastoma Progression By Reversing Tumor-Associated Macrophage-Dependent Immunosuppression In Mice, Juliana Hofstätter Azambuja, Saigopalakrishna Yerneni, Lisa Maurer, Hannah Crentsil, Gabriela Debom, Linda Klei, Mei Smyers, Chaim Sneiderman, Kristina Schwab, Rajesh Acharya, Aivi Nguyen, Josie Emery, John Little, Jeffrey Meridew, Yijen Lin Wu, Prasanna Ekambaram, Dong Hu, Pete Gough, John Bertin, Ari Melnick, Gary Kohanbash, Riyue Bao, Peter Lucas, Linda Mcallister-Lucas

College of Life Sciences Faculty Papers

MALT1 protease is an intracellular signaling molecule that promotes tumor progression via cancer cell-intrinsic and cancer cell-extrinsic mechanisms. MALT1 has been mostly studied in lymphocytes, and little is known about its role in tumor-associated macrophages. We show that MALT1 is expressed in glioblastoma (GBM)-associated macrophages. Mechanistically, GBM tumor cells induce a MALT1-NF-κB signaling axis in macrophages, leading to enhanced macrophage migration and polarization toward an immunosuppressive ('M2-like') phenotype. Inactivation of MALT1 protease promotes transcriptional reprogramming that reduces migration and restores a macrophage anti-tumor 'M1-like' phenotype. Preclinical in vivo analysis shows that MALT1 inhibitor treatment results in immuno-reactivity of GBM-associated macrophages …


Translational Reading Frame Predicts The Pathogenicity Of C-Terminal Frameshift Deletions In Mecp2, Jacky Guy, Elena Hein, Beatrice Alexander-Howden, Timur Von Bock Und Polach, Tricia Mathieson, Benjamin P Kleinstiver, Huda Y Zoghbi, Adrian Bird Aug 2026

Translational Reading Frame Predicts The Pathogenicity Of C-Terminal Frameshift Deletions In Mecp2, Jacky Guy, Elena Hein, Beatrice Alexander-Howden, Timur Von Bock Und Polach, Tricia Mathieson, Benjamin P Kleinstiver, Huda Y Zoghbi, Adrian Bird

Duncan NRI Faculty and Staff Publications

Mutations in the MECP2 gene cause the severe neurological disorder Rett syndrome. A cluster of frameshift-causing C-terminal deletions (CTDs) removes ~100 amino acids and accounts for approximately 10% of RTT-causing mutations. Their pathogenicity is unexpected because this C-terminal domain is dispensable in mice. Analysis of pathogenic and benign human MECP2 variants reveals that some individuals with apparently typical CTDs do not develop Rett syndrome, confirming that C-terminal truncations are not intrinsically pathogenic. Using human sequence data and mouse models we show that pathogenicity results from a marked reduction in MeCP2 levels and depends on the presence of a proline proline …


Cigarette Smoke Induces Fasn-Dependent Fatty Acid Metabolic Rewiring To Drive Bladder Cancer Progression, Chandra Sekhar Amara, Danthasinghe Waduge Badrajee Piyarathna, Abu Hena Mostafa Kamal, Yuen San Chan, Karthik Reddy Kami Reddy, Chandra Shekar R Ambati, Mohammed Khurshidul Hassan, Pratik Shriwas, Tanmay Gandhi, Antrix Jain, Tanja Gangnus, Pooja Popli, Roshan Borkar, Sung Wook Kang, Silvia L Summers, Vasanta Putluri, Sandra L Grimm, Sharan Venkatesh, Ningxin Song, Erin H Seeley, Jenna Hedlich-Dwyer, Shu-Hsia Chen, Nupam P Mahajan, Abhinav K Jain, Lacey Elizabeth Dobrolecki, Gabrielle A Wells, Hugo Villanueva, Jenny Li, Xuefeng Liu, Roni J Bollag, Anna Malovannaya, Sung Yun Jung, Hyun-Sung Lee, Irfan A Asangani, Martha K Terris, Chad J Creighton, Leomar Y Ballester, Balasubramanyam Karanam, Suyu Liu, Minjae Lee, Rajeeva R Raju, M Minhaj Siddiqui, Livia S Eberlin, Ramakrishna Kommagani, Arun Sreekumar, Jianjun Gao, Nicolas L Young, H Courtney Hodges, Cristian Coarfa, Natalie R Gassman, Seth P Lerner, Yair Lotan, Nagireddy Putluri Aug 2026

Cigarette Smoke Induces Fasn-Dependent Fatty Acid Metabolic Rewiring To Drive Bladder Cancer Progression, Chandra Sekhar Amara, Danthasinghe Waduge Badrajee Piyarathna, Abu Hena Mostafa Kamal, Yuen San Chan, Karthik Reddy Kami Reddy, Chandra Shekar R Ambati, Mohammed Khurshidul Hassan, Pratik Shriwas, Tanmay Gandhi, Antrix Jain, Tanja Gangnus, Pooja Popli, Roshan Borkar, Sung Wook Kang, Silvia L Summers, Vasanta Putluri, Sandra L Grimm, Sharan Venkatesh, Ningxin Song, Erin H Seeley, Jenna Hedlich-Dwyer, Shu-Hsia Chen, Nupam P Mahajan, Abhinav K Jain, Lacey Elizabeth Dobrolecki, Gabrielle A Wells, Hugo Villanueva, Jenny Li, Xuefeng Liu, Roni J Bollag, Anna Malovannaya, Sung Yun Jung, Hyun-Sung Lee, Irfan A Asangani, Martha K Terris, Chad J Creighton, Leomar Y Ballester, Balasubramanyam Karanam, Suyu Liu, Minjae Lee, Rajeeva R Raju, M Minhaj Siddiqui, Livia S Eberlin, Ramakrishna Kommagani, Arun Sreekumar, Jianjun Gao, Nicolas L Young, H Courtney Hodges, Cristian Coarfa, Natalie R Gassman, Seth P Lerner, Yair Lotan, Nagireddy Putluri

Faculty, Staff and Students Publications

Cigarette smoke promotes bladder tumor growth by enhancing cancer cell survival and proliferation through smoke mediated carcinogens. FASN, a key enzyme in fatty acid synthesis, is dysregulated in many cancers and correlates with aggressive phenotypes. In this study, we demonstrate elevated fatty acid levels and FASN specifically in smokers with bladder cancer. Elevated FASN under smoke exposure imparted epigenetic alterations, particularly histone acetylation, impacts DNA repair and DNA-binding transcription factors which regulate metabolic pathways. Under cigarette smoke, bladder cancer cells undergo a metabolic shift, utilizing glutamine as a major carbon source through reductive carboxylation to fuel fatty acid biosynthesis via …


Non-Enzymatic Hepatic Abhd6 Interacts With Akt-Foxo1 Axis To Regulate Metabolic Health, Guannan Li, Laurence T Maeyens, Jiyuan Yin, Jan-Bernd Funcke, Chanmin Joung, Ruizhen Li, Ziying Xu, Ting Wu, Xin Li, Nisi Jiang, Mbolle Ekane, Maria Paula Lopez, Pengju Cao, Sijia He, Adam B Salmon, S R Murthy Madiraju, Marc Prentki, Juli Bai, James F Nelson, Xianlin Han, Yi Zhu, Shangang Zhao Aug 2026

Non-Enzymatic Hepatic Abhd6 Interacts With Akt-Foxo1 Axis To Regulate Metabolic Health, Guannan Li, Laurence T Maeyens, Jiyuan Yin, Jan-Bernd Funcke, Chanmin Joung, Ruizhen Li, Ziying Xu, Ting Wu, Xin Li, Nisi Jiang, Mbolle Ekane, Maria Paula Lopez, Pengju Cao, Sijia He, Adam B Salmon, S R Murthy Madiraju, Marc Prentki, Juli Bai, James F Nelson, Xianlin Han, Yi Zhu, Shangang Zhao

Children’s Nutrition Research Center Staff Publications

The enzymatic role of ABHD6 in insulin secretion and resistance is well documented. However, its non-enzymatic function, especially its effects on metabolic health, including selective hepatic insulin resistance and metabolic dysfunction-associated steatotic liver disease (MASLD), is poorly understood. To define the role of ABHD6 in liver physiology, we generated liver-specific ABHD6 knockout mice, as well as liver-specific native and enzymatically inactive mutant ABHD6 overexpression mouse models. We demonstrate that non-enzymatic ABHD6 contributes to the regulation of selective hepatic insulin resistance and MASLD progression. Mechanistically, we show that ABHD6 localizes to the nucleus and interacts with Akt/FoxO1 axis to regulate insulin …


Mir155, Triplicated In Down Syndrome, Regulates The Development Of Neural Stem Cells And Gabaergic Interneurons In Alzheimer's Disease Mouse And Human Ipsc Models., Xiaodong Zhu, Jean-Vianney Haure-Mirande, Mesude Bicak, Pengfei Dong, Ilya Kruglikov, Aiqun Li, Aisha Al-Subaie, Valentina Fossati, Scott Noggle, Sam Gandy, Michelle E Ehrlich Aug 2026

Mir155, Triplicated In Down Syndrome, Regulates The Development Of Neural Stem Cells And Gabaergic Interneurons In Alzheimer's Disease Mouse And Human Ipsc Models., Xiaodong Zhu, Jean-Vianney Haure-Mirande, Mesude Bicak, Pengfei Dong, Ilya Kruglikov, Aiqun Li, Aisha Al-Subaie, Valentina Fossati, Scott Noggle, Sam Gandy, Michelle E Ehrlich

Faculty Research 2026

INTRODUCTION: Dysfunctional microRNAs and GABAergic interneurons are features of Alzheimer's disease (AD). The role of neuronal microRNA155 (miR155), elevated in both AD and Down syndrome (DS), remains unknown.

METHODS: We utilized in silico analyses of published databases, MIR155-deleted and -overexpressing human induced pluripotent stem cell (hiPSC)-derived cells, cortical organoids, and amyloid beta precursor protein (APP)/PS1-miR155 knockout mouse.

RESULTS: MIR155HG (miR155 host gene) colocalizes with APP in a neuron-specific, topologically associated domain (TAD) in chromosome 21. In human neural stem cells (NSCs), neurons, and cortical organoids, MIR155 deletion enhanced NSC proliferation and GABAergic interneuron generation. MIR155 overexpression inhibited NSC marker expression …


The Past, The Present, And The Future Of Preclinical Mouse Models For Alzheimer's Disease And Related Dementias., Adrian L Oblak, Michael Sasner, Gregory W. Carter, Gareth R Howell, Stacey J Sukoff Rizzo, Karina Leal, Paul R Territo, Bruce T Lamb Aug 2026

The Past, The Present, And The Future Of Preclinical Mouse Models For Alzheimer's Disease And Related Dementias., Adrian L Oblak, Michael Sasner, Gregory W. Carter, Gareth R Howell, Stacey J Sukoff Rizzo, Karina Leal, Paul R Territo, Bruce T Lamb

Faculty Research 2026

Over the past decade, the Model Organism Development and Evaluation for Late-Onset Alzheimer's Disease (MODEL-AD) consortium has transformed preclinical Alzheimer's disease (AD) research by addressing critical limitations in traditional mouse models that failed to translate to human disease. By leveraging human genetic discoveries, MODEL-AD has developed > 70 genetically informed mouse models, standardized phenotyping pipelines, and an open-access data infrastructure aligned with late-onset AD biology. These models incorporate human risk variants, environmental factors, and aging to better capture disease complexity, including emerging recognition of mixed pathologies such as vascular contributions, Lewy body disease, and TDP-43 proteinopathy. Despite substantial progress, key challenges …


A Collaborative Framework For Uncovering Molecular And Cellular Drivers Of Vcid: Foundations For Future Interventions In Dementia., M Luisa Iruela-Arispe, Jason D Hinman, Andrew C Yang, Fabrice Dabertrand, Jin-Moo Lee, Gareth R Howell, The Vcid Centers Without Walls Network Aug 2026

A Collaborative Framework For Uncovering Molecular And Cellular Drivers Of Vcid: Foundations For Future Interventions In Dementia., M Luisa Iruela-Arispe, Jason D Hinman, Andrew C Yang, Fabrice Dabertrand, Jin-Moo Lee, Gareth R Howell, The Vcid Centers Without Walls Network

Faculty Research 2026

Vascular-related factors are now considered major contributors to most forms of dementia, including Alzheimer's disease. However, the degree to which vascular deficits contribute to risk, onset, and progression of cognitive impairment and dementia has only recently been appreciated. Our understanding of the mechanisms by which vascular deficits drive cognitive decline in dementia is still limited. Further, the testing of therapeutic approaches to prevent vascular deficits to treat dementia are few. These factors motivated the establishment of the Vascular Contributions to Cognitive Impairment and Dementia (VCID) Center Without Walls (CWOW) network, comprising institutes across the United States. We describe the current …


Hyperadhesive Von Willebrand Factor Contributes To Pathogenesis Of Preeclampsia, Yajuan Wang, Chenyu Wang, Katie L Houck, Xiaoli Gao, Yuanyuan Chen, Xin Xu, Xue Zhao, Miguel A Cruz, Shu Zhang, Chester Q Li, Fengxia Xue, Min Li, Swati Shree, Jing-Fei Dong, Cha Han Aug 2026

Hyperadhesive Von Willebrand Factor Contributes To Pathogenesis Of Preeclampsia, Yajuan Wang, Chenyu Wang, Katie L Houck, Xiaoli Gao, Yuanyuan Chen, Xin Xu, Xue Zhao, Miguel A Cruz, Shu Zhang, Chester Q Li, Fengxia Xue, Min Li, Swati Shree, Jing-Fei Dong, Cha Han

Children’s Nutrition Research Center Staff Publications

Background: Preeclampsia is the most common complication of pregnancy, significantly affecting maternal and fetal health, and is characterized by placental and systemic endotheliopathy. Patients with preeclampsia have elevated levels of VWF (von Willebrand Factor), which is associated with poor clinical outcomes. However, whether VWF serves as a marker for endotheliopathy or contributes to the pathogenesis of preeclampsia remains poorly understood.

Methods: We investigated the role of hyperadhesive VWF in the development of preeclampsia by studying patients, evaluating mouse models, and performing in vitro experiments.

Results: We show that patients develop VWF- and fibrin-rich thrombosis in the placenta and have significantly …


Hippo Signaling Regulates Cuticle Pigmentation And Dopamine Metabolism In Drosophila, Shelley B Gibson, Samantha L Deal, Ye-Jin Park, Bo Sun, Yanyan Qi, Jung-Wan Mok, Hyung-Lok Chung, Hongjie Li, Shinya Yamamoto Aug 2026

Hippo Signaling Regulates Cuticle Pigmentation And Dopamine Metabolism In Drosophila, Shelley B Gibson, Samantha L Deal, Ye-Jin Park, Bo Sun, Yanyan Qi, Jung-Wan Mok, Hyung-Lok Chung, Hongjie Li, Shinya Yamamoto

Duncan NRI Faculty and Staff Publications

Pigmentation plays multiple important roles in development, physiology and evolution. Melanization of the insect cuticle requires dopamine as a precursor of melanin and involves key enzymes in dopamine biosynthesis including Tyrosine hydroxylase (TH) and Dopa decarboxylase (Ddc). Some studies have hinted that disruption of the evolutionarily conserved Hippo signaling pathway, which has been primarily studied in the context of tissue growth, may lead to changes in cuticle pigmentation in the fruit fly Drosophila melanogaster. However, to our knowledge, there have not been any systematic investigations into their potential mechanistic links. In this study, we identified that all genes that comprise …


Mll3 And Mll4 Sustain Hematopoietic Stem Cell Multipotency By Opposing A B-Cell Default State, Helen C Wang, Ran Chen, Wei Yang, Rohini Muthukumar, Tingting Hu, Riddhi M Patel, Emily B Casey, Elisabeth Denby, Run Zhang, Guojia Xie, Kai Ge, Grant A Challen, Jeffrey J Bednarski, Jeffrey A Magee Jul 2026

Mll3 And Mll4 Sustain Hematopoietic Stem Cell Multipotency By Opposing A B-Cell Default State, Helen C Wang, Ran Chen, Wei Yang, Rohini Muthukumar, Tingting Hu, Riddhi M Patel, Emily B Casey, Elisabeth Denby, Run Zhang, Guojia Xie, Kai Ge, Grant A Challen, Jeffrey J Bednarski, Jeffrey A Magee

2020-Current year OA Pubs

Hematopoietic stem cells (HSCs) and multipotent progenitors (MPPs) are sustained by networks of transcription factors and epigenetic regulators that prime lineage-specific programs yet maintain multipotency. Two epigenetic regulators, MLL3 and MLL4, play important but distinct roles in maintaining this balance. MLL3 promotes HSC differentiation, whereas MLL4 opposes differentiation. These activities are essential for both normal homeostasis and leukemia suppression, yet it is not clear how MLL3 and MLL4 regulate HSC and MPP gene expression to control HSC/MPP fate decisions. To resolve these mechanisms, we performed an extensive series of single-cell genomic studies after conditionally deleting Mll3, Mll4 or both genes …


Acute Opioid Responses Are Modulated By Dynamic Interactions Of Oprm1 And Fgf12, Paige M Lemen, Alexander S Hatoum, Arpana Agrawal, Et Al. Jul 2026

Acute Opioid Responses Are Modulated By Dynamic Interactions Of Oprm1 And Fgf12, Paige M Lemen, Alexander S Hatoum, Arpana Agrawal, Et Al.

2020-Current year OA Pubs

We generated time-series data for 105 morphine- and naloxone-related traits across ~700 BXD mice (64 diverse strains for both sexes) for 3 hr after a single morphine injection. Variations in responses were mapped using genome sequencing-based genotypes. The locomotor responses to morphine mapped to the µ opioid receptor gene (


Notch Signaling Regulates The Secretion Of Pro-Metastatic Factors In Extracellular Vesicles In Liposarcoma, Menchus Quan, Yi-Kai Liu, Ying Zhao, Madeline Kay, Kai Sun, Timothy P Gavin, Raphael E Pollock, W Andy Tao, Shihuan Kuang Jul 2026

Notch Signaling Regulates The Secretion Of Pro-Metastatic Factors In Extracellular Vesicles In Liposarcoma, Menchus Quan, Yi-Kai Liu, Ying Zhao, Madeline Kay, Kai Sun, Timothy P Gavin, Raphael E Pollock, W Andy Tao, Shihuan Kuang

The Brown Foundation: Institute of Molecular Medicine

Notch signaling is an emerging regulator of liposarcoma (LPS), but its role in mediating communication with the tumor microenvironment (TME) is unclear. Here, we investigate how Notch activation (NICD overexpression) alters the proteomes of LPS-derived extracellular vesicles (EVs). We used quantitative mass spectrometry to profile the EV proteome in multiple contexts: cultured LPS cells, LPS tumor, circulating EVs of LPS-bearing mice, and human LPS samples. We found that Notch signaling increases the secretion of EV proteins that favor tumor progression and metastasis but suppresses immune responses in murine LPS cells. Overlapping murine and human LPS data identifies 18 proteins that …