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Articles 631 - 660 of 10753
Full-Text Articles in Entire DC Network
The Breakdown Of Neurovascular Barriers: Molecular Mechanisms Of Tight Junction Dysfunction, Sowmya Shree Gopal, Mandeep Kaur, Sophie Lanzkron, Amit K. Srivastava
The Breakdown Of Neurovascular Barriers: Molecular Mechanisms Of Tight Junction Dysfunction, Sowmya Shree Gopal, Mandeep Kaur, Sophie Lanzkron, Amit K. Srivastava
Department of Medicine Faculty Papers
The central nervous system (CNS) relies on tightly regulated barriers to maintain homeostasis and protect neural tissue from blood-borne toxins, pathogens, and inflammatory mediators. Tight junctions (TJs) are critical components of the blood-brain barrier (BBB) and blood-spinal cord barrier (BSCB), forming selective paracellular seals that regulate molecular trafficking. These structures comprise transmembrane proteins and cytoplasmic scaffolding proteins, which anchor TJs to the actin cytoskeleton. The spatial organization and function of TJs are dynamically regulated by calcium-dependent signaling, phosphorylation events, and G-protein-mediated pathways, which govern their assembly, disassembly, and response to physiological and pathological stimuli. The integrity of TJ complexes is …
Tgfbr2 Coordinates The Endometrial Response To Estrogen, Regulating Endometrial Hyperplasia And Fertility, Sydney E Parks, Suni Tang, Anna Catherine Unser, Ananya L Bhonsley, Eunbi M Chung, Peixin Jiang, Audrey Savolainen, Vanessa J Joseph, Dominique I Cope, Ramya P Masand, Renata Prunskaite-Hyyryläinen, Diana Monsivais
Tgfbr2 Coordinates The Endometrial Response To Estrogen, Regulating Endometrial Hyperplasia And Fertility, Sydney E Parks, Suni Tang, Anna Catherine Unser, Ananya L Bhonsley, Eunbi M Chung, Peixin Jiang, Audrey Savolainen, Vanessa J Joseph, Dominique I Cope, Ramya P Masand, Renata Prunskaite-Hyyryläinen, Diana Monsivais
Faculty, Staff and Students Publications
Proper endometrial function is critical for establishing and maintaining healthy pregnancies, as well as preventing the pathogenesis of conditions such as endometrial hyperplasia and endometrial cancer. The TGFβ signaling pathway regulates key aspects of endometrial biology, although the direct effects of many individual receptors remain unstudied. In this study, we characterize the role of TGFβR2 within the endometrium using a progesterone receptor-cre conditional knock-out mouse model (Tgfbr2flox/flox;Pgrcre/+; “Tgfbr2 cKO”). We found that conditional deletion of TGFβR2 resulted in female infertility, endometrial hyperplasia, altered estrogen and progesterone response, and, only in bred females, reproductive tract …
Myocardial Lipin1 Protects The Heart Against Ischemic Injury By Preserving Lipid Homeostasis, Jiaxi Guo, Brian N. Finck, Et Al.
Myocardial Lipin1 Protects The Heart Against Ischemic Injury By Preserving Lipid Homeostasis, Jiaxi Guo, Brian N. Finck, Et Al.
2020-Current year OA Pubs
Impaired cardiac lipid metabolism has been reported to cause heart failure. Lipin1, a multifunctional protein, is a phosphatidate phosphatase that generates diacylglycerol from phosphatidic acid and a transcriptional cofactor that regulates lipid metabolism-related gene expression. Here, we investigated the roles of lipin1 in cardiac remodeling after myocardial infarction (MI). The expression levels of lipin1 significantly decreased in cardiomyocytes of the human failing heart and murine ischemic myocardium. Cardiomyocyte-specific Lpin1 knockout (cKO) mice showed left ventricle enlargement and reduced fractional shortening after MI, compared with control mice. This was accompanied by elevated cardiac fibrosis, accumulation of reactive oxygen species, and increased …
Liver Injury In A Preclinical Model Of Short Bowel Syndrome Is Associated With Impaired Autophagy, Daniel M Alligood, Alex Park, Kerry Swanson, Naima Pyarali, Evan Mayse, David M Alvarado, Xiuli Liu, Jae-Sung Kim, Nicholas O Davidson, Deborah C Rubin, Jun Guo, Brad W Warner
Liver Injury In A Preclinical Model Of Short Bowel Syndrome Is Associated With Impaired Autophagy, Daniel M Alligood, Alex Park, Kerry Swanson, Naima Pyarali, Evan Mayse, David M Alvarado, Xiuli Liu, Jae-Sung Kim, Nicholas O Davidson, Deborah C Rubin, Jun Guo, Brad W Warner
2020-Current year OA Pubs
Critical for cellular maintenance and repair, autophagy recycles damaged or redundant cellular components. Dysregulated autophagy is associated with progressive cellular injury in various liver pathologies. However, the role of autophagy in intestinal failure-associated liver disease has not previously been investigated. Using a preclinical murine model of short bowel syndrome, we explored the role of autophagy impairment at early and late time points. Regardless of sex, small bowel resected (SBR) mice demonstrated significant liver injury compared to sham controls, exhibiting elevated serum transaminases, altered liver histology, and increased mRNA expression of endoplasmic reticulum stress marker (Ddit3) and oxidative stress marker (Nqo1). …
Insm1 Governs A Neuronal Progenitor State That Drives Glioblastoma In A Human Stem Cell Model, Patrick A Desouza, Matthew Ishahak, Xuan Qu, Colin Mccornack, Devi Annamalai, Diane D Mao, Rajanikanth Vangipurapu, Yiwei Fu, Alexandre T Vessoni, Ryan T Cleary, Rowland H Han, Punn Augsornworawat, Timothy Woodiwiss, Darby Agovino, Braxton Sizemore, Jessica Kline, Maryam Borhani-Haghighi, Hao Chen, Sangami Pugazenthi, Hiroko Yano, Ting Wang, Luis F Z Batista, Jeffrey R Millman, Albert H Kim
Insm1 Governs A Neuronal Progenitor State That Drives Glioblastoma In A Human Stem Cell Model, Patrick A Desouza, Matthew Ishahak, Xuan Qu, Colin Mccornack, Devi Annamalai, Diane D Mao, Rajanikanth Vangipurapu, Yiwei Fu, Alexandre T Vessoni, Ryan T Cleary, Rowland H Han, Punn Augsornworawat, Timothy Woodiwiss, Darby Agovino, Braxton Sizemore, Jessica Kline, Maryam Borhani-Haghighi, Hao Chen, Sangami Pugazenthi, Hiroko Yano, Ting Wang, Luis F Z Batista, Jeffrey R Millman, Albert H Kim
2020-Current year OA Pubs
Glioblastoma is a lethal brain cancer marked by functional plasticity driven by tumor cell-intrinsic mutations and their interplay with developmental programs. To investigate how canonical glioblastoma mutations promote functional plasticity, we have developed an isogenic human neural stem cell (NSC) model of glioblastoma by sequential addition of TERT promoter, TP53, and PDGFRA point mutations. TP53 loss-of-function increases TERT expression during serial mutagenesis, but only triple mutant NSCs reliably form lethal brain tumors in vivo that recapitulate glioblastoma. Tumor cell evolution triggers stress-related metabolic changes and transitions toward a neuronal progenitor network driven by transcription factor INSM1. INSM1 is highly expressed …
Actin Dysregulation Induces Neuroendocrine Plasticity And Immune Evasion: A Vulnerability Of Small Cell Lung Cancer, Yoojeong Seo, Shengzhe Zhang, Jinho Jang, Kyung-Pil Ko, Kee-Beom Kim, Yuanjian Huang, Dong-Wook Kim, Bongjun Kim, Gengyi Zou, Jie Zhang, Sohee Jun, Wonhong Chu, Nicole A Kirk, Ye Eun Hwang, Young Ho Ban, Shilpa S Dhar, Joseph M Chan, Min Gyu Lee, Charles M Rudin, Kwon-Sik Park, Jae-Il Park
Actin Dysregulation Induces Neuroendocrine Plasticity And Immune Evasion: A Vulnerability Of Small Cell Lung Cancer, Yoojeong Seo, Shengzhe Zhang, Jinho Jang, Kyung-Pil Ko, Kee-Beom Kim, Yuanjian Huang, Dong-Wook Kim, Bongjun Kim, Gengyi Zou, Jie Zhang, Sohee Jun, Wonhong Chu, Nicole A Kirk, Ye Eun Hwang, Young Ho Ban, Shilpa S Dhar, Joseph M Chan, Min Gyu Lee, Charles M Rudin, Kwon-Sik Park, Jae-Il Park
Faculty, Staff and Student Publications
Small cell lung cancer (SCLC) is an aggressive malignancy with limited therapeutic options. Capping protein inhibiting regulator of actin dynamics (CRACD) that promotes actin polymerization, is frequently inactivated in SCLC. However, the role of CRACD loss in SCLC is unknown. Here we show that CRACD depletion drives neuroendocrine (NE) cell plasticity and immune evasion in SCLC. Mechanistically, CRACD inactivation disrupts actin organization, leading to suppression of Yap1-NOTCH signaling and subsequent NE gene upregulation. Simultaneously, CRACD loss drives EZH2-mediated histone methylation via nuclear actin disruption, leading to repression of MHC-I genes and depletion of CD8⁺ T cells. Consequently, CRACD-downregulated tumors exhibit …
Fgf13 Regulates Vgsc-Independent Cardiomyocyte Impulse Propagation Via Cx43 Trafficking, Lala Tanmoy Das, Mattia Malvezzi, Aravind R Gade, Maiko Matsui, Margaret Mckay, Eric Q Wei, Matea J Zelich, Keon Mazdisnian, Jared Kushner, Bi-Xing Chen, Isabella Distefano, Daniel Roybal, Lin Yang, Lisa Stoll, James C Lo, Marian Kalocsay, Fadi G Akar, Steven O Marx, Geoffrey S Pitt
Fgf13 Regulates Vgsc-Independent Cardiomyocyte Impulse Propagation Via Cx43 Trafficking, Lala Tanmoy Das, Mattia Malvezzi, Aravind R Gade, Maiko Matsui, Margaret Mckay, Eric Q Wei, Matea J Zelich, Keon Mazdisnian, Jared Kushner, Bi-Xing Chen, Isabella Distefano, Daniel Roybal, Lin Yang, Lisa Stoll, James C Lo, Marian Kalocsay, Fadi G Akar, Steven O Marx, Geoffrey S Pitt
Faculty, Staff and Student Publications
Background: FHF (fibroblast growth factor homologous factor) variants associate with arrhythmias. Although FHFs are best characterized as regulators of voltage-gated sodium channel (VGSC) gating, recent studies suggest broader, non-VGSC-related functions, including regulation of Cx43 (connexin 43) gap junctions and hemichannels, mechanisms that have generally been understudied or disregarded.
Methods: We assessed cardiac conduction and cardiomyocyte action potentials in mice with constitutive cardiac-specific Fgf13 ablation (cFgf13KO) while targeting Cx43 gap junctions and hemichannels pharmacologically. We characterized FGF13 regulation of Cx43 abundance and subcellular distribution. With proximity labeling proteomics, we investigated novel candidate mechanisms underlying FGF13 regulation of Cx43. …
Increased Intermembrane Space [Ca2+] Drives Mitochondrial Structural Damage In Cpvt, Shanna Hamilton, Radmila Terentyeva, Roland Veress, Fruzsina Perger, Zuzana Nichtova, Mark Bannister, Jinxi Wang, Sage Quiggle, Rachel Battershell, Matthew Gorr, Sandor Györke, Bum-Rak Choi, Christopher George, Andriy Belevych, György Csordás, Dmitry Terentyev
Increased Intermembrane Space [Ca2+] Drives Mitochondrial Structural Damage In Cpvt, Shanna Hamilton, Radmila Terentyeva, Roland Veress, Fruzsina Perger, Zuzana Nichtova, Mark Bannister, Jinxi Wang, Sage Quiggle, Rachel Battershell, Matthew Gorr, Sandor Györke, Bum-Rak Choi, Christopher George, Andriy Belevych, György Csordás, Dmitry Terentyev
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
BACKGROUND: Mitochondrial dysfunction caused by abnormally high RyR2 (ryanodine receptor) activity is a common finding in cardiovascular diseases. Mechanisms linking RyR2 gain of function with mitochondrial remodeling remain elusive. We hypothesized that RyR2 hyperactivity in cardiac disease increases [Ca 2+ ] in the mitochondrial intermembrane space (IMS) and activates the Ca 2+ -sensitive protease calpain, driving remodeling of mitochondrial cristae architecture through cleavage of structural protein OPA1 (optic atrophy protein 1).
METHODS: We generated a highly arrhythmogenic rat model of catecholaminergic polymorphic ventricular tachycardia, induced by RyR2 gain-of-function mutation S2236L(Ser2336Leu)(+/-) . We created a new biosensor to measure IMS-[Ca2+ ] …
Yap-Induced Glycolysis Drives Fibroinflammation And Disrupts Fibroblast Fidelity, Chang-Ru Tsai, Lin Liu, Yi Zhao, Jong H Kim, Paulo Czarnewski, Rich Gang Li, Fansen Meng, Mingjie Zheng, Jeffrey Steimle, Xiaolei Zhao, Francisco Grisanti, Zheng Sun, Jun Wang, Md Abul Hassan Samee, Xiao Li, James F Martin
Yap-Induced Glycolysis Drives Fibroinflammation And Disrupts Fibroblast Fidelity, Chang-Ru Tsai, Lin Liu, Yi Zhao, Jong H Kim, Paulo Czarnewski, Rich Gang Li, Fansen Meng, Mingjie Zheng, Jeffrey Steimle, Xiaolei Zhao, Francisco Grisanti, Zheng Sun, Jun Wang, Md Abul Hassan Samee, Xiao Li, James F Martin
Faculty, Staff and Students Publications
Background: Separation of the pulmonic and systemic circulation is essential for terrestrial life, and mammals have evolved distinct cardiac chambers with specialized structures and functions. Transcriptomics profiling revealed cellular heterogeneity between heart chambers. However, the mechanisms underlying chamber-specific transcriptomic and metabolic differences-and their functional significance-remain poorly understood. The Hippo/YAP (yes-associated protein) pathway is a conserved signaling network that regulates diverse cellular processes. The Hippo kinases inhibit YAP in cardiac fibroblasts (CF) to restrict fibrosis and inflammation. Nonetheless, how YAP regulates the metabolic microenvironment during homeostasis and fibroinflammation remains unclear.
Methods: We investigated YAP and glycolysis activity in the 4 cardiac …
A Mouse Model Of Lipoatrophy Reveals Relationships Between Beige Fat Appearance And Female Fertility, Elizabeth S Anaya, William Dion, Pradip K Saha, Aaron R Cox, Evelyn De Groot, Avery A Ahmed, Jessica B Felix, Bokai Zhu, Stephanie A Pangas, Sean M Hartig
A Mouse Model Of Lipoatrophy Reveals Relationships Between Beige Fat Appearance And Female Fertility, Elizabeth S Anaya, William Dion, Pradip K Saha, Aaron R Cox, Evelyn De Groot, Avery A Ahmed, Jessica B Felix, Bokai Zhu, Stephanie A Pangas, Sean M Hartig
Faculty, Staff and Students Publications
White adipose tissue (WAT) performs vital metabolic and endocrine functions, but roles in female reproduction remain understudied and poorly understood. Here, we report that female mice experiencing progressive lipoatrophy after knockout of Ubc9 in adipocytes (Ubc9fKO) displayed disrupted estrous cycles, reduced ovarian reserve, and subfertility. During aging, female Ubc9fKO mice lose subcutaneous WAT more quickly than their male counterparts and weigh less than littermate controls. Subcutaneous WAT excised from female Ubc9fKO mice strongly enriched for thermogenesis genes generally associated with metabolic benefits. Female Ubc9fKO mice exhibited hypermetabolism and accumulated thermogenic, Uncoupling Protein 1-expressing beige fat cells in residual subcutaneous WAT …
Pitx2 Dosage-Dependent Changes In Pacemaker Cell State Underlie Sinus Node Dysfunction And Atrial Arrhythmias, Lieve E Van Der Maarel, M Ridwane Mungroo, Otto J Mulleners, Mathilde R Rivaud, Arie O Verkerk, Karel Van Duijvenboden, Freek H T Tiel Groenestege, Jeffrey D Steimle, Lianne Fokkert, Corrie De Gier-De Vries, Mischa Klerk, Arie R Boender, James F Martin, Bjarke Jensen, Gerard J J Boink, Harsha D Devalla, Vincent M Christoffels
Pitx2 Dosage-Dependent Changes In Pacemaker Cell State Underlie Sinus Node Dysfunction And Atrial Arrhythmias, Lieve E Van Der Maarel, M Ridwane Mungroo, Otto J Mulleners, Mathilde R Rivaud, Arie O Verkerk, Karel Van Duijvenboden, Freek H T Tiel Groenestege, Jeffrey D Steimle, Lianne Fokkert, Corrie De Gier-De Vries, Mischa Klerk, Arie R Boender, James F Martin, Bjarke Jensen, Gerard J J Boink, Harsha D Devalla, Vincent M Christoffels
Faculty, Staff and Students Publications
Physiologically relevant increases in transcription factor dosage and their role in development and disease remain largely unexplored. Genomic deletions upstream of the Paired-like homeodomain transcription factor gene (PITX2), identified in patients with sinus node dysfunction and atrial fibrillation and modeled in mice (delB), rewire the local epigenetic landscape, increasing PITX2 expression. Here, we demonstrate that pacemaker cardiomyocytes in the embryonic delB sinus node ectopically express PITX2 at physiological dosages in a heterogeneous pattern. The prenatal delB sinus node forms discrete subdomains showing PITX2 dosage-dependent mild or severe loss of pacemaker cardiomyocyte identity. Respective subdomain sizes and severity of sinus node …
Protein-Protein Interaction–Interfering Peptide Rescues Dysregulated Nmda Receptor Signaling, Robert E. Featherstone, Hongbin Li, Ameet S. Sengar, Karin E. Borgmann-Winter, Olya Melnychenko, Lindsey M. Crown, Ray L. Gifford, Felix Amirfathi, Anamika Banerjee, Aivi Tran, Krishna Parekh, Margaret Heller, Wenyu Zhang, Robert J. Gallop, Adam D. Marc, Pragya Komal, Michael W. Salter, Steven J. Siegel, Chang-Gyu Hahn
Protein-Protein Interaction–Interfering Peptide Rescues Dysregulated Nmda Receptor Signaling, Robert E. Featherstone, Hongbin Li, Ameet S. Sengar, Karin E. Borgmann-Winter, Olya Melnychenko, Lindsey M. Crown, Ray L. Gifford, Felix Amirfathi, Anamika Banerjee, Aivi Tran, Krishna Parekh, Margaret Heller, Wenyu Zhang, Robert J. Gallop, Adam D. Marc, Pragya Komal, Michael W. Salter, Steven J. Siegel, Chang-Gyu Hahn
Farber Institute for Neuroscience Faculty Papers
The complex and heterogeneous genetic architecture of neuropsychiatric illnesses compels us to look beyond individual risk genes for therapeutic strategies and target the interactive dynamics and convergence of their protein products. A mechanistic substrate for convergence of synaptic neuropsychiatric risk genes are protein-protein interactions (PPIs) in the N-methyl-D-aspartate receptor (NMDAR) complex. NMDAR hypofunction in schizophrenia is associated with hypoactivity of Src kinase, resulting from convergent alterations in PPIs of Src with its partners. Of these, the association of Src with PSD-95, which inhibits the activity of this kinase in the NMDAR complex, is known to be increased in schizophrenia. Here, …
Discovery Of A Small Molecule Tlr3 Agonist Adjuvant, Branden Lee, Danica Dong, Etsuro Nanishi, John Mark Awad, Kimia Abedi, Yoshine Saito, Francesco Borriello, Soumik Barman, Byron Brook, Aisling Kelly, Manisha Menon, Constance Marques-Mourlet, Maansi Gupta, Ida Lister, Chiwoo Oh, Kevin Lyskawa, Morgan Goetz, Kristina Walker, Wing Ki Cheng, Spencer Brightman, Pankaj Sharma, Timothy O'Meara, Katherine Chew, Daniel Vieira, Kevin Ryff, Cali Sweitzer, Sanya Thomas, Simon Van Haren, Matthew Pettengill, Hyuk-Soo Seo, Sirano Dhe-Paganon, Wei Zhang, Ofer Levy, David Dowling
Discovery Of A Small Molecule Tlr3 Agonist Adjuvant, Branden Lee, Danica Dong, Etsuro Nanishi, John Mark Awad, Kimia Abedi, Yoshine Saito, Francesco Borriello, Soumik Barman, Byron Brook, Aisling Kelly, Manisha Menon, Constance Marques-Mourlet, Maansi Gupta, Ida Lister, Chiwoo Oh, Kevin Lyskawa, Morgan Goetz, Kristina Walker, Wing Ki Cheng, Spencer Brightman, Pankaj Sharma, Timothy O'Meara, Katherine Chew, Daniel Vieira, Kevin Ryff, Cali Sweitzer, Sanya Thomas, Simon Van Haren, Matthew Pettengill, Hyuk-Soo Seo, Sirano Dhe-Paganon, Wei Zhang, Ofer Levy, David Dowling
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Pattern-recognition receptor (PRR) agonists are valuable agents across multiple medical applications, from vaccinology to immune-oncology. However, well-defined and potent small molecule agonists for many PRRs still await discovery and development. Screening of chemical libraries of ~200,000 small molecules for maturation of human monocytic cells by quantifying NF-κB activation and cell adherence was completed. From this screen, we selected a thiazole benzamide derivative, PVP-057, for its robust immunomodulatory properties, low toxicity profile, and concentration-dependent activity. In vitro investigation of pathway and receptor activation reveals that PVP-057 is a Toll-like receptor 3 (TLR3) agonist. As a single-component adjuvant, administered intramuscularly or intradermally …
Revealing The Nervous System Requirements Of Alzheimer Disease Risk Genes In Drosophila, Jennifer M Deger, Shabab B Hannan, Mingxue Gu, Colleen E Strohlein, Lindsey D Goodman, Sasidhar Pasupuleti, Zahid Shaik, Liwen Ma, Yarong Li, Jiayang Li, Morgan C Stephens, Michal Tyrlík, Zhandong Liu, Ismael Al-Ramahi, Juan Botas, Chad A Shaw, Oguz Kanca, Hugo J Bellen, Joshua M Shulman
Revealing The Nervous System Requirements Of Alzheimer Disease Risk Genes In Drosophila, Jennifer M Deger, Shabab B Hannan, Mingxue Gu, Colleen E Strohlein, Lindsey D Goodman, Sasidhar Pasupuleti, Zahid Shaik, Liwen Ma, Yarong Li, Jiayang Li, Morgan C Stephens, Michal Tyrlík, Zhandong Liu, Ismael Al-Ramahi, Juan Botas, Chad A Shaw, Oguz Kanca, Hugo J Bellen, Joshua M Shulman
Faculty, Staff and Students Publications
Most Alzheimer disease (AD) susceptibility genes have poorly understood roles in the central nervous system (CNS). To address this gap, we systematically characterized 100 conserved candidate AD risk genes using a cross-species strategy in the fruit fly, Drosophila melanogaster. Genes were prioritized based primarily on human functional genomic evidence. We generated custom loss-of-function alleles for each of the conserved fly orthologs. Most of the genes are expressed in the adult brain, including 24 neuron- and 13 glia-specific expression patterns. Overall, we identify 50 candidate AD risk gene homologs with requirements for CNS structure or function, including 18 whose loss of …
Resolving The Mysteries Of Brain Clearance And Immune Surveillance, Jonathan Kipnis, Et Al.
Resolving The Mysteries Of Brain Clearance And Immune Surveillance, Jonathan Kipnis, Et Al.
2020-Current year OA Pubs
Recent advances are transforming our understanding of brain fluid dynamics, highlighting cerebrospinal fluid (CSF) flow as a key process in brain waste clearance. While debates persist regarding its anatomical pathways and regulatory mechanisms, certain core principles have become widely accepted. CSF influx occurs primarily along periarterial spaces, solute clearance follows multiple routes, and glymphatic and meningeal lymphatic systems are functionally connected. Brain clearance is influenced by vascular pulsation, neural activity, and sleep. Immune cells at brain-border niches both monitor solute efflux and modulate flow, linking brain clearance to neuroimmune interactions. A deeper understanding of brain clearance could unlock new therapeutic …
A Distinct Pp2a Subunit Regulates Local Protein Phosphorylation At The Axon Initial Segment, Andrew P Anderson, Sanghyun Kim, Allison J Melton, Xiaoyun Ding, Wei Zhang, Alexander B Saltzman, Anna Malovannaya, Matthew N Rasband, Yudong Gao
A Distinct Pp2a Subunit Regulates Local Protein Phosphorylation At The Axon Initial Segment, Andrew P Anderson, Sanghyun Kim, Allison J Melton, Xiaoyun Ding, Wei Zhang, Alexander B Saltzman, Anna Malovannaya, Matthew N Rasband, Yudong Gao
Faculty, Staff and Students Publications
Protein phosphorylation plays a crucial role in regulating the cytoskeletal and membrane proteins at the axon initial segment (AIS). However, our knowledge of AIS-specific kinases and phosphatases is very limited. Here, we report the identification of a protein phosphatase 2A (PP2A) B55 regulatory subunit enriched at the AIS in mice: Ppp2r2c. Our results demonstrate that PP2A-B55 subunits exhibit substantial heterogeneity in their subcellular localization and function. Notably, the Ppp2r2c subunit is selectively concentrated at the AIS, and this enrichment is driven by its unique structure. Utilizing a microelectrode array system (MEA), we show that Ppp2r2c modulates neuronal activity during in …
Restoration Of Sfrp3 Preserves The Neural Stem Cell Pool And Spatial Discrimination Ability In A Mouse Model Of Alzheimer's Disease, Chia-Hsuan Fu, Jin Park, Umberto Tosi, Francisco A Blanco, Manuel Silva-Pérez, Kavitha Muralidharan, Jason C You, Minjung Lee, Gabriel S Stephens, Xiaohong Zhang, Yi Zheng, Helen Scharfman, Kimberley F Tolias, Jeannie Chin
Restoration Of Sfrp3 Preserves The Neural Stem Cell Pool And Spatial Discrimination Ability In A Mouse Model Of Alzheimer's Disease, Chia-Hsuan Fu, Jin Park, Umberto Tosi, Francisco A Blanco, Manuel Silva-Pérez, Kavitha Muralidharan, Jason C You, Minjung Lee, Gabriel S Stephens, Xiaohong Zhang, Yi Zheng, Helen Scharfman, Kimberley F Tolias, Jeannie Chin
Faculty, Staff and Students Publications
Individuals with Alzheimer's disease (AD) have an increased incidence of seizures, which worsen cognitive decline. Using a transgenic mouse model of AD neuropathology that exhibits spontaneous seizures, we previously found that seizure activity stimulates and accelerates depletion of the hippocampal neural stem cell (NSC) pool, which was associated with deficits in neurogenesis-dependent spatial discrimination. However, the precise molecular mechanisms that drive seizure-induced activation and depletion of NSCs are unclear. Here, using mice of both sexes, we performed RNA-sequencing on the hippocampal dentate gyrus and identified differentially expressed regulators of neurogenesis in the Wnt signaling pathway that regulates many aspects of …
Using Gnotobiotic Mice To Decipher Effects Of Gut Microbiome Repair In Undernourished Children On Tuft And Goblet Cell Function, Yi Wang, Hao-Wei Chang, Jiye Cheng, Daniel M Webber, Hannah M Lynn, Matthew C Hibberd, Clara Kao, Ishita Mostafa, Tahmeed Ahmed, Michael J Barratt, Jeffrey I Gordon
Using Gnotobiotic Mice To Decipher Effects Of Gut Microbiome Repair In Undernourished Children On Tuft And Goblet Cell Function, Yi Wang, Hao-Wei Chang, Jiye Cheng, Daniel M Webber, Hannah M Lynn, Matthew C Hibberd, Clara Kao, Ishita Mostafa, Tahmeed Ahmed, Michael J Barratt, Jeffrey I Gordon
2020-Current year OA Pubs
Studies have implicated perturbations in the postnatal development of the gut microbiome as a contributing factor to childhood undernutrition. Compared to a standard ready-to-use supplementary food, a microbiome-directed complementary food (MDCF-2) designed to repair these perturbations produced superior improvements in ponderal and linear growth in clinical trials of Bangladeshi children with moderate acute malnutrition. Here, "reverse translation" experiments are performed where intact fecal microbiomes collected from trial participants before and at the end of treatment are introduced into female gnotobiotic mice just after delivery of their pups. Pups received diets designed to resemble those consumed by children in the trials …
Hif-2-Dependent Regulation Of Pthrp And Paraneoplastic Hypercalcemia In Aggressive Clear-Cell Renal Cell Carcinoma, Arijit Mal, Bingqing Xie, Zane Gray, Charlotte Small, Susmita G Ramanand, Yunpeng Gao, Vanina Toffessi Tcheuyap, Sashi Debnath, Alana Christie, Jeffrey Miyata, Brooklyn Jackson, Hua Zhong, Boning Gao, Jay Lohrey, Naim M Maalouf, Sangeetha M Reddy, John D Minna, Ivan Pedrosa, Xiankai Sun, Ram S Mani, Payal Kapur, James Brugarolas
Hif-2-Dependent Regulation Of Pthrp And Paraneoplastic Hypercalcemia In Aggressive Clear-Cell Renal Cell Carcinoma, Arijit Mal, Bingqing Xie, Zane Gray, Charlotte Small, Susmita G Ramanand, Yunpeng Gao, Vanina Toffessi Tcheuyap, Sashi Debnath, Alana Christie, Jeffrey Miyata, Brooklyn Jackson, Hua Zhong, Boning Gao, Jay Lohrey, Naim M Maalouf, Sangeetha M Reddy, John D Minna, Ivan Pedrosa, Xiankai Sun, Ram S Mani, Payal Kapur, James Brugarolas
Faculty, Staff and Student Publications
Renal cell carcinoma (RCC) patients with hypercalcemia (HC) have worse outcomes. HC often involves PTHrP, and the role of HIF-2 is incompletely understood. Leveraging RCC tumorgraft (TG) models of HC, which were characterized by tumor cell autonomous inflamatory/immune signatures, we show that HIF-2 inhibition with PT2399 frequently normalized calcium, downregulated circulating PTHrP and reduced HIF-2 binding to the PTHLH (PTHrP) promoter. Likely contributing to the selective induction of PTHrP in a subset of HIF-2-dependent tumors, the PTHLH locus was generally more accessible in TG(HC). However, PTHLH chromatin accessibility was grossly unaffected by PT2399, unlike elsewhere (including EPO locus in a …
Impact Of Antibody Fc Engineering On Translational Pharmacology, And Safety: Insights From Industry Case Studies., Frank R Brennan, J Ryan Polli, Jean Sathish, Melissa Ramones, Babette Wolf, Tilman Schlothauer, Shirley J Peters, Curtis C Maier, Changhua Ji, David L Wensel, Derrick Witcher, Patricia C Ryan, T Scott Manetz, Adriano Flora, Brian Soper, Birgit Fogal, Lindsey Dzielak, Xiaoting Wang, Prathap Nagaraja Shastri, Karen Price, Michael Doyle, Nidhi Sharda, Mary Struthers, Maximilian Brinkhaus, Bianca Balbino, Eric Stefanich, Masaki Honda, Jan Terje Andersen, Shermaine Mitchell-Ryan, David P Humphreys
Impact Of Antibody Fc Engineering On Translational Pharmacology, And Safety: Insights From Industry Case Studies., Frank R Brennan, J Ryan Polli, Jean Sathish, Melissa Ramones, Babette Wolf, Tilman Schlothauer, Shirley J Peters, Curtis C Maier, Changhua Ji, David L Wensel, Derrick Witcher, Patricia C Ryan, T Scott Manetz, Adriano Flora, Brian Soper, Birgit Fogal, Lindsey Dzielak, Xiaoting Wang, Prathap Nagaraja Shastri, Karen Price, Michael Doyle, Nidhi Sharda, Mary Struthers, Maximilian Brinkhaus, Bianca Balbino, Eric Stefanich, Masaki Honda, Jan Terje Andersen, Shermaine Mitchell-Ryan, David P Humphreys
Faculty Research 2025
Therapeutic monoclonal antibodies (mAbs) are often designed to not only bind targets via their antigen-binding domains (Fabs) but to also engage with cell surface receptors, FcγRs and FcRn, through their Fc regions, which may result in a variety of functional outcomes, including antibody- dependent cellular cytotoxicity (ADCC), antibody-dependent cellular phagocytosis (ADCP), complement-dependent cytotoxicity (CDC) and alteration of circulating half-lives. Engineering the Fc regions to achieve desirable pharmacology and pharmacokinetics is a widely adopted strategy in drug development. Fc regions can be modified through amino acid substitutions and glycoengineering, resulting in enhanced or reduced effector functions, preferential binding to FcR subtypes, …
Low-Coverage Whole-Genome Sequencing Facilitates Accurate And Cost-Effective Haplotype Reconstruction In Complex Mouse Crosses., Samuel J Widmayer, Lydia K Wooldridge, Emily Swanzey, Mary Barter, Chrystal M Snow, Michael C Saul, Qingchang Meng, Beth L Dumont, Laura G Reinholdt, Daniel M Gatti
Low-Coverage Whole-Genome Sequencing Facilitates Accurate And Cost-Effective Haplotype Reconstruction In Complex Mouse Crosses., Samuel J Widmayer, Lydia K Wooldridge, Emily Swanzey, Mary Barter, Chrystal M Snow, Michael C Saul, Qingchang Meng, Beth L Dumont, Laura G Reinholdt, Daniel M Gatti
Faculty Research 2025
The search for the underlying genetic contributions to complex traits and diseases relies on accurate genetic data from populations of interest. Outbred populations, like the Diversity Outbred (DO), are commonly genotyped using commercial SNP arrays, such as the Giga Mouse Universal Genotyping Array (GigaMUGA). However, array genotypes are expensive to collect, subject to significant ascertainment bias, and too sparse to capture the genetic structure of highly recombined mouse crosses. We investigated the efficacy of sequencing-based genotyping by comparing genotyping results between the GigaMUGA, double-digest restriction-site associated DNA sequencing (ddRADseq), and low-coverage whole-genome sequencing (lcWGS). We aligned reads at ~ 1× …
Harmonizing Mouse Anatomy Terminology: A Common Language?, Jesús Ruberte, Paul N Schofield, John P Sundberg, Sergi Olvera-Maneu, Ana Carretero
Harmonizing Mouse Anatomy Terminology: A Common Language?, Jesús Ruberte, Paul N Schofield, John P Sundberg, Sergi Olvera-Maneu, Ana Carretero
Faculty Research 2025
The mouse remains the principal animal model for investigating human diseases due, among other reasons, to its anatomical similarities to humans. Despite its widespread use, the assumption that mouse anatomy is a fully established field with standardized and universally accepted terminology is misleading. Many phenotypic anatomical annotations do not refer to the authority or origin of the terminology used, while others inappropriately adopt outdated or human-centric nomenclature. This inconsistency is further exacerbated by the limited availability of comprehensive anatomical references, often compelling researchers to rely on "do-it-yourself" anatomical interpretations when characterizing disease models-an approach that increases the risk of inaccuracies …
Pak1 Inhibitor Nvs-Pak1-1 Preserves Dendritic Spines In Amyloid/Tau Exposed Neurons And 5xfad Mice., Tao Yang, Hasi Huhe, Sean-Paul Williams, Sukhneet Kaur, Yeonglong Albert Ay, Zachary W Davis-Gilbert, Gregory Cary, Carolyn Paisie, Robert R Butler, Jesse Wiley, Ranjita Betarbet, Haian Fu, Duc Duong, Nicholas T Seyfried, Karina Leal, Gregory W. Carter, Aled Edwards, Allan I Levey, Jacob L Capener, David H Drewry, Mohammad A Hossain, Hans J Oh, Alison D Axtman, Stacey J Sukoff Rizzo, Frank M Longo, The Emory-Sage-Sgc-Jax Treat-Ad Center
Pak1 Inhibitor Nvs-Pak1-1 Preserves Dendritic Spines In Amyloid/Tau Exposed Neurons And 5xfad Mice., Tao Yang, Hasi Huhe, Sean-Paul Williams, Sukhneet Kaur, Yeonglong Albert Ay, Zachary W Davis-Gilbert, Gregory Cary, Carolyn Paisie, Robert R Butler, Jesse Wiley, Ranjita Betarbet, Haian Fu, Duc Duong, Nicholas T Seyfried, Karina Leal, Gregory W. Carter, Aled Edwards, Allan I Levey, Jacob L Capener, David H Drewry, Mohammad A Hossain, Hans J Oh, Alison D Axtman, Stacey J Sukoff Rizzo, Frank M Longo, The Emory-Sage-Sgc-Jax Treat-Ad Center
Faculty Research 2025
INTRODUCTION: Synaptic spine loss in Alzheimer's disease (AD) contributes to cognitive decline. p21-activated kinase 1 (PAK1), a regulator of spine integrity, is aberrantly activated in AD. We investigated whether PAK1 inhibition might preserve dendritic spines in vitro and in vivo.
METHODS: Oligomeric amyloid beta (oAβ) or tau (oTau) were applied to hippocampal neurons ± NVS-PAK1-1, a selective PAK1 inhibitor. NVS-PAK1-1 was orally administered to 5xFAD mice. The effects of NVS-PAK1-1 treatment on PAK1 activity, spine density, and the proteome were assessed using phospho-PAK1 (pPAK1) western blotting, Golgi staining, and mass spectrometry for proteomic analyses.
RESULTS: NVS-PAK1-1 prevented oAβ and oTau-induced …
Integrated Phenotypic And Proteomic Screening Identifies Top-Tier Alzheimer's Disease Therapeutic Targets., Gregory Cary, Qianjin Li, Jesse C Wiley, Carolyn Paisie, Yuhong Du, Elizabeth L Zoeller, Duc Duong, Haian Fu, Nicholas T Seyfried, Allan I Levey, Ranjita Betarbet, Gregory W. Carter, The Emory-Sage-Sgc-Jax Treat-Ad Center
Integrated Phenotypic And Proteomic Screening Identifies Top-Tier Alzheimer's Disease Therapeutic Targets., Gregory Cary, Qianjin Li, Jesse C Wiley, Carolyn Paisie, Yuhong Du, Elizabeth L Zoeller, Duc Duong, Haian Fu, Nicholas T Seyfried, Allan I Levey, Ranjita Betarbet, Gregory W. Carter, The Emory-Sage-Sgc-Jax Treat-Ad Center
Faculty Research 2025
INTRODUCTION: Alzheimer's disease (AD) is a complex neurodegenerative disorder. Hundreds of therapeutic targets have been nominated through genetic and multi-omic studies, but effective prioritization remains a major bottleneck.
METHODS: We applied an integrative screening framework to assess 29 candidate targets from risk-enriched biological domains. Using disease-relevant murine BV2 microglial cell lines with stable Psen2 knockdown, we performed small interfering RNA-mediated perturbations followed by cellular phenotypic assays and quantitative proteomics.
RESULTS: Twenty-five candidate targets significantly altered at least one phenotype, with stronger effects in Psen2 knockdown cells. Integrated proteomic analyses identified several perturbations that reversed AD-associated molecular patterns. Five targets-Ap2a2, Pdhb, …
Molecular Response To The Non-Lytic Peptide Bac7 (1-35) Triggers Disruption Of Klebsiella Pneumoniae Biofilm, Robert L Beckman I V, Berta Martinez, Flor Z. Santiago, Gabriela N. Echeverria, Bruno V. Pinheiro, Marcelo D. T. Torres, Logan Suits, Shantal Garcia, Paeton L. Wantuch, Cesar De La Fuente-Nunez, Prahathees Eswara, David A. Rosen, Renee M. Fleeman
Molecular Response To The Non-Lytic Peptide Bac7 (1-35) Triggers Disruption Of Klebsiella Pneumoniae Biofilm, Robert L Beckman I V, Berta Martinez, Flor Z. Santiago, Gabriela N. Echeverria, Bruno V. Pinheiro, Marcelo D. T. Torres, Logan Suits, Shantal Garcia, Paeton L. Wantuch, Cesar De La Fuente-Nunez, Prahathees Eswara, David A. Rosen, Renee M. Fleeman
2020-Current year OA Pubs
Klebsiella pneumoniae is becoming increasingly difficult to treat as multidrug-resistant (MDR) strains become more prevalent. The formation of biofilm heightens this threat by embedding bacterial cells in a polysaccharide-rich matrix that limits antibiotic penetration. Here we dissect the anti-biofilm bovine host-defense cathelicidin peptide fragment bac7 (1-35), exploring its anti-biofilm mechanism, evaluating its ability to curb colonization of the vital organs by hypervirulent K. pneumoniae, and testing its breadth of activity against diverse clinical isolates. Transcriptomic profiling revealed that bac7 (1-35) simultaneously compromises the bacterial membrane and inhibits ribosomal function, a dual assault that precipitates rapid biofilm collapse and blocks bacterial …
The Misadventures Of Popcorn And Zelda, Lori Lynne Kullberg
The Misadventures Of Popcorn And Zelda, Lori Lynne Kullberg
Open Access Theses & Dissertations
The Value of Animal Protagonists for Young Readers in Children’s Literature. This series is about my rescue cat and dog, Popcorn and Zelda, who are brought together at different ages and stages of their life. Witnessing their sweet interaction, mischievous playfulness, and close bond, I am immediately provided the inspiration for the early reader series of my thesis, The Misadventures of Popcorn and Zelda. My animals offer a constant stream of entertainment in watching how they interact with not only one another, but with me, as well. Oftentimes, Popcorn and Zelda’s behavior mirrors how I think a person would act …
Improved Accuracy For Myocardial Blood Flow Mapping With Deep Learning-Enabled Cmr Arterial Spin Labeling (Deepmasl): Validation By Microsphere In Vivo, Ran Li, Caleb Berberet, Qi Huang, Pamela K Woodard, Jie Zheng
Improved Accuracy For Myocardial Blood Flow Mapping With Deep Learning-Enabled Cmr Arterial Spin Labeling (Deepmasl): Validation By Microsphere In Vivo, Ran Li, Caleb Berberet, Qi Huang, Pamela K Woodard, Jie Zheng
2020-Current year OA Pubs
BACKGROUND: Current myocardial arterial spin labeling (ASL) methods are sensitive to noise (background and physiology), which limits the accuracy of myocardial blood flow (MBF) measurement. In this study, we demonstrated a new deep learning-enabled myocardial ASL approach (DeepMASL) and evaluated its accuracy to quantify MBF in a canine model of coronary arterial disease in vivo. The reference method was invasive microsphere measurements.
METHODS: Eighteen mongrel dogs were divided into two groups: healthy (n = 9) and coronary stenosis (n = 9). The latter was induced in an open-chest model with 3 types of stenosis: 50% (n= 3), 70% (n = …
Muc15 Ectodomain Architecture Regulates Integrin Clustering To Control Cancer Metastasis, Simei Zhang, Guy M Genin, Et Al.
Muc15 Ectodomain Architecture Regulates Integrin Clustering To Control Cancer Metastasis, Simei Zhang, Guy M Genin, Et Al.
2020-Current year OA Pubs
Cancer metastasis is governed by physical cues at the cell-matrix interface, with matrix stiffness, ligand density, and topography established as key determinants. Here, a fourth critical factor in cancer metastasis, the architecture of the cell-surface glycocalyx is identified. Using MUC15 as a representative small glycoprotein, mathematical modeling and domain truncation experiments are combined to show that glycoprotein size distribution governs integrin adhesion states and metastatic outcomes. MUC15 localizes to focal adhesions and interact with integrins, while larger glycoproteins such as MUC1 are sterically excluded. These physical effects, rather than intracellular signaling, dictate adhesion state transitions: removing MUC15's ectodomain eliminated its …
Obesity Promotes Conserved Inflammatory And Metabolic Transcriptional Programs In Colon Tumors: Evidence From Mouse Models And The Colocare Study Patient Cohort, Elaine M Glenny, Adetunji T Toriola, Et Al.
Obesity Promotes Conserved Inflammatory And Metabolic Transcriptional Programs In Colon Tumors: Evidence From Mouse Models And The Colocare Study Patient Cohort, Elaine M Glenny, Adetunji T Toriola, Et Al.
2020-Current year OA Pubs
BACKGROUND: The global prevalence of obesity, an established risk and progression factor for colon cancer, is high and rising. Unfortunately, the mechanisms underlying the obesity-colon cancer association are incompletely understood, and new molecular targets enabling more effective intervention strategies to break the obesity-colon cancer link are urgently needed.
OBJECTIVES: This study integrated RNA sequencing data from mouse and human colon tumor samples, as well as human adipose samples, to rigorously establish obesity-associated transcriptomic signatures conserved between the 2 species.
METHODS: We employed a mouse colon cancer model with colonoscopy-guided orthotopic transplantation of syngeneic Apc
RESULTS: Diet-induced obesity reduced survival in …
In Situ Structural Mechanism Of Epothilone-B-Induced Cns Axon Regeneration, Satish Bodakuntla, Kenichiro Taira, Yurika Yamada, Pelayo Alvarez-Brecht, A King Cada, Nirakar Basnet, Rui Zhang, Antonio Martinez-Sanchez, Christian Biertümpfel, Naoko Mizuno
In Situ Structural Mechanism Of Epothilone-B-Induced Cns Axon Regeneration, Satish Bodakuntla, Kenichiro Taira, Yurika Yamada, Pelayo Alvarez-Brecht, A King Cada, Nirakar Basnet, Rui Zhang, Antonio Martinez-Sanchez, Christian Biertümpfel, Naoko Mizuno
2020-Current year OA Pubs
Axons in the adult central nervous system (CNS) do not regenerate following injury, in contrast to neurons in the peripheral nervous system and neuronal growth during embryonic development. The molecular mechanisms that prevent regeneration of neurons in the CNS remain largely unknown