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Articles 3121 - 3150 of 5130

Full-Text Articles in Medicine and Health Sciences

Adar1 Deletion Causes Degeneration Of The Exocrine Pancreas Via Mavs-Dependent Interferon Signaling, Dhwani N Rupani, Fredrik I Thege, Vidhi Chandra, Hajar Rajaei, Robert W Cowan, Sonja M Wörmann, Olivereen Le Roux, Prerna Malaney, Sara L Manning, Jack Hashem, Jennifer Bailey-Lundberg, Andrew D Rhim, Florencia Mcallister Jan 2023

Adar1 Deletion Causes Degeneration Of The Exocrine Pancreas Via Mavs-Dependent Interferon Signaling, Dhwani N Rupani, Fredrik I Thege, Vidhi Chandra, Hajar Rajaei, Robert W Cowan, Sonja M Wörmann, Olivereen Le Roux, Prerna Malaney, Sara L Manning, Jack Hashem, Jennifer Bailey-Lundberg, Andrew D Rhim, Florencia Mcallister

Faculty, Staff and Student Publications

Adenosine deaminase acting on RNA 1 (ADAR1) is an RNA-binding protein that deaminates adenosine (A) to inosine (I). A-to-I editing alters post-transcriptional RNA processing, making ADAR1 a crucial regulator of gene expression. Consequently, Adar1 has been implicated in organogenesis. To determine the role of Adar1 in pancreatic development and homeostasis, we conditionally deleted Adar1 from the murine pancreas (Ptf1aCre/+; Adar1Fl/Fl). The resulting mice had stunted growth, likely due to malabsorption associated with exocrine pancreatic insufficiency. Analyses of pancreata revealed ductal cell expansion, heightened interferon-stimulated gene expression and an increased influx of immune cells. Concurrent deletion of Adar1 and Mavs, a …


A Gain-Of-Function Tpc2 Variant R210c Increases Affinity To Pi(3,5)P2 And Causes Lysosome Acidification And Hypopigmentation, Qiaochu Wang, Zengge Wang, Yizhen Wang, Zhan Qi, Dayong Bai, Chentong Wang, Yuanying Chen, Wenjian Xu, Xili Zhu, Jaepyo Jeon, Jian Xiong, Chanjuan Hao, Michael Xi Zhu, Aihua Wei, Wei Li Jan 2023

A Gain-Of-Function Tpc2 Variant R210c Increases Affinity To Pi(3,5)P2 And Causes Lysosome Acidification And Hypopigmentation, Qiaochu Wang, Zengge Wang, Yizhen Wang, Zhan Qi, Dayong Bai, Chentong Wang, Yuanying Chen, Wenjian Xu, Xili Zhu, Jaepyo Jeon, Jian Xiong, Chanjuan Hao, Michael Xi Zhu, Aihua Wei, Wei Li

Faculty, Staff and Student Publications

Albinism is a group of inherited disorders mainly affecting skin, hair and eyes. Here we identify a de novo point mutation, p.R210C, in the TPCN2 gene which encodes Two Pore Channel 2 (TPC2) from a patient with albinism. TPC2 is an endolysosome and melanosome localized non-selective cation channel involved in regulating pigment production. Through inside-out recording of plasma membrane targeted TPC2 and direct recording of enlarged endolysosomal vacuoles, we reveal that the R210C mutant displays constitutive channel activation and markedly increased affinity to PI(3,5)P2. Mice harboring the homologous mutation, R194C, also exhibit hypopigmentation in the fur and skin, as well …


Excessive Mechanotransduction In Sensory Neurons Causes Joint Contractures, Shang Ma, Adrienne E Dubin, Luis O Romero, Meaghan Loud, Alexandra Salazar, Sarah Chu, Nikola Klier, Sameer Masri, Yunxiao Zhang, Yu Wang, Alex T Chesler, Katherine A Wilkinson, Valeria Vásquez, Kara L Marshall, Ardem Patapoutian Jan 2023

Excessive Mechanotransduction In Sensory Neurons Causes Joint Contractures, Shang Ma, Adrienne E Dubin, Luis O Romero, Meaghan Loud, Alexandra Salazar, Sarah Chu, Nikola Klier, Sameer Masri, Yunxiao Zhang, Yu Wang, Alex T Chesler, Katherine A Wilkinson, Valeria Vásquez, Kara L Marshall, Ardem Patapoutian

Faculty, Staff and Student Publications

Distal arthrogryposis (DA) is a collection of rare disorders that are characterized by congenital joint contractures. Most DA mutations are in muscle- and joint-related genes, and the anatomical defects originate cell-autonomously within the musculoskeletal system. However, gain-of-function mutations in PIEZO2, a principal mechanosensor in somatosensation, cause DA subtype 5 (DA5) through unknown mechanisms. We show that expression of a gain-of-function PIEZO2 mutation in proprioceptive sensory neurons that mainly innervate muscle spindles and tendons is sufficient to induce DA5-like phenotypes in mice. Overactive PIEZO2 causes anatomical defects through increased activity within the peripheral nervous system during postnatal development. Furthermore, botulinum toxin …


Expansion And Mechanistic Insights Into De Novo Deaf1 Variants In Deaf1-Associated Neurodevelopmental Disorders, Stacey R Mcgee, Shivakumar Rajamanickam, Sandeep Adhikari, Oluwatosin C Falayi, Theresa A Wilson, Brian J Shayota, Jessica A Cooley Coleman, Cindy Skinner, Raymond C Caylor, Roger E Stevenson, Caio Robledo D' Angioli Costa Quaio, Berenice Cunha Wilke, Jennifer M Bain, Kwame Anyane-Yeboa, Kaitlyn Brown, John M Greally, Emilia K Bijlsma, Claudia A L Ruivenkamp, Keren Politi, Lydia A Arbogast, Michael W Collard, Jodi I Huggenvik, Sarah H Elsea, Philip J Jensik Jan 2023

Expansion And Mechanistic Insights Into De Novo Deaf1 Variants In Deaf1-Associated Neurodevelopmental Disorders, Stacey R Mcgee, Shivakumar Rajamanickam, Sandeep Adhikari, Oluwatosin C Falayi, Theresa A Wilson, Brian J Shayota, Jessica A Cooley Coleman, Cindy Skinner, Raymond C Caylor, Roger E Stevenson, Caio Robledo D' Angioli Costa Quaio, Berenice Cunha Wilke, Jennifer M Bain, Kwame Anyane-Yeboa, Kaitlyn Brown, John M Greally, Emilia K Bijlsma, Claudia A L Ruivenkamp, Keren Politi, Lydia A Arbogast, Michael W Collard, Jodi I Huggenvik, Sarah H Elsea, Philip J Jensik

Faculty, Staff and Students Publications

De novo deleterious and heritable biallelic mutations in the DNA binding domain (DBD) of the transcription factor deformed epidermal autoregulatory factor 1 (DEAF1) result in a phenotypic spectrum of disorders termed DEAF1-associated neurodevelopmental disorders (DAND). RNA-sequencing using hippocampal RNA from mice with conditional deletion of Deaf1 in the central nervous system indicate that loss of Deaf1 activity results in the altered expression of genes involved in neuronal function, dendritic spine maintenance, development, and activity, with reduced dendritic spines in hippocampal regions. Since DEAF1 is not a dosage-sensitive gene, we assessed the dominant negative activity of previously identified de novo variants …


Trogocytosis Of Neurons And Glial Cells By Microglia In A Healthy Adult Macaque Retina, Megan Goyal, Andrea S Bordt, Jay Neitz, David W Marshak Jan 2023

Trogocytosis Of Neurons And Glial Cells By Microglia In A Healthy Adult Macaque Retina, Megan Goyal, Andrea S Bordt, Jay Neitz, David W Marshak

Faculty, Staff and Student Publications

Microglial cells are the primary resident immune cells in the retina. In healthy adults, they are ramified; that is, they have extensive processes that move continually. In adult retinas, microglia maintain the normal structure and function of neurons and other glial cells, but the mechanism underlying this process is not well-understood. In the mouse hippocampus, microglia engulf small pieces of axons and presynaptic terminals via a process called trogocytosis. Here we report that microglia in the adult macaque retina also engulf pieces of neurons and glial cells, but not at sites of synapses. We analyzed microglia in a volume of …


Tlr5 Agonists Enhance Anti-Tumor Immunity And Overcome Resistance To Immune Checkpoint Therapy, Caleb Gonzalez, Sarah Williamson, Seth T Gammon, Sarah Glazer, Joon Haeng Rhee, David Piwnica-Worms Jan 2023

Tlr5 Agonists Enhance Anti-Tumor Immunity And Overcome Resistance To Immune Checkpoint Therapy, Caleb Gonzalez, Sarah Williamson, Seth T Gammon, Sarah Glazer, Joon Haeng Rhee, David Piwnica-Worms

Faculty, Staff and Student Publications

Primary and adaptive resistance to immune checkpoint therapies (ICT) represent a considerable obstacle to achieving enhanced overall survival. Innate immune activators have been actively pursued for their antitumor potential. Herein we report that a syngeneic 4T1 mammary carcinoma murine model for established highly-refractory triple negative breast cancer showed enhanced survival when treated intra-tumorally with either the TLR5 agonist flagellin or CBLB502, a flagellin derivative, in combination with antibodies targeting CTLA-4 and PD-1. Long-term survivor mice showed immunologic memory upon tumor re-challenge and a distinctive immune activating cytokine profile that engaged both innate and adaptive immunity. Low serum levels of G-CSF …


Dry Eye Disease In Mice Activates Adaptive Corneal Epithelial Regeneration Distinct From Constitutive Renewal In Homeostasis, Joseph B Lin, Xiaolei Shen, Charles W Pfeifer, Fion Shiau, Andrea Santeford, Philip A Ruzycki, Brian S Clark, Qin Liu, Andrew J W Huang, Rajendra S Apte Jan 2023

Dry Eye Disease In Mice Activates Adaptive Corneal Epithelial Regeneration Distinct From Constitutive Renewal In Homeostasis, Joseph B Lin, Xiaolei Shen, Charles W Pfeifer, Fion Shiau, Andrea Santeford, Philip A Ruzycki, Brian S Clark, Qin Liu, Andrew J W Huang, Rajendra S Apte

2020-Current year OA Pubs

Many epithelial compartments undergo constitutive renewal in homeostasis but activate unique regenerative responses following injury. The clear corneal epithelium is crucial for vision and is renewed from limbal stem cells (LSCs). Using single-cell RNA sequencing, we profiled the mouse corneal epithelium in homeostasis, aging, diabetes, and dry eye disease (DED), where tear deficiency predisposes the cornea to recurrent injury. In homeostasis, we capture the transcriptional states that accomplish continuous tissue turnover. We leverage our dataset to identify candidate genes and gene networks that characterize key stages across homeostatic renewal, including markers for LSCs. In aging and diabetes, there were only …


A Molecular Switch Between Mammalian Mll Complexes Dictates Response To Menin-Mll Inhibition, Yadira M Soto-Feliciano, Francisco J Sánchez-Rivera, Florian Perner, Douglas W Barrows, Edward R Kastenhuber, Yu-Jui Ho, Thomas Carroll, Yijun Xiong, Disha Anand, Alexey A Soshnev, Leah Gates, Mary Clare Beytagh, David Cheon, Shengqing Gu, X Shirley Liu, Andrei V Krivtsov, Maximiliano Meneses, Elisa De Stanchina, Richard M Stone, Scott A Armstrong, Scott W Lowe, C David Allis Jan 2023

A Molecular Switch Between Mammalian Mll Complexes Dictates Response To Menin-Mll Inhibition, Yadira M Soto-Feliciano, Francisco J Sánchez-Rivera, Florian Perner, Douglas W Barrows, Edward R Kastenhuber, Yu-Jui Ho, Thomas Carroll, Yijun Xiong, Disha Anand, Alexey A Soshnev, Leah Gates, Mary Clare Beytagh, David Cheon, Shengqing Gu, X Shirley Liu, Andrei V Krivtsov, Maximiliano Meneses, Elisa De Stanchina, Richard M Stone, Scott A Armstrong, Scott W Lowe, C David Allis

Faculty, Staff and Student Publications

Menin interacts with oncogenic MLL1-fusion proteins, and small molecules that disrupt these associations are in clinical trials for leukemia treatment. By integrating chromatin-focused and genome-wide CRISPR screens with genetic, pharmacologic, and biochemical approaches, we discovered a conserved molecular switch between the MLL1-Menin and MLL3/4-UTX chromatin-modifying complexes that dictates response to Menin-MLL inhibitors. MLL1-Menin safeguards leukemia survival by impeding the binding of the MLL3/4-UTX complex at a subset of target gene promoters. Disrupting the Menin-MLL1 interaction triggers UTX-dependent transcriptional activation of a tumor-suppressive program that dictates therapeutic responses in murine and human leukemia. Therapeutic reactivation of this program using CDK4/6 inhibitors …


Identification Of Collaborative Cross Mouse Strains Permissive To Salmonella Enterica Serovar Typhi Infection, Kishore Alugupalli, Sudeep Kothari, Matthew P Cravens, Justin A Walker, Darren T Dougharty, Gregory S. Dickinson, Louis A Gatto, Andreas J Bäumler, Tamding Wangdi, Darla R Miller, Fernando Pardo-Manuel De Villena, Linda D Siracusa Jan 2023

Identification Of Collaborative Cross Mouse Strains Permissive To Salmonella Enterica Serovar Typhi Infection, Kishore Alugupalli, Sudeep Kothari, Matthew P Cravens, Justin A Walker, Darren T Dougharty, Gregory S. Dickinson, Louis A Gatto, Andreas J Bäumler, Tamding Wangdi, Darla R Miller, Fernando Pardo-Manuel De Villena, Linda D Siracusa

Department of Microbiology and Immunology Faculty Papers

Salmonella enterica serovar Typhi is the causative agent of typhoid fever restricted to humans and does not replicate in commonly used inbred mice. Genetic variation in humans is far greater and more complex than that in a single inbred strain of mice. The Collaborative Cross (CC) is a large panel of recombinant inbred strains which has a wider range of genetic diversity than laboratory inbred mouse strains. We found that the CC003/Unc and CC053/Unc strains are permissive to intraperitoneal but not oral route of S. Typhi infection and show histopathological changes characteristic of human typhoid. These CC strains are immunocompetent, …


A Cdh3-Β-Catenin-Laminin Signaling Axis In A Subset Of Breast Tumor Leader Cells Control Leader Cell Polarization And Directional Collective Migration, Priscilla Y Hwang, Jairaj Mathur, Yanyang Cao, Jose Almeida, Jiayu Ye, Vasilios Morikis, Daphne Cornish, Maria Clarke, Sheila A Stewart, Amit Pathak, Gregory D Longmore Jan 2023

A Cdh3-Β-Catenin-Laminin Signaling Axis In A Subset Of Breast Tumor Leader Cells Control Leader Cell Polarization And Directional Collective Migration, Priscilla Y Hwang, Jairaj Mathur, Yanyang Cao, Jose Almeida, Jiayu Ye, Vasilios Morikis, Daphne Cornish, Maria Clarke, Sheila A Stewart, Amit Pathak, Gregory D Longmore

2020-Current year OA Pubs

Carcinoma dissemination can occur when heterogeneous tumor and tumor-stromal cell clusters migrate together via collective migration. Cells at the front lead and direct collective migration, yet how these leader cells form and direct migration are not fully appreciated. From live videos of primary mouse and human breast tumor organoids in a 3D microfluidic system mimicking native breast tumor microenvironment, we developed 3D computational models, which hypothesize that leader cells need to generate high protrusive forces and overcome extracellular matrix (ECM) resistance at the leading edge. From single-cell sequencing analyses, we find that leader cells are heterogeneous and identify and isolate …


Discovery And Characterization Of A New Class Of O-Linking Oligosaccharyltransferases From The Moraxellaceae Family, Cory J Knoot, Paeton L Wantuch, Lloyd S Robinson, David A Rosen, Nichollas E Scott, Christian M Harding Jan 2023

Discovery And Characterization Of A New Class Of O-Linking Oligosaccharyltransferases From The Moraxellaceae Family, Cory J Knoot, Paeton L Wantuch, Lloyd S Robinson, David A Rosen, Nichollas E Scott, Christian M Harding

2020-Current year OA Pubs

Bacterial protein glycosylation is commonly mediated by oligosaccharyltransferases (OTases) that transfer oligosaccharides en bloc from preassembled lipid-linked precursors to acceptor proteins. Natively, O-linking OTases usually transfer a single repeat unit of the O-antigen or capsular polysaccharide to the side chains of serine or threonine on acceptor proteins. Three major families of bacterial O-linking OTases have been described: PglL, PglS, and TfpO. TfpO is limited to transferring short oligosaccharides both in its native context and when heterologously expressed in glycoengineered Escherichia coli. On the other hand, PglL and PglS can transfer long-chain polysaccharides when expressed in glycoengineered E. coli. Herein, we …


Silencing Mir-146a-5p Protects Against Injury-Induced Osteoarthritis In Mice, Haocheng Qin, Cuicui Wang, Yonghua He, Aiwu Lu, Tiandao Li, Bo Zhang, Jie Shen Jan 2023

Silencing Mir-146a-5p Protects Against Injury-Induced Osteoarthritis In Mice, Haocheng Qin, Cuicui Wang, Yonghua He, Aiwu Lu, Tiandao Li, Bo Zhang, Jie Shen

2020-Current year OA Pubs

Osteoarthritis (OA), the most prevalent joint disease and the leading cause of disability, remains an incurable disease largely because the etiology and pathogenesis underlying this degenerative process are poorly understood. Low-grade inflammation within joints is a well-established factor that disturbs joint homeostasis and leads to an imbalance between anabolic and catabolic processes in articular cartilage; however, the complexity of the network between inflammatory factors that often involves positive and negative feedback loops makes current anti-cytokine therapy ineffective. MicroRNAs (miRNAs) have emerged as key regulators to control inflammation, and aberrant miRNAs expression has recently been linked to OA pathophysiology. In the …


Antagonistic Effect Of Cyclin-Dependent Kinases And A Calcium-Dependent Phosphatase On Polyglutamine-Expanded Androgen Receptor Toxic Gain Of Function, Diana Piol, Laura Tosatto, Emanuela Zuccaro, Eric N Anderson, Antonella Falconieri, Maria J Polanco, Caterina Marchioretti, Federica Lia, Joseph White, Elisa Bregolin, Giovanni Minervini, Sara Parodi, Xavier Salvatella, Giorgio Arrigoni, Andrea Ballabio, Albert R La Spada, Silvio C E Tosatto, Fabio Sambataro, Diego L Medina, Udai B Pandey, Manuela Basso, Maria Pennuto Jan 2023

Antagonistic Effect Of Cyclin-Dependent Kinases And A Calcium-Dependent Phosphatase On Polyglutamine-Expanded Androgen Receptor Toxic Gain Of Function, Diana Piol, Laura Tosatto, Emanuela Zuccaro, Eric N Anderson, Antonella Falconieri, Maria J Polanco, Caterina Marchioretti, Federica Lia, Joseph White, Elisa Bregolin, Giovanni Minervini, Sara Parodi, Xavier Salvatella, Giorgio Arrigoni, Andrea Ballabio, Albert R La Spada, Silvio C E Tosatto, Fabio Sambataro, Diego L Medina, Udai B Pandey, Manuela Basso, Maria Pennuto

Duncan NRI Faculty and Staff Publications

Spinal and bulbar muscular atrophy is caused by polyglutamine (polyQ) expansions in androgen receptor (AR), generating gain-of-function toxicity that may involve phosphorylation. Using cellular and animal models, we investigated what kinases and phosphatases target polyQ-expanded AR, whether polyQ expansions modify AR phosphorylation, and how this contributes to neurodegeneration. Mass spectrometry showed that polyQ expansions preserve native phosphorylation and increase phosphorylation at conserved sites controlling AR stability and transactivation. In small-molecule screening, we identified that CDC25/CDK2 signaling could enhance AR phosphorylation, and the calcium-sensitive phosphatase calcineurin had opposite effects. Pharmacologic and genetic manipulation of these kinases and phosphatases modified polyQ-expanded AR …


Establishing 3d Endometrial Organoids From The Mouse Uterus, Suni Tang, Sydney E Parks, Zian Liao, Dominique I Cope, Sarah E Blutt, Diana Monsivais Jan 2023

Establishing 3d Endometrial Organoids From The Mouse Uterus, Suni Tang, Sydney E Parks, Zian Liao, Dominique I Cope, Sarah E Blutt, Diana Monsivais

Faculty, Staff and Students Publications

Endometrial tissue lines the inner cavity of the uterus and is under the cyclical control of estrogen and progesterone. It is a tissue that is composed of luminal and glandular epithelium, a stromal compartment, a vascular network, and a complex immune cell population. Mouse models have been a powerful tool to study the endometrium, revealing critical mechanisms that control implantation, placentation, and cancer. The recent development of 3D endometrial organoid cultures presents a state-of-the-art model to dissect the signaling pathways that underlie endometrial biology. Establishing endometrial organoids from genetically engineered mouse models, analyzing their transcriptomes, and visualizing their morphology at …


An Entosis-Like Process Induces Mitotic Disruption In Pals1 Microcephaly Pathogenesis, Noelle A Sterling, Jun Young Park, Raehee Park, Seo-Hee Cho, Seonhee Kim Jan 2023

An Entosis-Like Process Induces Mitotic Disruption In Pals1 Microcephaly Pathogenesis, Noelle A Sterling, Jun Young Park, Raehee Park, Seo-Hee Cho, Seonhee Kim

Center for Translational Medicine Faculty Papers

Entosis is cell cannibalism utilized by tumor cells to engulf live neighboring cells for pro- or anti-tumorigenic purposes. It is unknown whether this extraordinary cellular event can be pathogenic in other diseases such as microcephaly, a condition characterized by a smaller than normal brain at birth. We find that mice mutant for the human microcephaly-causing gene Pals1, which exhibit diminished cortices due to massive cell death, also exhibit nuclei enveloped by plasma membranes inside of dividing cells. These cell-in-cell (CIC) structures represent a dynamic process accompanied by lengthened mitosis and cytokinesis abnormalities. As shown in tumor cells, ROCK inhibition completely …


The Lysosomal Ragulator Complex Activates Nlrp3 Inflammasome In Vivo Via Hdac6, Kohei Tsujimoto, Tatsunori Jo, Daiki Nagira, Hachiro Konaka, Jeong Hoon Park, Shin-Ichiro Yoshimura, Akinori Ninomiya, Fuminori Sugihara, Takehiro Hirayama, Eri Itotagawa, Yusei Matsuzaki, Yuki Takaichi, Wataru Aoki, Shotaro Saita, Shuhei Nakamura, Andrea Ballabio, Shigeyuki Nada, Masato Okada, Hyota Takamatsu, Atsushi Kumanogoh Jan 2023

The Lysosomal Ragulator Complex Activates Nlrp3 Inflammasome In Vivo Via Hdac6, Kohei Tsujimoto, Tatsunori Jo, Daiki Nagira, Hachiro Konaka, Jeong Hoon Park, Shin-Ichiro Yoshimura, Akinori Ninomiya, Fuminori Sugihara, Takehiro Hirayama, Eri Itotagawa, Yusei Matsuzaki, Yuki Takaichi, Wataru Aoki, Shotaro Saita, Shuhei Nakamura, Andrea Ballabio, Shigeyuki Nada, Masato Okada, Hyota Takamatsu, Atsushi Kumanogoh

Duncan NRI Faculty and Staff Publications

The cellular activation of the NLRP3 inflammasome is spatiotemporally orchestrated by various organelles, but whether lysosomes contribute to this process remains unclear. Here, we show the vital role of the lysosomal membrane-tethered Ragulator complex in NLRP3 inflammasome activation. Deficiency of Lamtor1, an essential component of the Ragulator complex, abrogated NLRP3 inflammasome activation in murine macrophages and human monocytic cells. Myeloid-specific Lamtor1-deficient mice showed marked attenuation of NLRP3-associated inflammatory disease severity, including LPS-induced sepsis, alum-induced peritonitis, and monosodium urate (MSU)-induced arthritis. Mechanistically, Lamtor1 interacted with both NLRP3 and histone deacetylase 6 (HDAC6). HDAC6 enhances the interaction between Lamtor1 and NLRP3, resulting …


Treatment Strategies And Mechanisms Associated With The Prevention Of Nash-Associated Hcc By A Toll-Like Receptor 4 Inhibitor, Suet-Ying Kwan, Alyssa N Slayden, Aubrey R Coronado, Rosamaria C Marquez, Huiqin Chen, Peng Wei, Michelle I Savage, Lana A Vornik, Jennifer T Fox, Shizuko Sei, Dong Liang, Heather L Stevenson, Gregory K Wilkerson, Mihai Gagea, Powel H Brown, Laura Beretta Jan 2023

Treatment Strategies And Mechanisms Associated With The Prevention Of Nash-Associated Hcc By A Toll-Like Receptor 4 Inhibitor, Suet-Ying Kwan, Alyssa N Slayden, Aubrey R Coronado, Rosamaria C Marquez, Huiqin Chen, Peng Wei, Michelle I Savage, Lana A Vornik, Jennifer T Fox, Shizuko Sei, Dong Liang, Heather L Stevenson, Gregory K Wilkerson, Mihai Gagea, Powel H Brown, Laura Beretta

Faculty, Staff and Student Publications

UNLABELLED: We evaluated the cancer preventive efficacy of TAK-242, an inhibitor of Toll-like receptor 4 (TLR4), in a mouse model of hepatocellular carcinoma (HCC) occurring in the context of nonalcoholic steatohepatitis (NASH). We also assessed the cellular events associated with the preventive treatment efficacy. We tested oral administration of TAK-242, at clinically relevant but toxicity-reducing doses and scheduling, in mice with hepatocyte-specific deletion of Pten (HepPten-). The optimal dose and oral gavage formulation of TAK-242 were determined to be 30 mg/kg in 5% DMSO in 30% 2-hydroxypropyl-β-cyclodextrin. Daily oral administration of 30 mg/kg TAK-242 over 18 weeks was well tolerated …


Cissus Quadrangularis (Hadjod) Inhibits Rankl-Induced Osteoclastogenesis And Augments Bone Health In An Estrogen-Deficient Preclinical Model Of Osteoporosis Via Modulating The Host Osteoimmune System, Zaffar Azam, Leena Sapra, Kalpana Baghel, Niharika Sinha, Rajesh K Gupta, Vandana Soni, Chaman Saini, Pradyumna K Mishra, Rupesh K Srivastava Jan 2023

Cissus Quadrangularis (Hadjod) Inhibits Rankl-Induced Osteoclastogenesis And Augments Bone Health In An Estrogen-Deficient Preclinical Model Of Osteoporosis Via Modulating The Host Osteoimmune System, Zaffar Azam, Leena Sapra, Kalpana Baghel, Niharika Sinha, Rajesh K Gupta, Vandana Soni, Chaman Saini, Pradyumna K Mishra, Rupesh K Srivastava

Faculty, Staff and Student Publications

Osteoporosis is a systemic skeletal disease characterised by low bone mineral density (BMD), degeneration of bone micro-architecture, and impaired bone strength. Cissus quadrangularis (CQ), popularly known as Hadjod (bone setter) in Hindi, is a traditional medicinal herb exhibiting osteoprotective potential in various bone diseases, especially osteoporosis and fractures. However, the cellular mechanisms underpinning its direct effect on bone health through altering the host immune system have never been elucidated. In the present study, we interrogated the osteoprotective and immunoporotic (the osteoprotective potential of CQ via modulating the host immune system) potential of CQ in preventing inflammatory bone loss under oestrogen-deficient …


Notch Blockade Specifically In Bone Marrow-Derived Fsp-1-Positive Cells Ameliorates Renal Fibrosis, Yongdong Wu, Ming Liang, Fengzhang Huang, Owen H Cheng, Xiaoguang Xiao, Tae Hoon Lee, Luan Truong, Jizhong Cheng Jan 2023

Notch Blockade Specifically In Bone Marrow-Derived Fsp-1-Positive Cells Ameliorates Renal Fibrosis, Yongdong Wu, Ming Liang, Fengzhang Huang, Owen H Cheng, Xiaoguang Xiao, Tae Hoon Lee, Luan Truong, Jizhong Cheng

Faculty, Staff and Students Publications

Background: The infiltration of inflammatory cells during a kidney injury stimulates myofibroblast activation leading to kidney fibrosis. Fibroblast-specific protein 1 (FSP-1) positive cells have been reported as either myofibroblasts or monocytes during tissue fibrosis. The functions of FSP-1+ cells that are associated with the development of renal fibrosis and the signaling pathways that regulate FSP-1+ cell activation have not been well defined. Methods: In mice with unilateral ureteral obstruction (UUO), we characterized FSP-1+ cells and determined the role of the Notch signaling pathway in the activation of bone marrow-derived FSP-1+ cells during kidney fibrosis. Results: In kidneys from mice with …


Feasibility And Preclinical Efficacy Of Cd7-Unedited Cd7 Car T Cells For T Cell Malignancies, Norihiro Watanabe, Feiyan Mo, Rong Zheng, Royce Ma, Vanesa C Bray, Dayenne G Van Leeuwen, Juntima Sritabal-Ramirez, Hongxiang Hu, Sha Wang, Birju Mehta, Madhuwanti Srinivasan, Lauren D Scherer, Huimin Zhang, Sachin G Thakkar, Laquisa C Hill, Helen E Heslop, Chonghui Cheng, Malcolm K Brenner, Maksim Mamonkin Jan 2023

Feasibility And Preclinical Efficacy Of Cd7-Unedited Cd7 Car T Cells For T Cell Malignancies, Norihiro Watanabe, Feiyan Mo, Rong Zheng, Royce Ma, Vanesa C Bray, Dayenne G Van Leeuwen, Juntima Sritabal-Ramirez, Hongxiang Hu, Sha Wang, Birju Mehta, Madhuwanti Srinivasan, Lauren D Scherer, Huimin Zhang, Sachin G Thakkar, Laquisa C Hill, Helen E Heslop, Chonghui Cheng, Malcolm K Brenner, Maksim Mamonkin

Faculty, Staff and Students Publications

Chimeric antigen receptor (CAR)-mediated targeting of T lineage antigens for the therapy of blood malignancies is frequently complicated by self-targeting of CAR T cells or their excessive differentiation driven by constant CAR signaling. Expression of CARs targeting CD7, a pan-T cell antigen highly expressed in T cell malignancies and some myeloid leukemias, produces robust fratricide and often requires additional mitigation strategies, such as CD7 gene editing. In this study, we show fratricide of CD7 CAR T cells can be fully prevented using ibrutinib and dasatinib, the pharmacologic inhibitors of key CAR/CD3ζ signaling kinases. Supplementation with ibrutinib and dasatinib rescued the …


A Low-Fat/Sucrose Diet Rich In Complex Carbohydrates Reverses High-Fat/Sucrose Diet-Induced Corneal Dysregulation, Prince K Akowuah, Carolina Lema, Rolando E Rumbaut, Alan R Burns Jan 2023

A Low-Fat/Sucrose Diet Rich In Complex Carbohydrates Reverses High-Fat/Sucrose Diet-Induced Corneal Dysregulation, Prince K Akowuah, Carolina Lema, Rolando E Rumbaut, Alan R Burns

Faculty, Staff and Students Publications

High-fat/sucrose diet feeding in mice causes loss of corneal nerve function and impairs corneal wound healing. While changing to a diet with a low fat/sugar composition and enrichments in complex carbohydrates mitigates the reduction in nerve function, it remains to be determined if it has an effect on corneal wound healing. In this study, 6-week-old C57BL/6 male mice were fed either a normal diet or a high-fat/sucrose diet for 20 weeks. A third group (diet reversal) was placed on a high-fat/sucrose diet for 10 weeks followed by a normal diet for an additional 10 weeks. A central corneal epithelial abrasion …


Microenvironmental Ammonia Enhances T Cell Exhaustion In Colorectal Cancer, Hannah N Bell, Amanda K Huber, Rashi Singhal, Navyateja Korimerla, Ryan J Rebernick, Roshan Kumar, Marwa O El-Derany, Peter Sajjakulnukit, Nupur K Das, Samuel A Kerk, Sumeet Solanki, Jadyn G James, Donghwan Kim, Li Zhang, Brandon Chen, Rohit Mehra, Timothy L Frankel, Balázs Győrffy, Eric R Fearon, Marina Pasca Di Magliano, Frank J Gonzalez, Ruma Banerjee, Daniel R Wahl, Costas A Lyssiotis, Michael Green, Yatrik M Shah Jan 2023

Microenvironmental Ammonia Enhances T Cell Exhaustion In Colorectal Cancer, Hannah N Bell, Amanda K Huber, Rashi Singhal, Navyateja Korimerla, Ryan J Rebernick, Roshan Kumar, Marwa O El-Derany, Peter Sajjakulnukit, Nupur K Das, Samuel A Kerk, Sumeet Solanki, Jadyn G James, Donghwan Kim, Li Zhang, Brandon Chen, Rohit Mehra, Timothy L Frankel, Balázs Győrffy, Eric R Fearon, Marina Pasca Di Magliano, Frank J Gonzalez, Ruma Banerjee, Daniel R Wahl, Costas A Lyssiotis, Michael Green, Yatrik M Shah

Faculty, Staff and Student Publications

Effective therapies are lacking for patients with advanced colorectal cancer (CRC). The CRC tumor microenvironment has elevated metabolic waste products due to altered metabolism and proximity to the microbiota. The role of metabolite waste in tumor development, progression, and treatment resistance is unclear. We generated an autochthonous metastatic mouse model of CRC and used unbiased multi-omic analyses to reveal a robust accumulation of tumoral ammonia. The high ammonia levels induce T cell metabolic reprogramming, increase exhaustion, and decrease proliferation. CRC patients have increased serum ammonia, and the ammonia-related gene signature correlates with altered T cell response, adverse patient outcomes, and …


Increased Camkk2 Expression Is An Adaptive Response That Maintains The Fitness Of Tumor-Infiltrating Natural Killer Cells, Patrick K Juras, Luigi Racioppi, Debarati Mukherjee, Sandeep Artham, Xia Gao, Laura Akullian D'Agostino, Ching-Yi Chang, Donald P Mcdonnell Jan 2023

Increased Camkk2 Expression Is An Adaptive Response That Maintains The Fitness Of Tumor-Infiltrating Natural Killer Cells, Patrick K Juras, Luigi Racioppi, Debarati Mukherjee, Sandeep Artham, Xia Gao, Laura Akullian D'Agostino, Ching-Yi Chang, Donald P Mcdonnell

Faculty, Staff and Students Publications

Calcium/calmodulin-dependent protein kinase kinase 2 (CaMKK2) is a key regulator of energy homeostasis in several cell types. Expression of this enzyme in tumor cells promotes proliferation and migration, and expression in tumor-associated immune cells facilitates M2 macrophage polarization and the development of myeloid-derived suppressor cells. Thus, there has been interest in developing CaMKK2 inhibitors as potential anticancer therapeutics. One impediment to clinical development of these agents is that the roles of CaMKK2 in other cellular compartments within the tumor immune microenvironment remain to be established. We report herein that CaMKK2 is expressed at low basal levels in natural killer (NK) …


Antisense Oligonucleotide Therapy Rescues Disturbed Brain Rhythms And Sleep In Juvenile And Adult Mouse Models Of Angelman Syndrome, Dongwon Lee, Wu Chen, Heet Naresh Kaku, Xinming Zhuo, Eugene S Chao, Armand Soriano, Allen Kuncheria, Stephanie Flores, Joo Hyun Kim, Armando Rivera, Frank Rigo, Paymaan Jafar-Nejad, Arthur L Beaudet, Matthew S Caudill, Mingshan Xue Jan 2023

Antisense Oligonucleotide Therapy Rescues Disturbed Brain Rhythms And Sleep In Juvenile And Adult Mouse Models Of Angelman Syndrome, Dongwon Lee, Wu Chen, Heet Naresh Kaku, Xinming Zhuo, Eugene S Chao, Armand Soriano, Allen Kuncheria, Stephanie Flores, Joo Hyun Kim, Armando Rivera, Frank Rigo, Paymaan Jafar-Nejad, Arthur L Beaudet, Matthew S Caudill, Mingshan Xue

Faculty, Staff and Students Publications

UBE3A encodes ubiquitin protein ligase E3A, and in neurons its expression from the paternal allele is repressed by the UBE3A antisense transcript (UBE3A-ATS). This leaves neurons susceptible to loss-of-function of maternal UBE3A. Indeed, Angelman syndrome, a severe neurodevelopmental disorder, is caused by maternal UBE3A deficiency. A promising therapeutic approach to treating Angelman syndrome is to reactivate the intact paternal UBE3A by suppressing UBE3A-ATS. Prior studies show that many neurological phenotypes of maternal Ube3a knockout mice can only be rescued by reinstating Ube3a expression in early development, indicating a restricted therapeutic window for Angelman syndrome. Here, we …


Mitochondrial Dysfunction Reactivates Α-Fetoprotein Expression That Drives Copper-Dependent Immunosuppression In Mitochondrial Disease Models, Kimberly A Jett, Zakery N Baker, Amzad Hossain, Aren Boulet, Paul A Cobine, Sagnika Ghosh, Philip Ng, Orhan Yilmaz, Kris Barreto, John Decoteau, Karen Mochoruk, George N Ioannou, Christopher Savard, Sai Yuan, Osama Hmh Abdalla, Christopher Lowden, Byung-Eun Kim, Hai-Ying Mary Cheng, Brendan J Battersby, Vishal M Gohil, Scot C Leary Jan 2023

Mitochondrial Dysfunction Reactivates Α-Fetoprotein Expression That Drives Copper-Dependent Immunosuppression In Mitochondrial Disease Models, Kimberly A Jett, Zakery N Baker, Amzad Hossain, Aren Boulet, Paul A Cobine, Sagnika Ghosh, Philip Ng, Orhan Yilmaz, Kris Barreto, John Decoteau, Karen Mochoruk, George N Ioannou, Christopher Savard, Sai Yuan, Osama Hmh Abdalla, Christopher Lowden, Byung-Eun Kim, Hai-Ying Mary Cheng, Brendan J Battersby, Vishal M Gohil, Scot C Leary

Faculty, Staff and Students Publications

Signaling circuits crucial to systemic physiology are widespread, yet uncovering their molecular underpinnings remains a barrier to understanding the etiology of many metabolic disorders. Here, we identified a copper-linked signaling circuit activated by disruption of mitochondrial function in the murine liver or heart that resulted in atrophy of the spleen and thymus and caused a peripheral white blood cell deficiency. We demonstrated that the leukopenia was caused by α-fetoprotein, which required copper and the cell surface receptor CCR5 to promote white blood cell death. We further showed that α-fetoprotein expression was upregulated in several cell types upon inhibition of oxidative …


Follistatin Regulates The Specification Of The Apical Cochlea Responsible For Low-Frequency Hearing In Mammals, Hei Yeun Koo, Min-A Kim, Hyehyun Min, Jae Yeon Hwang, Meenakshi Prajapati-Dinubila, Kwan Soo Kim, Martin M Matzuk, Juw Won Park, Angelika Doetzlhofer, Un-Kyung Kim, Jinwoong Bok Jan 2023

Follistatin Regulates The Specification Of The Apical Cochlea Responsible For Low-Frequency Hearing In Mammals, Hei Yeun Koo, Min-A Kim, Hyehyun Min, Jae Yeon Hwang, Meenakshi Prajapati-Dinubila, Kwan Soo Kim, Martin M Matzuk, Juw Won Park, Angelika Doetzlhofer, Un-Kyung Kim, Jinwoong Bok

Faculty, Staff and Students Publications

The cochlea's ability to discriminate sound frequencies is facilitated by a special topography along its longitudinal axis known as tonotopy. Auditory hair cells located at the base of the cochlea respond to high-frequency sounds, whereas hair cells at the apex respond to lower frequencies. Gradual changes in morphological and physiological features along the length of the cochlea determine each region's frequency selectivity, but it remains unclear how tonotopy is established during cochlear development. Recently, sonic hedgehog (SHH) was proposed to initiate the establishment of tonotopy by conferring regional identity to the primordial cochlea. Here, using mouse genetics, we provide in …


Inherited Human Itk Deficiency Impairs Ifn-Γ Immunity And Underlies Tuberculosis, Masato Ogishi, Rui Yang, Rémy Rodriguez, Dominic P Golec, Emmanuel Martin, Quentin Philippot, Jonathan Bohlen, Simon J Pelham, Andrés Augusto Arias, Taushif Khan, Manar Ata, Fatima Al Ali, Flore Rozenberg, Xiao-Fei Kong, Maya Chrabieh, Candice Laine, Wei-Te Lei, Ji Eun Han, Yoann Seeleuthner, Zenia Kaul, Emmanuelle Jouanguy, Vivien Béziat, Leila Youssefian, Hassan Vahidnezhad, V Koneti Rao, Bénédicte Neven, Claire Fieschi, Davood Mansouri, Mohammad Shahrooei, Sevgi Pekcan, Gulsum Alkan, Melike Emiroğlu, Hüseyin Tokgöz, Jouni Uitto, Fabian Hauck, Jacinta Bustamante, Laurent Abel, Sevgi Keles, Nima Parvaneh, Nico Marr, Pamela L Schwartzberg, Sylvain Latour, Jean-Laurent Casanova, Stéphanie Boisson-Dupuis Jan 2023

Inherited Human Itk Deficiency Impairs Ifn-Γ Immunity And Underlies Tuberculosis, Masato Ogishi, Rui Yang, Rémy Rodriguez, Dominic P Golec, Emmanuel Martin, Quentin Philippot, Jonathan Bohlen, Simon J Pelham, Andrés Augusto Arias, Taushif Khan, Manar Ata, Fatima Al Ali, Flore Rozenberg, Xiao-Fei Kong, Maya Chrabieh, Candice Laine, Wei-Te Lei, Ji Eun Han, Yoann Seeleuthner, Zenia Kaul, Emmanuelle Jouanguy, Vivien Béziat, Leila Youssefian, Hassan Vahidnezhad, V Koneti Rao, Bénédicte Neven, Claire Fieschi, Davood Mansouri, Mohammad Shahrooei, Sevgi Pekcan, Gulsum Alkan, Melike Emiroğlu, Hüseyin Tokgöz, Jouni Uitto, Fabian Hauck, Jacinta Bustamante, Laurent Abel, Sevgi Keles, Nima Parvaneh, Nico Marr, Pamela L Schwartzberg, Sylvain Latour, Jean-Laurent Casanova, Stéphanie Boisson-Dupuis

Department of Dermatology and Cutaneous Biology Faculty Papers

Inborn errors of IFN-γ immunity can underlie tuberculosis (TB). We report three patients from two kindreds without EBV viremia or disease but with severe TB and inherited complete ITK deficiency, a condition associated with severe EBV disease that renders immunological studies challenging. They have CD4+ αβ T lymphocytopenia with a concomitant expansion of CD4-CD8- double-negative (DN) αβ and Vδ2- γδ T lymphocytes, both displaying a unique CD38+CD45RA+T-bet+EOMES- phenotype. Itk-deficient mice recapitulated an expansion of the γδ T and DN αβ T lymphocyte populations in the thymus and spleen, respectively. Moreover, the patients' T lymphocytes secrete small amounts of IFN-γ in …


Fn14-Directed Dart Nanoparticles Selectively Target Neoplastic Cells In Preclinical Models Of Triple-Negative Breast Cancer Brain Metastasis, Christine P Carney, Anshika Kapur, Pavlos Anastasiadis, Rodney M Ritzel, Chixiang Chen, Graeme F Woodworth, Jeffrey A Winkles, Anthony J Kim Jan 2023

Fn14-Directed Dart Nanoparticles Selectively Target Neoplastic Cells In Preclinical Models Of Triple-Negative Breast Cancer Brain Metastasis, Christine P Carney, Anshika Kapur, Pavlos Anastasiadis, Rodney M Ritzel, Chixiang Chen, Graeme F Woodworth, Jeffrey A Winkles, Anthony J Kim

Faculty, Staff and Student Publications

Triple-negative breast cancer (TNBC) patients with brain metastasis (BM) face dismal prognosis due to the limited therapeutic efficacy of the currently available treatment options. We previously demonstrated that paclitaxel-loaded PLGA−PEG nanoparticles (NPs) directed to the Fn14 receptor, termed “DARTs”, are more efficacious than Abraxane—an FDA-approved paclitaxel nanoformulation—following intravenous delivery in a mouse model of TNBC BM. However, the precise basis for this difference was not investigated. Here, we further examine the utility of the DART drug delivery platform in complementary xenograft and syngeneic TNBC BM models. First, we demonstrated that, in comparison to nontargeted NPs, DART NPs exhibit preferential association …


Magnify Is A Universal Molecular Anchoring Strategy For Expansion Microscopy, Aleksandra Klimas, Brendan R Gallagher, Piyumi Wijesekara, Sinda Fekir, Emma F Dibernardo, Zhangyu Cheng, Donna B Stolz, Franca Cambi, Simon C Watkins, Steven L Brody, Amjad Horani, Alison L Barth, Christopher I Moore, Xi Ren, Yongxin Zhao Jan 2023

Magnify Is A Universal Molecular Anchoring Strategy For Expansion Microscopy, Aleksandra Klimas, Brendan R Gallagher, Piyumi Wijesekara, Sinda Fekir, Emma F Dibernardo, Zhangyu Cheng, Donna B Stolz, Franca Cambi, Simon C Watkins, Steven L Brody, Amjad Horani, Alison L Barth, Christopher I Moore, Xi Ren, Yongxin Zhao

2020-Current year OA Pubs

Expansion microscopy enables nanoimaging with conventional microscopes by physically and isotropically magnifying preserved biological specimens embedded in a crosslinked water-swellable hydrogel. Current expansion microscopy protocols require prior treatment with reactive anchoring chemicals to link specific labels and biomolecule classes to the gel. We describe a strategy called Magnify, which uses a mechanically sturdy gel that retains nucleic acids, proteins and lipids without the need for a separate anchoring step. Magnify expands biological specimens up to 11 times and facilitates imaging of cells and tissues with effectively around 25-nm resolution using a diffraction-limited objective lens of about 280 nm on conventional …


Human Alcohol-Microbiota Mice Have Increased Susceptibility To Bacterial Pneumonia, Kelly C. Cunningham, Deandra R. Smith, Daniel Villageliu, Christi M. Ellis, Amanda E. Ramer-Tait, Jeffrey D. Price, Todd A. Wyatt, Daren L. Knoell, Mystera M. Samuelson, Patricia E Molina, David A. Welsh, Derrick R. Samuelson Jan 2023

Human Alcohol-Microbiota Mice Have Increased Susceptibility To Bacterial Pneumonia, Kelly C. Cunningham, Deandra R. Smith, Daniel Villageliu, Christi M. Ellis, Amanda E. Ramer-Tait, Jeffrey D. Price, Todd A. Wyatt, Daren L. Knoell, Mystera M. Samuelson, Patricia E Molina, David A. Welsh, Derrick R. Samuelson

Journal Articles: Environmental, Agricultural & Occupational Health

Preclinical studies have shown that chronic alcohol abuse leads to alterations in the gastrointestinal microbiota that are associated with behavior changes, physiological alterations, and immunological effects. However, such studies have been limited in their ability to evaluate the direct effects of alcohol-associated dysbiosis. To address this, we developed a humanized alcohol-microbiota mouse model to systematically evaluate the immunological effects of chronic alcohol abuse mediated by intestinal dysbiosis. Germ-free mice were colonized with human fecal microbiota from individuals with high and low Alcohol Use Disorders Identification Test (AUDIT) scores and bred to produce human alcohol-associated microbiota or human control-microbiota F1 progenies. …