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Tmem161b Regulates Cerebral Cortical Gyration, Sonic Hedgehog Signaling, And Ciliary Structure In The Developing Central Nervous System, Shyam K Akula, Jack H Marciano, Youngshin Lim, David Exposito-Alonso, Norma K Hylton, Grace H Hwang, Jennifer E Neil, Nicole Dominado, Rosie K Bunton-Stasyshyn, Janet H T Song, Maya Talukdar, Aloisia Schmid, Lydia Teboul, Alisa Mo, Taehwan Shin, Benjamin Finander, Samantha G Beck, Rebecca C Yeh, Aoi Otani, Xuyu Qian, Ellen M Degennaro, Fowzan S Alkuraya, Sateesh Maddirevula, Gregory D Cascino, Caterina Giannini, Undiagnosed Diseases Network, Lindsay C Burrage, Jill A Rosenfield, Shamika Ketkar, Gary D Clark, Carlos Bacino, Richard A Lewis, Rosalind A Segal, J Fernando Bazan, Kelly A Smith, Jeffrey A Golden, Ginam Cho, Christopher A Walsh Jan 2023

Tmem161b Regulates Cerebral Cortical Gyration, Sonic Hedgehog Signaling, And Ciliary Structure In The Developing Central Nervous System, Shyam K Akula, Jack H Marciano, Youngshin Lim, David Exposito-Alonso, Norma K Hylton, Grace H Hwang, Jennifer E Neil, Nicole Dominado, Rosie K Bunton-Stasyshyn, Janet H T Song, Maya Talukdar, Aloisia Schmid, Lydia Teboul, Alisa Mo, Taehwan Shin, Benjamin Finander, Samantha G Beck, Rebecca C Yeh, Aoi Otani, Xuyu Qian, Ellen M Degennaro, Fowzan S Alkuraya, Sateesh Maddirevula, Gregory D Cascino, Caterina Giannini, Undiagnosed Diseases Network, Lindsay C Burrage, Jill A Rosenfield, Shamika Ketkar, Gary D Clark, Carlos Bacino, Richard A Lewis, Rosalind A Segal, J Fernando Bazan, Kelly A Smith, Jeffrey A Golden, Ginam Cho, Christopher A Walsh

Faculty, Staff and Students Publications

Sonic hedgehog signaling regulates processes of embryonic development across multiple tissues, yet factors regulating context-specific Shh signaling remain poorly understood. Exome sequencing of families with polymicrogyria (disordered cortical folding) revealed multiple individuals with biallelic deleterious variants in TMEM161B, which encodes a multi-pass transmembrane protein of unknown function. Tmem161b null mice demonstrated holoprosencephaly, craniofacial midline defects, eye defects, and spinal cord patterning changes consistent with impaired Shh signaling, but were without limb defects, suggesting a CNS-specific role of Tmem161b. Tmem161b depletion impaired the response to Smoothened activation in vitro and disrupted cortical histogenesis in vivo in both mouse and ferret …


The Nfib/Carm1 Partnership Is A Driver In Preclinical Models Of Small Cell Lung Cancer, Guozhen Gao, Simone Hausmann, Natasha M Flores, Ana Morales Benitez, Jianjun Shen, Xiaojie Yang, Maria D Person, Sitaram Gayatri, Donghang Cheng, Yue Lu, Bin Liu, Pawel K Mazur, Mark T Bedford Jan 2023

The Nfib/Carm1 Partnership Is A Driver In Preclinical Models Of Small Cell Lung Cancer, Guozhen Gao, Simone Hausmann, Natasha M Flores, Ana Morales Benitez, Jianjun Shen, Xiaojie Yang, Maria D Person, Sitaram Gayatri, Donghang Cheng, Yue Lu, Bin Liu, Pawel K Mazur, Mark T Bedford

Faculty, Staff and Student Publications

The coactivator associated arginine methyltransferase (CARM1) promotes transcription, as its name implies. It does so by modifying histones and chromatin bound proteins. We identified nuclear factor I B (NFIB) as a CARM1 substrate and show that this transcription factor utilizes CARM1 as a coactivator. Biochemical studies reveal that tripartite motif 29 (TRIM29) is an effector molecule for methylated NFIB. Importantly, NFIB harbors both oncogenic and metastatic activities, and is often overexpressed in small cell lung cancer (SCLC). Here, we explore the possibility that CARM1 methylation of NFIB is important for its transforming activity. Using a SCLC mouse model, we show …


Lateral Line Ablation By Ototoxic Compounds Results In Distinct Rheotaxis Profiles In Larval Zebrafish, Kyle C Newton, Dovi Kacev, Simon R O Nilsson, Allison L Saettele, Sam A Golden, Lavinia Sheets Jan 2023

Lateral Line Ablation By Ototoxic Compounds Results In Distinct Rheotaxis Profiles In Larval Zebrafish, Kyle C Newton, Dovi Kacev, Simon R O Nilsson, Allison L Saettele, Sam A Golden, Lavinia Sheets

2020-Current year OA Pubs

The zebrafish lateral line is an established model for hair cell organ damage, yet few studies link mechanistic disruptions to changes in biologically relevant behavior. We used larval zebrafish to determine how damage via ototoxic compounds impact rheotaxis. Larvae were treated with CuSO


Svhound: Detection Of Regions That Harbor Yet Undetected Structural Variation, Luis F Paulin, Muthuswamy Raveendran, R Alan Harris, Jeffrey Rogers, Arndt Von Haeseler, Fritz J Sedlazeck Jan 2023

Svhound: Detection Of Regions That Harbor Yet Undetected Structural Variation, Luis F Paulin, Muthuswamy Raveendran, R Alan Harris, Jeffrey Rogers, Arndt Von Haeseler, Fritz J Sedlazeck

Faculty, Staff and Students Publications

BACKGROUND: Recent population studies are ever growing in number of samples to investigate the diversity of a population or species. These studies reveal new polymorphism that lead to important insights into the mechanisms of evolution, but are also important for the interpretation of these variations. Nevertheless, while the full catalog of variations across entire species remains unknown, we can predict which regions harbor additional not yet detected variations and investigate their properties, thereby enhancing the analysis for potentially missed variants.

RESULTS: To achieve this we developed SVhound ( https://github.com/lfpaulin/SVhound ), which based on a population level SVs dataset can predict …


Trisomy 21 Induces Pericentrosomal Crowding Delaying Primary Ciliogenesis And Mouse Cerebellar Development., Cayla E Jewett, Bailey L Mccurdy, Eileen T O'Toole, Alexander J Stemm-Wolf, Katherine S Given, Carrie H Lin, Valerie Olsen, Whitney Martin, Laura G Reinholdt, Joaquín M Espinosa, Kelly D Sullivan, Wendy B Macklin, Rytis Prekeris, Chad G Pearson Jan 2023

Trisomy 21 Induces Pericentrosomal Crowding Delaying Primary Ciliogenesis And Mouse Cerebellar Development., Cayla E Jewett, Bailey L Mccurdy, Eileen T O'Toole, Alexander J Stemm-Wolf, Katherine S Given, Carrie H Lin, Valerie Olsen, Whitney Martin, Laura G Reinholdt, Joaquín M Espinosa, Kelly D Sullivan, Wendy B Macklin, Rytis Prekeris, Chad G Pearson

Faculty Research 2023

Trisomy 21, the genetic cause of Down syndrome, disrupts primary cilia formation and function, in part through elevated Pericentrin, a centrosome protein encoded on chromosome 21. Yet how trisomy 21 and elevated Pericentrin disrupt cilia-related molecules and pathways, and the in vivo phenotypic relevance remain unclear. Utilizing ciliogenesis time course experiments combined with light microscopy and electron tomography, we reveal that chromosome 21 polyploidy elevates Pericentrin and microtubules away from the centrosome that corral MyosinVA and EHD1, delaying ciliary membrane delivery and mother centriole uncapping essential for ciliogenesis. If given enough time, trisomy 21 cells eventually ciliate, but these ciliated …


Pgc-1Α Senses The Cbc Of Pre-Mrna To Dictate The Fate Of Promoter-Proximally Paused Rnapii, Xavier Rambout, Hana Cho, Roméo Blanc, Qing Lyu, Joseph M Miano, Joe V Chakkalakal, Geoffrey M Nelson, Hari K Yalamanchili, Karen Adelman, Lynne E Maquat Jan 2023

Pgc-1Α Senses The Cbc Of Pre-Mrna To Dictate The Fate Of Promoter-Proximally Paused Rnapii, Xavier Rambout, Hana Cho, Roméo Blanc, Qing Lyu, Joseph M Miano, Joe V Chakkalakal, Geoffrey M Nelson, Hari K Yalamanchili, Karen Adelman, Lynne E Maquat

Children’s Nutrition Research Center Staff Publications

PGC-1α is well established as a metazoan transcriptional coactivator of cellular adaptation in response to stress. However, the mechanisms by which PGC-1α activates gene transcription are incompletely understood. Here, we report that PGC-1α serves as a scaffold protein that physically and functionally connects the DNA-binding protein estrogen-related receptor α (ERRα), cap-binding protein 80 (CBP80), and Mediator to overcome promoter-proximal pausing of RNAPII and transcriptionally activate stress-response genes. We show that PGC-1α promotes pausing release in a two-arm mechanism (1) by recruiting the positive transcription elongation factor b (P-TEFb) and (2) by outcompeting the premature transcription termination complex Integrator. Using mice …


Semi-Quantitative Detection Of Pseudouridine Modifications And Type I/Ii I/Ii Hypermodifications In Human Mrnas Using Direct Long-Read Sequencing, Sepideh Tavakoli, Mohammad Nabizadeh, Amr Makhamreh, Howard Gamper, Caroline A Mccormick, Neda K Rezapour, Ya-Ming Hou, Meni Wanunu, Sara H Rouhanifard Jan 2023

Semi-Quantitative Detection Of Pseudouridine Modifications And Type I/Ii I/Ii Hypermodifications In Human Mrnas Using Direct Long-Read Sequencing, Sepideh Tavakoli, Mohammad Nabizadeh, Amr Makhamreh, Howard Gamper, Caroline A Mccormick, Neda K Rezapour, Ya-Ming Hou, Meni Wanunu, Sara H Rouhanifard

Department of Biochemistry and Molecular Biology Faculty Papers

Here, we develop and apply a semi-quantitative method for the high-confidence identification of pseudouridylated sites on mammalian mRNAs via direct long-read nanopore sequencing. A comparative analysis of a modification-free transcriptome reveals that the depth of coverage and specific k-mer sequences are critical parameters for accurate basecalling. By adjusting these parameters for high-confidence U-to-C basecalling errors, we identify many known sites of pseudouridylation and uncover previously unreported uridine-modified sites, many of which fall in k-mers that are known targets of pseudouridine synthases. Identified sites are validated using 1000-mer synthetic RNA controls bearing a single pseudouridine in the center position, demonstrating systematic …


Control Of Craniofacial Development By The Collagen Receptor, Discoidin Domain Receptor 2, Fatma F Mohamed, Chunxi Ge, Shawn A Hallett, Alec C Bancroft, Randy T Cowling, Noriaki Ono, Abdul-Aziz Binrayes, Barry Greenberg, Benjamin Levi, Vesa M Kaartinen, Renny T Franceschi Jan 2023

Control Of Craniofacial Development By The Collagen Receptor, Discoidin Domain Receptor 2, Fatma F Mohamed, Chunxi Ge, Shawn A Hallett, Alec C Bancroft, Randy T Cowling, Noriaki Ono, Abdul-Aziz Binrayes, Barry Greenberg, Benjamin Levi, Vesa M Kaartinen, Renny T Franceschi

Faculty, Staff and Student Publications

Development of the craniofacial skeleton requires interactions between progenitor cells and the collagen-rich extracellular matrix (ECM). The mediators of these interactions are not well-defined. Mutations in the discoidin domain receptor 2 gene (DDR2), which encodes a non-integrin collagen receptor, are associated with human craniofacial abnormalities, such as midface hypoplasia and open fontanels. However, the exact role of this gene in craniofacial morphogenesis is not known. As will be shown, Ddr2-deficient mice exhibit defects in craniofacial bones including impaired calvarial growth and frontal suture formation, cranial base hypoplasia due to aberrant chondrogenesis and delayed ossification at growth plate …


Generation Of A Tree Shrew Breast Cancer Model Using Lentivirus Expressing Pik3ca-H1047r, Li Zeng, Hong-Yan Zhang, Chuan-Yu Yang, Zhuo Cheng, Qiu-Yun Jiang, Yao Luo, Yi Li, Fu-Bing Li, Ce-Shi Chen Jan 2023

Generation Of A Tree Shrew Breast Cancer Model Using Lentivirus Expressing Pik3ca-H1047r, Li Zeng, Hong-Yan Zhang, Chuan-Yu Yang, Zhuo Cheng, Qiu-Yun Jiang, Yao Luo, Yi Li, Fu-Bing Li, Ce-Shi Chen

Faculty, Staff and Students Publications

No abstract provided.


Epigenetic Resetting In The Human Germ Line Entails Histone Modification Remodeling, Wolfram H Gruhn, Walfred W C Tang, Sabine Dietmann, João P Alves-Lopes, Christopher A Penfold, Frederick C K Wong, Navin B Ramakrishna, M Azim Surani Jan 2023

Epigenetic Resetting In The Human Germ Line Entails Histone Modification Remodeling, Wolfram H Gruhn, Walfred W C Tang, Sabine Dietmann, João P Alves-Lopes, Christopher A Penfold, Frederick C K Wong, Navin B Ramakrishna, M Azim Surani

2020-Current year OA Pubs

Epigenetic resetting in the mammalian germ line entails acute DNA demethylation, which lays the foundation for gametogenesis, totipotency, and embryonic development. We characterize the epigenome of hypomethylated human primordial germ cells (hPGCs) to reveal mechanisms preventing the widespread derepression of genes and transposable elements (TEs). Along with the loss of DNA methylation, we show that hPGCs exhibit a profound reduction of repressive histone modifications resulting in diminished heterochromatic signatures at most genes and TEs and the acquisition of a neutral or paused epigenetic state without transcriptional activation. Efficient maintenance of a heterochromatic state is limited to a subset of genomic …


Entry Receptors - The Gateway To Alphavirus Infection, Ofer Zimmerman, Autumn C. Holmes, Natasha M. Kafai, Lucas J. Adams, Michael S. Diamond Jan 2023

Entry Receptors - The Gateway To Alphavirus Infection, Ofer Zimmerman, Autumn C. Holmes, Natasha M. Kafai, Lucas J. Adams, Michael S. Diamond

2020-Current year OA Pubs

Alphaviruses are enveloped, insect-transmitted, positive-sense RNA viruses that infect humans and other animals and cause a range of clinical manifestations, including arthritis, musculoskeletal disease, meningitis, encephalitis, and death. Over the past four years, aided by CRISPR/Cas9-based genetic screening approaches, intensive research efforts have focused on identifying entry receptors for alphaviruses to better understand the basis for cellular and species tropism. Herein, we review approaches to alphavirus receptor identification and how these were used for discovery. The identification of new receptors advances our understanding of viral pathogenesis, tropism, and evolution and is expected to contribute to the development of novel strategies …


Prm-Reactive Antibodies Reveal A Role For Partially Mature Virions In Dengue Virus Pathogenesis, Kimberly A Dowd, Laura A Vanblargan, Rita E Chen, Bradley M Whitener, Jennifer Govero, Soila Sukupolvi-Petty, Michael S Diamond, Et Al. Jan 2023

Prm-Reactive Antibodies Reveal A Role For Partially Mature Virions In Dengue Virus Pathogenesis, Kimberly A Dowd, Laura A Vanblargan, Rita E Chen, Bradley M Whitener, Jennifer Govero, Soila Sukupolvi-Petty, Michael S Diamond, Et Al.

2020-Current year OA Pubs

Cleavage of the flavivirus premembrane (prM) structural protein during maturation can be inefficient. The contribution of partially mature flavivirus virions that retain uncleaved prM to pathogenesis during primary infection is unknown. To investigate this question, we characterized the functional properties of newly-generated dengue virus (DENV) prM-reactive monoclonal antibodies (mAbs) in vitro and using a mouse model of DENV disease. Anti-prM mAbs neutralized DENV infection in a virion maturation state-dependent manner. Alanine scanning mutagenesis and cryoelectron microscopy of anti-prM mAbs in complex with immature DENV defined two modes of attachment to a single antigenic site. In vivo, passive transfer of intact …


Planarians To Schistosomes: An Overview Of Flatworm Cell-Types And Regulators, J Lee Jan 2023

Planarians To Schistosomes: An Overview Of Flatworm Cell-Types And Regulators, J Lee

Faculty, Staff and Student Publications

Schistosomiasis remains a major neglected tropical disease that afflicts over 200 million people globally. Schistosomes, the aetiological agent of schistosomiasis, are parasitic flatworms that propagate between molluscan and mammalian hosts. Inside the mammalian host, schistosomes rapidly grow over 100-fold in size and develop into a sexually mature male or female that thrives in the bloodstream for several decades. Recent work has identified schistosome stem cells as the source that drives parasite transmission, reproduction and longevity. Moreover, studies have begun to uncover molecular programmes deployed by stem cells that are essential for tissue development and maintenance, parasite survival and immune evasion. …


Exploring Therapeutic Strategies For Infantile Neuronal Axonal Dystrophy (Inad/Park14), Guang Lin, Burak Tepe, Geoff Mcgrane, Regine C Tipon, Gist Croft, Leena Panwala, Amanda Hope, Agnes J H Liang, Zhongyuan Zuo, Seul Kee Byeon, Lily Wang, Akhilesh Pandey, Hugo J Bellen Jan 2023

Exploring Therapeutic Strategies For Infantile Neuronal Axonal Dystrophy (Inad/Park14), Guang Lin, Burak Tepe, Geoff Mcgrane, Regine C Tipon, Gist Croft, Leena Panwala, Amanda Hope, Agnes J H Liang, Zhongyuan Zuo, Seul Kee Byeon, Lily Wang, Akhilesh Pandey, Hugo J Bellen

Faculty, Staff and Students Publications

Infantile neuroaxonal dystrophy (INAD) is caused by recessive variants in PLA2G6 and is a lethal pediatric neurodegenerative disorder. Loss of the Drosophila homolog of PLA2G6, leads to ceramide accumulation, lysosome expansion, and mitochondrial defects. Here, we report that retromer function, ceramide metabolism, the endolysosomal pathway, and mitochondrial morphology are affected in INAD patient-derived neurons. We show that in INAD mouse models, the same features are affected in Purkinje cells, arguing that the neuropathological mechanisms are evolutionary conserved and that these features can be used as biomarkers. We tested 20 drugs that target these pathways and found that Ambroxol, Desipramine, …


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 Novel Human Tau Knock-In Mouse Model Reveals Interaction Of Abeta And Human Tau Under Progressing Cerebral Amyloidosis In 5xfad Mice., Susan Barendrecht, An Schreurs, Stefanie Geissler, Victor Sabanov, Victoria Ilse, Vera Rieckmann, Rico Eichentopf, Anja Künemund, Benjamin Hietel, Sebastian Wussow, Katrin Hoffmann, Kerstin Körber-Ferl, Ravi S Pandey, Gregory W. Carter, Hans-Ulrich Demuth, Max Holzer, Steffen Roßner, Stephan Schilling, Christoph Preuss, Detlef Balschun, Holger Cynis Jan 2023

A Novel Human Tau Knock-In Mouse Model Reveals Interaction Of Abeta And Human Tau Under Progressing Cerebral Amyloidosis In 5xfad Mice., Susan Barendrecht, An Schreurs, Stefanie Geissler, Victor Sabanov, Victoria Ilse, Vera Rieckmann, Rico Eichentopf, Anja Künemund, Benjamin Hietel, Sebastian Wussow, Katrin Hoffmann, Kerstin Körber-Ferl, Ravi S Pandey, Gregory W. Carter, Hans-Ulrich Demuth, Max Holzer, Steffen Roßner, Stephan Schilling, Christoph Preuss, Detlef Balschun, Holger Cynis

Faculty Research 2023

BACKGROUND: Hyperphosphorylation and intraneuronal aggregation of the microtubule-associated protein tau is a major pathological hallmark of Alzheimer's disease (AD) brain. Of special interest is the effect of cerebral amyloid beta deposition, the second main hallmark of AD, on human tau pathology. Therefore, studying the influence of cerebral amyloidosis on human tau in a novel human tau knock-in (htau-KI) mouse model could help to reveal new details on their interplay.

METHODS: We studied the effects of a novel human htau-KI under fast-progressing amyloidosis in 5xFAD mice in terms of correlation of gene expression data with human brain regions, development of Alzheimer's-like …


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 …


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 …


A Clustering Of Heterozygous Missense Variants In The Crucial Chromatin Modifier Wdr5 Defines A New Neurodevelopmental Disorder, Lot Snijders Blok, Jolijn Verseput, Dmitrijs Rots, Hanka Venselaar, A Micheil Innes, Connie Stumpel, Katrin Õunap, Karit Reinson, Eleanor G Seaby, Shane Mckee, Barbara Burton, Katherine Kim, Johanna M Van Hagen, Quinten Waisfisz, Pascal Joset, Katharina Steindl, Anita Rauch, Dong Li, Elaine H Zackai, Sarah E Sheppard, Beth Keena, Hakon Hakonarson, Andreas Roos, Nicolai Kohlschmidt, Anna Cereda, Maria Iascone, Erika Rebessi, Kristin D Kernohan, Philippe M Campeau, Francisca Millan, Jesse A Taylor, Hanns Lochmüller, Martin R Higgs, Amalia Goula, Birgitta Bernhard, Danita J Velasco, Andrew A Schmanski, Zornitza Stark, Lyndon Gallacher, Lynn Pais, Paul C Marcogliese, Shinya Yamamoto, Nicholas Raun, Taryn E Jakub, Jamie M Kramer, Joery Den Hoed, Simon E Fisher, Han G Brunner, Tjitske Kleefstra Jan 2023

A Clustering Of Heterozygous Missense Variants In The Crucial Chromatin Modifier Wdr5 Defines A New Neurodevelopmental Disorder, Lot Snijders Blok, Jolijn Verseput, Dmitrijs Rots, Hanka Venselaar, A Micheil Innes, Connie Stumpel, Katrin Õunap, Karit Reinson, Eleanor G Seaby, Shane Mckee, Barbara Burton, Katherine Kim, Johanna M Van Hagen, Quinten Waisfisz, Pascal Joset, Katharina Steindl, Anita Rauch, Dong Li, Elaine H Zackai, Sarah E Sheppard, Beth Keena, Hakon Hakonarson, Andreas Roos, Nicolai Kohlschmidt, Anna Cereda, Maria Iascone, Erika Rebessi, Kristin D Kernohan, Philippe M Campeau, Francisca Millan, Jesse A Taylor, Hanns Lochmüller, Martin R Higgs, Amalia Goula, Birgitta Bernhard, Danita J Velasco, Andrew A Schmanski, Zornitza Stark, Lyndon Gallacher, Lynn Pais, Paul C Marcogliese, Shinya Yamamoto, Nicholas Raun, Taryn E Jakub, Jamie M Kramer, Joery Den Hoed, Simon E Fisher, Han G Brunner, Tjitske Kleefstra

Faculty, Staff and Students Publications

WDR5 is a broadly studied, highly conserved key protein involved in a wide array of biological functions. Among these functions, WDR5 is a part of several protein complexes that affect gene regulation via post-translational modification of histones. We collected data from 11 unrelated individuals with six different rare de novo germline missense variants in WDR5; one identical variant was found in five individuals and another variant in two individuals. All individuals had neurodevelopmental disorders including speech/language delays (n = 11), intellectual disability (n = 9), epilepsy (n = 7), and autism spectrum disorder (n = 4). Additional phenotypic features …


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 Bioengineered Probiotic For The Oral Delivery Of A Peptide Kv13 Channel Blocker To Treat Rheumatoid Arthritis, Yuqing Wang, Duolong Zhu, Laura C Ortiz-Velez, Jacob L Perry, Michael W Pennington, Joseph M Hyser, Robert A Britton, Christine Beeton Jan 2023

A Bioengineered Probiotic For The Oral Delivery Of A Peptide Kv13 Channel Blocker To Treat Rheumatoid Arthritis, Yuqing Wang, Duolong Zhu, Laura C Ortiz-Velez, Jacob L Perry, Michael W Pennington, Joseph M Hyser, Robert A Britton, Christine Beeton

Faculty, Staff and Students Publications

New therapeutics that combine efficacy with limited side effects and can be delivered noninvasively are needed to adequately treat patients with rheumatoid arthritis (RA) and other autoimmune diseases. Kv1.3 channel-expressing CCR7− effector memory T (TEM) lymphocytes are significant players in the pathogenesis of multiple autoimmune diseases, and blocking Kv1.3 reduces disease severity in rat models of RA and patients with plaque psoriasis. However, peptide therapeutics require repeated injections, reducing patient compliance. We used a bioengineered Lactobacillus reuteri as an oral delivery method of a Kv1.3 blocker for immunomodulation in rat models of atopic dermatitis and RA. This study demonstrates a …


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, …


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 …


Mouse Phenome Database: Towards A More Fair-Compliant And Trust-Worthy Data Repository And Tool Suite For Phenotypes And Genotypes., Molly A. Bogue, Robyn L Ball, Vivek M. Philip, David O Walton, Matthew H Dunn, Georgi Kolishovski, Anna Lamoureux, Matthew Gerring, Hongping Liang, Jake Emerson, Timothy M Stearns, Hao He, Gaurab Mukherjee, John Bluis, Sejal Desai, Beth A. Sundberg, Beena Kadakkuzha, Govindarajan Kunde-Ramamoorthy, Elissa J Chesler Jan 2023

Mouse Phenome Database: Towards A More Fair-Compliant And Trust-Worthy Data Repository And Tool Suite For Phenotypes And Genotypes., Molly A. Bogue, Robyn L Ball, Vivek M. Philip, David O Walton, Matthew H Dunn, Georgi Kolishovski, Anna Lamoureux, Matthew Gerring, Hongping Liang, Jake Emerson, Timothy M Stearns, Hao He, Gaurab Mukherjee, John Bluis, Sejal Desai, Beth A. Sundberg, Beena Kadakkuzha, Govindarajan Kunde-Ramamoorthy, Elissa J Chesler

Faculty Research 2023

The Mouse Phenome Database (MPD; https://phenome.jax.org; RRID:SCR_003212), supported by the US National Institutes of Health, is a Biomedical Data Repository listed in the Trans-NIH Biomedical Informatics Coordinating Committee registry. As an increasingly FAIR-compliant and TRUST-worthy data repository, MPD accepts phenotype and genotype data from mouse experiments and curates, organizes, integrates, archives, and distributes those data using community standards. Data are accompanied by rich metadata, including widely used ontologies and detailed protocols. Data are from all over the world and represent genetic, behavioral, morphological, and physiological disease-related characteristics in mice at baseline or those exposed to drugs or other treatments. MPD …


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 …


Therapeutic Targeting Of Prenatal Pontine Id1 Signaling In Diffuse Midline Glioma., Dana Messinger, Micah K. Harris, Jessica R. Cummings, Chase Thomas, Tao Yang, Stefan R. Sweha, Rinette Woo, Robert Siddaway, Martin Burkert, Stefanie Stallard, Tingting Qin, Brendan Mullan, Ruby Siada, Ramya Ravindran, Michael Niculcea, Abigail R. Dowling, Joshua Bradin, Kevin Ginn, Melissa Gener, Kathleen Dorris, Nicholas A. Vitanza, Susanne V. Schmidt, Jasper Spitzer, Jiang Li, Mariella G. Filbin, Xuhong Cao, Maria G. Castro, Pedro R. Lowenstein, Rajen Mody, Arul Chinnaiyan, Pierre-Yves Desprez, Sean Mcallister, Matthew D. Dun, Cynthia Hawkins, Sebastian M. Waszak, Sriram Venneti, Carl Koschmann, Viveka Nand Yadav Jan 2023

Therapeutic Targeting Of Prenatal Pontine Id1 Signaling In Diffuse Midline Glioma., Dana Messinger, Micah K. Harris, Jessica R. Cummings, Chase Thomas, Tao Yang, Stefan R. Sweha, Rinette Woo, Robert Siddaway, Martin Burkert, Stefanie Stallard, Tingting Qin, Brendan Mullan, Ruby Siada, Ramya Ravindran, Michael Niculcea, Abigail R. Dowling, Joshua Bradin, Kevin Ginn, Melissa Gener, Kathleen Dorris, Nicholas A. Vitanza, Susanne V. Schmidt, Jasper Spitzer, Jiang Li, Mariella G. Filbin, Xuhong Cao, Maria G. Castro, Pedro R. Lowenstein, Rajen Mody, Arul Chinnaiyan, Pierre-Yves Desprez, Sean Mcallister, Matthew D. Dun, Cynthia Hawkins, Sebastian M. Waszak, Sriram Venneti, Carl Koschmann, Viveka Nand Yadav

Manuscripts, Articles, Book Chapters and Other Papers

BACKGROUND: Diffuse midline gliomas (DMG) are highly invasive brain tumors with rare survival beyond two years past diagnosis and limited understanding of the mechanism behind tumor invasion. Previous reports demonstrate upregulation of the protein ID1 with H3K27M and ACVR1 mutations in DMG, but this has not been confirmed in human tumors or therapeutically targeted.

METHODS: Whole exome, RNA, and ChIP-sequencing was performed on the ID1 locus in DMG tissue. Scratch-assay migration and transwell invasion assays of cultured cells were performed following shRNA-mediated ID1-knockdown. In vitro and in vivo genetic and pharmacologic [cannabidiol (CBD)] inhibition of ID1 on DMG tumor growth …