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Articles 211 - 240 of 272
Full-Text Articles in Genetic Phenomena
De Novo Variants In Frmd5 Are Associated With Developmental Delay, Intellectual Disability, Ataxia, And Abnormalities Of Eye Movement, Shenzhao Lu, Mengqi Ma, Xiao Mao, Carlos A Bacino, Joseph Jankovic, V Reid Sutton, James A Bartley, Xueying Wang, Jill A Rosenfeld, Ana Beleza-Meireles, Jaynee Chauhan, Xueyang Pan, Megan Li, Pengfei Liu, Katrina Prescott, Sam Amin, George Davies, Michael F Wangler, Yuwei Dai, Hugo J Bellen
De Novo Variants In Frmd5 Are Associated With Developmental Delay, Intellectual Disability, Ataxia, And Abnormalities Of Eye Movement, Shenzhao Lu, Mengqi Ma, Xiao Mao, Carlos A Bacino, Joseph Jankovic, V Reid Sutton, James A Bartley, Xueying Wang, Jill A Rosenfeld, Ana Beleza-Meireles, Jaynee Chauhan, Xueyang Pan, Megan Li, Pengfei Liu, Katrina Prescott, Sam Amin, George Davies, Michael F Wangler, Yuwei Dai, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
Proteins containing the FERM (four-point-one, ezrin, radixin, and moesin) domain link the plasma membrane with cytoskeletal structures at specific cellular locations and have been implicated in the localization of cell-membrane-associated proteins and/or phosphoinositides. FERM domain-containing protein 5 (FRMD5) localizes at cell adherens junctions and stabilizes cell-cell contacts. To date, variants in FRMD5 have not been associated with a Mendelian disease in OMIM. Here, we describe eight probands with rare heterozygous missense variants in FRMD5 who present with developmental delay, intellectual disability, ataxia, seizures, and abnormalities of eye movement. The variants are de novo in all for whom parental testing was …
The Recurrent De Novo C.2011c>T Missense Variant In Mtss2 Causes Syndromic Intellectual Disability, Yan Huang, Gabrielle Lemire, Lauren C Briere, Fang Liu, Marja W Wessels, Xueqi Wang, Matthew Osmond, Oguz Kanca, Shenzhao Lu, Frances A High, Melissa A Walker, Lance H Rodan, Undiagnosed Diseases Network, Care4rare Canada Consortium, Kristin D Kernohan, David A Sweetser, Kym M Boycott, Hugo J Bellen
The Recurrent De Novo C.2011c>T Missense Variant In Mtss2 Causes Syndromic Intellectual Disability, Yan Huang, Gabrielle Lemire, Lauren C Briere, Fang Liu, Marja W Wessels, Xueqi Wang, Matthew Osmond, Oguz Kanca, Shenzhao Lu, Frances A High, Melissa A Walker, Lance H Rodan, Undiagnosed Diseases Network, Care4rare Canada Consortium, Kristin D Kernohan, David A Sweetser, Kym M Boycott, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
MTSS2, also known as MTSS1L, binds to plasma membranes and modulates their bending. MTSS2 is highly expressed in the central nervous system (CNS) and appears to be involved in activity-dependent synaptic plasticity. Variants in MTSS2 have not yet been associated with a human phenotype in OMIM. Here we report five individuals with the same heterozygous de novo variant in MTSS2 (GenBank: NM_138383.2: c.2011C>T [p.Arg671Trp]) identified by exome sequencing. The individuals present with global developmental delay, mild intellectual disability, ophthalmological anomalies, microcephaly or relative microcephaly, and shared mild facial dysmorphisms. Immunoblots of fibroblasts from two affected individuals revealed that the …
Identifying Phenotypic Expansions For Congenital Diaphragmatic Hernia Plus (Cdh+) Using Decipher Data, Amy Hardcastle, Aliska M Berry, Ian M Campbell, Xiaonan Zhao, Pengfei Liu, Amanda E Gerard, Jill A Rosenfeld, Saumya D Sisoudiya, Andres Hernandez-Garcia, Sara Loddo, Silvia Di Tommaso, Antonio Novelli, Maria L Dentici, Rossella Capolino, Maria C Digilio, Ludovico Graziani, Cecilie F Rustad, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Eleonora Di Gregorio, Diana Wellesley, Claire Beneteau, Madeleine Joubert, Kris Van Den Bogaert, Anneleen Boogaerts, Dominic J Mcmullan, John Dean, Maria G Giuffrida, Laura Bernardini, Vinod Varghese, Nora L Shannon, Rachel E Harrison, Wayne W K Lam, Shane Mckee, Peter D Turnpenny, Trevor Cole, Jenny Morton, Jacqueline Eason, Marilyn C Jones, Rebecca Hall, Michael Wright, Karen Horridge, Chad A Shaw, Wendy K Chung, Daryl A Scott
Identifying Phenotypic Expansions For Congenital Diaphragmatic Hernia Plus (Cdh+) Using Decipher Data, Amy Hardcastle, Aliska M Berry, Ian M Campbell, Xiaonan Zhao, Pengfei Liu, Amanda E Gerard, Jill A Rosenfeld, Saumya D Sisoudiya, Andres Hernandez-Garcia, Sara Loddo, Silvia Di Tommaso, Antonio Novelli, Maria L Dentici, Rossella Capolino, Maria C Digilio, Ludovico Graziani, Cecilie F Rustad, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Eleonora Di Gregorio, Diana Wellesley, Claire Beneteau, Madeleine Joubert, Kris Van Den Bogaert, Anneleen Boogaerts, Dominic J Mcmullan, John Dean, Maria G Giuffrida, Laura Bernardini, Vinod Varghese, Nora L Shannon, Rachel E Harrison, Wayne W K Lam, Shane Mckee, Peter D Turnpenny, Trevor Cole, Jenny Morton, Jacqueline Eason, Marilyn C Jones, Rebecca Hall, Michael Wright, Karen Horridge, Chad A Shaw, Wendy K Chung, Daryl A Scott
Duncan NRI Faculty and Staff Publications
Congenital diaphragmatic hernia (CDH) can occur in isolation or in conjunction with other birth defects (CDH+). A molecular etiology can only be identified in a subset of CDH cases. This is due, in part, to an incomplete understanding of the genes that contribute to diaphragm development. Here, we used clinical and molecular data from 36 individuals with CDH+ who are cataloged in the DECIPHER database to identify genes that may play a role in diaphragm development and to discover new phenotypic expansions. Among this group, we identified individuals who carried putatively deleterious sequence or copy number variants affecting CREBBP, SMARCA4, …
Potential Interactions Between Cerebellar Dysfunction And Sleep Disturbances In Dystonia, Luis E Salazar Leon, Roy V Sillitoe
Potential Interactions Between Cerebellar Dysfunction And Sleep Disturbances In Dystonia, Luis E Salazar Leon, Roy V Sillitoe
Duncan NRI Faculty and Staff Publications
Dystonia is the third most common movement disorder. It causes debilitating twisting postures that are accompanied by repetitive and sometimes intermittent co- or over-contractions of agonist and antagonist muscles. Historically diagnosed as a basal ganglia disorder, dystonia is increasingly considered a network disorder involving various brain regions including the cerebellum. In certain etiologies of dystonia, aberrant motor activity is generated in the cerebellum and the abnormal signals then propagate through a "dystonia circuit" that includes the thalamus, basal ganglia, and cerebral cortex. Importantly, it has been reported that non-motor defects can accompany the motor symptoms; while their severity is not …
Causal Evidence For A Role Of Cerebellar Lobulus Simplex In Prefrontal-Hippocampal Interaction In Spatial Working Memory Decision-Making, Yu Liu, Samuel S Mcafee, Meike E Van Der Heijden, Mukesh Dhamala, Roy V Sillitoe, Detlef H Heck
Causal Evidence For A Role Of Cerebellar Lobulus Simplex In Prefrontal-Hippocampal Interaction In Spatial Working Memory Decision-Making, Yu Liu, Samuel S Mcafee, Meike E Van Der Heijden, Mukesh Dhamala, Roy V Sillitoe, Detlef H Heck
Duncan NRI Faculty and Staff Publications
Spatial working memory (SWM) is a cerebrocerebellar cognitive skill supporting survival-relevant behaviors, such as optimizing foraging behavior by remembering recent routes and visited sites. It is known that SWM decision-making in rodents requires the medial prefrontal cortex (mPFC) and dorsal hippocampus. The decision process in SWM tasks carries a specific electrophysiological signature of a brief, decision-related increase in neuronal communication in the form of an increase in the coherence of neuronal theta oscillations (4-12 Hz) between the mPFC and dorsal hippocampus, a finding we replicated here during spontaneous exploration of a plus maze in freely moving mice. We further evaluated …
Sex-Specific Epigenetic Development In The Mouse Hypothalamic Arcuate Nucleus Pinpoints Human Genomic Regions Associated With Body Mass Index, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland
Sex-Specific Epigenetic Development In The Mouse Hypothalamic Arcuate Nucleus Pinpoints Human Genomic Regions Associated With Body Mass Index, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland
Duncan NRI Faculty and Staff Publications
Recent genome-wide association studies corroborate classical research on developmental programming indicating that obesity is primarily a neurodevelopmental disease strongly influenced by nutrition during critical ontogenic windows. Epigenetic mechanisms regulate neurodevelopment; however, little is known about their role in establishing and maintaining the brain's energy balance circuitry. We generated neuron and glia methylomes and transcriptomes from male and female mouse hypothalamic arcuate nucleus, a key site for energy balance regulation, at time points spanning the closure of an established critical window for developmental programming of obesity risk. We find that postnatal epigenetic maturation is markedly cell type and sex specific and …
De Novo Variants In Emc1 Lead To Neurodevelopmental Delay And Cerebellar Degeneration And Affect Glial Function In Drosophila, Hyung-Lok Chung, Patrick Rump, Di Lu, Megan R Glassford, Jung-Wan Mok, Jawid Fatih, Adily Basal, Paul C Marcogliese, Oguz Kanca, Michele Rapp, Johanna M Fock, Erik-Jan Kamsteeg, James R Lupski, Austin Larson, Mark C Haninbal, Hugo Bellen, Tamar Harel
De Novo Variants In Emc1 Lead To Neurodevelopmental Delay And Cerebellar Degeneration And Affect Glial Function In Drosophila, Hyung-Lok Chung, Patrick Rump, Di Lu, Megan R Glassford, Jung-Wan Mok, Jawid Fatih, Adily Basal, Paul C Marcogliese, Oguz Kanca, Michele Rapp, Johanna M Fock, Erik-Jan Kamsteeg, James R Lupski, Austin Larson, Mark C Haninbal, Hugo Bellen, Tamar Harel
Duncan NRI Faculty and Staff Publications
Background: The endoplasmic reticulum (ER)-membrane protein complex (EMC) is a multi-protein transmembrane complex composed of 10 subunits that functions as a membrane-protein chaperone. Variants in EMC1 lead to neurodevelopmental delay and cerebellar degeneration. Multiple families with biallelic variants have been published, yet to date, only a single report of a monoallelic variant has been described, and functional evidence is sparse.
Methods: Exome sequencing was used to investigate the genetic cause underlying severe developmental delay in three unrelated children. EMC1 variants were modeled in Drosophila, using loss-of-function (LoF) and overexpression studies. Glial-specific and neuronal-specific assays were used to determine whether the …
Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee
Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee
Duncan NRI Faculty and Staff Publications
Clinical applications of vagus nerve stimulation (VNS) are burgeoning, but mechanistic work lags behind. In this issue of Neuron, Bowles and colleagues show that VNS timed with positive reinforcement improves motor learning and cortical function by a cholinergic mechanism.
The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino
The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino
Duncan NRI Faculty and Staff Publications
Epithelial-mesenchymal transition (EMT) is a complex and pivotal process involved in organogenesis and is related to several pathological processes, including cancer and fibrosis. During heart development, EMT mediates the conversion of epicardial cells into vascular smooth muscle cells and cardiac interstitial fibroblasts. Here, we show that the oncogenic transcription factor EB (TFEB) is a key regulator of EMT in epicardial cells and that its genetic overexpression in mouse epicardium is lethal due to heart defects linked to impaired EMT. TFEB specifically orchestrates the EMT-promoting function of transforming growth factor (TGF) β, and this effect results from activated transcription of thymine-guanine-interacting …
Kctd7 Deficiency Induces Myoclonic Seizures Associated With Purkinje Cell Death And Microvascular Defects, Justine H Liang, Jonathan Alevy, Viktor Akhanov, Ryan Seo, Cory A Massey, Danye Jiang, Joy Zhou, Roy V Sillitoe, Jeffrey L Noebels, Melanie A Samuel
Kctd7 Deficiency Induces Myoclonic Seizures Associated With Purkinje Cell Death And Microvascular Defects, Justine H Liang, Jonathan Alevy, Viktor Akhanov, Ryan Seo, Cory A Massey, Danye Jiang, Joy Zhou, Roy V Sillitoe, Jeffrey L Noebels, Melanie A Samuel
Duncan NRI Faculty and Staff Publications
Mutations in the potassium channel tetramerization domain-containing 7 (KCTD7) gene are associated with a severe neurodegenerative phenotype characterized by childhood onset of progressive and intractable myoclonic seizures accompanied by developmental regression. KCTD7-driven disease is part of a large family of progressive myoclonic epilepsy syndromes displaying a broad spectrum of clinical severity. Animal models of KCTD7-related disease are lacking, and little is known regarding how KCTD7 protein defects lead to epilepsy and cognitive dysfunction. We characterized Kctd7 expression patterns in the mouse brain during development and show that it is selectively enriched in specific regions as the brain matures. We further …
‘Fly-Ing’ From Rare To Common Neurodegenerative Disease Mechanisms, Mengqi Ma, Matthew J Moulton, Shenzhao Lu, Hugo J Bellen
‘Fly-Ing’ From Rare To Common Neurodegenerative Disease Mechanisms, Mengqi Ma, Matthew J Moulton, Shenzhao Lu, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
Genome sequencing advances have enabled researchers and clinicians to probe vast numbers of human variants to distinguish pathogenic from benign variation. Model organisms have been critical in variant assessment and delineating molecular mechanisms of some of the diseases caused by these variants. The fruit fly, Drosophila melanogaster, has played a valuable role in this endeavor, taking advantage of its genetic technologies and established biological knowledge. In this review, we highlight the utility of the fly in studying the function of genes associated with rare neurological diseases that have led to a better understanding of common disease mechanisms. We emphasize …
Removal Of Kcnq2 From Parvalbumin-Expressing Interneurons Improves Anti-Seizure Efficacy Of Retigabine, Junzhan Jing, Corrinne Dunbar, Alina Sonesra, Ana Chavez, Suhyeorn Park, Ryan Yang, Heun Soh, Maxwell Lee, Anastasios V Tzingounis, Edward C Cooper, Xiaolong Jiang, Atul Maheshwari
Removal Of Kcnq2 From Parvalbumin-Expressing Interneurons Improves Anti-Seizure Efficacy Of Retigabine, Junzhan Jing, Corrinne Dunbar, Alina Sonesra, Ana Chavez, Suhyeorn Park, Ryan Yang, Heun Soh, Maxwell Lee, Anastasios V Tzingounis, Edward C Cooper, Xiaolong Jiang, Atul Maheshwari
Duncan NRI Faculty and Staff Publications
Anti-seizure drug (ASD) targets are widely expressed in both excitatory and inhibitory neurons. It remains unknown if the action of an ASD upon inhibitory neurons could counteract its beneficial effects on excitatory neurons (or vice versa), thereby reducing the efficacy of the ASD. Here, we examine whether the efficacy of the ASD retigabine (RTG) is altered after removal of the Kv7 potassium channel subunit KCNQ2, one of its drug targets, from parvalbumin-expressing interneurons (PV-INs). Parvalbumin-Cre (PV-Cre) mice were crossed with Kcnq2-floxed (Kcnq2fl/fl) mice to conditionally delete Kcnq2 from PV-INs. In these conditional knockout mice (cKO, PV-Kcnq2 …
Evidence For An Association Between Coffin-Siris Syndrome And Congenital Diaphragmatic Hernia, Yoel Gofin, Xiaonan Zhao, Amanda Gerard, Fernando Scaglia, Michael F Wangler, Samantha A Schrier Vergano, Daryl A Scott
Evidence For An Association Between Coffin-Siris Syndrome And Congenital Diaphragmatic Hernia, Yoel Gofin, Xiaonan Zhao, Amanda Gerard, Fernando Scaglia, Michael F Wangler, Samantha A Schrier Vergano, Daryl A Scott
Duncan NRI Faculty and Staff Publications
Coffin-Siris syndrome (CSS) is an autosomal dominant neurodevelopmental syndrome that can present with a variety of structural birth defects. Pathogenic variants in 12 genes have been shown to cause CSS. Most of these genes encode proteins that are a part of the mammalian switch/sucrose non-fermentable (mSWI/SNF; BAF) complex. An association between genes that cause CSS and congenital diaphragmatic hernia (CDH) has been suggested based on case reports and the analysis of CSS and CDH cohorts. Here, we describe an unpublished individual with CSS and CDH, and we report additional clinical information on four published cases. Data from these individuals, and …
Cancer-Driving Mutations Are Enriched In Genic Regions Intolerant To Germline Variation, Dimitrios Vitsios, Ryan S Dhindsa, Dorota Matelska, Jonathan Mitchell, Xuequing Zou, Joshua Armenia, Fengyuan Hu, Quanli Wang, Ben Sidders, Andrew R Harper, Slavé Petrovski
Cancer-Driving Mutations Are Enriched In Genic Regions Intolerant To Germline Variation, Dimitrios Vitsios, Ryan S Dhindsa, Dorota Matelska, Jonathan Mitchell, Xuequing Zou, Joshua Armenia, Fengyuan Hu, Quanli Wang, Ben Sidders, Andrew R Harper, Slavé Petrovski
Duncan NRI Faculty and Staff Publications
Large reference datasets of protein-coding variation in human populations have allowed us to determine which genes and genic subregions are intolerant to germline genetic variation. There is also a growing number of genes implicated in severe Mendelian diseases that overlap with genes implicated in cancer. We hypothesized that cancer-driving mutations might be enriched in genic subregions that are depleted of germline variation relative to somatic variation. We introduce a new metric, OncMTR (oncology missense tolerance ratio), which uses 125,748 exomes in the Genome Aggregation Database (gnomAD) to identify these genic subregions. We demonstrate that OncMTR can significantly predict driver mutations …
The Microrna Processor Drosha Is A Candidate Gene For A Severe Progressive Neurological Disorder, Scott Barish, Mumine Senturk, Kelly Schoch, Amanda L Minogue, Diego Lopergolo, Chiara Fallerini, Jake Harland, Jacob H Seemann, Nicholas Stong, Peter G Kranz, Sujay Kansagra, Mohamad A Mikati, Joan Jasien, Mays El-Dairi, Paolo Galluzzi, Francesca Ariani, Alessandra Renieri, Francesca Mari, Michael F Wangler, Swathi Arur, Yong-Hui Jiang, Shinya Yamamoto, Vandana Shashi, Hugo J Bellen
The Microrna Processor Drosha Is A Candidate Gene For A Severe Progressive Neurological Disorder, Scott Barish, Mumine Senturk, Kelly Schoch, Amanda L Minogue, Diego Lopergolo, Chiara Fallerini, Jake Harland, Jacob H Seemann, Nicholas Stong, Peter G Kranz, Sujay Kansagra, Mohamad A Mikati, Joan Jasien, Mays El-Dairi, Paolo Galluzzi, Francesca Ariani, Alessandra Renieri, Francesca Mari, Michael F Wangler, Swathi Arur, Yong-Hui Jiang, Shinya Yamamoto, Vandana Shashi, Hugo J Bellen
Faculty, Staff and Students Publications
DROSHA encodes a ribonuclease that is a subunit of the Microprocessor complex and is involved in the first step of microRNA (miRNA) biogenesis. To date, DROSHA has not yet been associated with a Mendelian disease. Here, we describe two individuals with profound intellectual disability, epilepsy, white matter atrophy, microcephaly and dysmorphic features, who carry damaging de novo heterozygous variants in DROSHA. DROSHA is constrained for missense variants and moderately intolerant to loss-of-function (o/e = 0.24). The loss of the fruit fly ortholog drosha causes developmental arrest and death in third instar larvae, a severe reduction in brain size and loss …
Novel Dominant And Recessive Variants In Human Robo1 Cause Distinct Neurodevelopmental Defects Through Different Mechanisms, Yan Huang, Mengqi Ma, Xiao Mao, Davut Pehlivan, Oguz Kanca, Feride Un-Candan, Li Shu, Gulsen Akay, Tadahiro Mitani, Shenzhao Lu, Sukru Candan, Hua Wang, Bo Xiao, James R Lupski, Hugo J Bellen
Novel Dominant And Recessive Variants In Human Robo1 Cause Distinct Neurodevelopmental Defects Through Different Mechanisms, Yan Huang, Mengqi Ma, Xiao Mao, Davut Pehlivan, Oguz Kanca, Feride Un-Candan, Li Shu, Gulsen Akay, Tadahiro Mitani, Shenzhao Lu, Sukru Candan, Hua Wang, Bo Xiao, James R Lupski, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
The Roundabout (Robo) receptors, located on growth cones of neurons, induce axon repulsion in response to the extracellular ligand Slit. The Robo family of proteins controls midline crossing of commissural neurons during development in flies. Mono- and bi-allelic variants in human ROBO1 (HGNC: 10249) have been associated with incomplete penetrance and variable expressivity for a breath of phenotypes, including neurodevelopmental defects such as strabismus, pituitary defects, intellectual impairment, as well as defects in heart and kidney. Here, we report two novel ROBO1 variants associated with very distinct phenotypes. A homozygous missense p.S1522L variant in three affected siblings with nystagmus; and …
Regulation Of Drosophila Oviduct Muscle Contractility By Octopamine, Sonali A Deshpande, Ethan W Rohrbach, James D Asuncion, Jenna Harrigan, Aditya Eamani, Ellery H Schlingmann, Daniel J Suto, Pei-Tseng Lee, Felix E Schweizer, Hugo J Bellen, David E Krantz
Regulation Of Drosophila Oviduct Muscle Contractility By Octopamine, Sonali A Deshpande, Ethan W Rohrbach, James D Asuncion, Jenna Harrigan, Aditya Eamani, Ellery H Schlingmann, Daniel J Suto, Pei-Tseng Lee, Felix E Schweizer, Hugo J Bellen, David E Krantz
Duncan NRI Faculty and Staff Publications
Octopamine is essential for egg-laying in
Improved Sars-Cov-2 Sequencing Surveillance Allows The Identification Of New Variants And Signatures In Infected Patients, Antonio Grimaldi, Francesco Panariello, Patrizia Annunziata, Teresa Giuliano, Michela Daniele, Biancamaria Pierri, Chiara Colantuono, Marcello Salvi, Valentina Bouché, Anna Manfredi, Maria Concetta Cuomo, Denise Di Concilio, Claudia Tiberio, Mariano Fiorenza, Giuseppe Portella, Ilaria Cimmino, Antonio Sorrentino, Giovanna Fusco, Maria Rosaria Granata, Pellegrino Cerino, Antonio Limone, Luigi Atripaldi, Andrea Ballabio, Davide Cacchiarelli
Improved Sars-Cov-2 Sequencing Surveillance Allows The Identification Of New Variants And Signatures In Infected Patients, Antonio Grimaldi, Francesco Panariello, Patrizia Annunziata, Teresa Giuliano, Michela Daniele, Biancamaria Pierri, Chiara Colantuono, Marcello Salvi, Valentina Bouché, Anna Manfredi, Maria Concetta Cuomo, Denise Di Concilio, Claudia Tiberio, Mariano Fiorenza, Giuseppe Portella, Ilaria Cimmino, Antonio Sorrentino, Giovanna Fusco, Maria Rosaria Granata, Pellegrino Cerino, Antonio Limone, Luigi Atripaldi, Andrea Ballabio, Davide Cacchiarelli
Duncan NRI Faculty and Staff Publications
Background: Genomic surveillance of severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the only approach to rapidly monitor and tackle emerging variants of concern (VOC) of the COVID-19 pandemic. Such scrutiny is crucial to limit the spread of VOC that might escape the immune protection conferred by vaccination strategies or previous virus exposure. It is also becoming clear now that efficient genomic surveillance would require monitoring of the host gene expression to identify prognostic biomarkers of treatment efficacy and disease progression. Here we propose an integrative workflow to both generate thousands of SARS-CoV-2 genome sequences per week and analyze host …
Identification Of The Nrf2 Transcriptional Network As A Therapeutic Target For Trigeminal Neuropathic Pain, Chirag Vasavda, Risheng Xu, Jason Liew, Ruchita Kothari, Ryan S Dhindsa, Evan R Semenza, Bindu D Paul, Dustin P Green, Mark F Sabbagh, Joseph Y Shin, Wuyang Yang, Adele M Snowman, Lauren K Albacarys, Abhay Moghekar, Carlos A Pardo-Villamizar, Mark Luciano, Judy Huang, Chetan Bettegowda, Shawn G Kwatra, Xinzhong Dong, Michael Lim, Solomon H Snyder
Identification Of The Nrf2 Transcriptional Network As A Therapeutic Target For Trigeminal Neuropathic Pain, Chirag Vasavda, Risheng Xu, Jason Liew, Ruchita Kothari, Ryan S Dhindsa, Evan R Semenza, Bindu D Paul, Dustin P Green, Mark F Sabbagh, Joseph Y Shin, Wuyang Yang, Adele M Snowman, Lauren K Albacarys, Abhay Moghekar, Carlos A Pardo-Villamizar, Mark Luciano, Judy Huang, Chetan Bettegowda, Shawn G Kwatra, Xinzhong Dong, Michael Lim, Solomon H Snyder
Duncan NRI Faculty and Staff Publications
Trigeminal neuralgia, historically dubbed the "suicide disease," is an exceedingly painful neurologic condition characterized by sudden episodes of intense facial pain. Unfortunately, the only U.S. Food and Drug Administration (FDA)-approved medication for trigeminal neuralgia carries substantial side effects, with many patients requiring surgery. Here, we identify the NRF2 transcriptional network as a potential therapeutic target. We report that cerebrospinal fluid from patients with trigeminal neuralgia accumulates reactive oxygen species, several of which directly activate the pain-transducing channel TRPA1. Similar to our patient cohort, a mouse model of trigeminal neuropathic pain also exhibits notable oxidative stress. We discover that stimulating the …
Ankle2-Related Microcephaly: A Variable Microcephaly Syndrome Resembling Zika Infection, Ajay X Thomas, Nichole Link, Laurie A Robak, Gail Demmler-Harrison, Emily C Pao, Audrey E Squire, Savannah Michels, Julie S Cohen, Anne Comi, Paolo Prontera, Alberto Verrotti Di Pianella, Giuseppe Di Cara, Livia Garavelli, Stefano Giuseppe Caraffi, Carlo Fusco, Roberta Zuntini, Kendall C Parks, Elliott H Sherr, Mais O Hashem, Sateesh Maddirevula, Fowzan S Alkuraya, Isphana A F Contractar, Jennifer E Neil, Christopher A Walsh, Hugo J Bellen, Hsiao-Tuan Chao, Robin D Clark, Ghayda M Mirzaa
Ankle2-Related Microcephaly: A Variable Microcephaly Syndrome Resembling Zika Infection, Ajay X Thomas, Nichole Link, Laurie A Robak, Gail Demmler-Harrison, Emily C Pao, Audrey E Squire, Savannah Michels, Julie S Cohen, Anne Comi, Paolo Prontera, Alberto Verrotti Di Pianella, Giuseppe Di Cara, Livia Garavelli, Stefano Giuseppe Caraffi, Carlo Fusco, Roberta Zuntini, Kendall C Parks, Elliott H Sherr, Mais O Hashem, Sateesh Maddirevula, Fowzan S Alkuraya, Isphana A F Contractar, Jennifer E Neil, Christopher A Walsh, Hugo J Bellen, Hsiao-Tuan Chao, Robin D Clark, Ghayda M Mirzaa
Duncan NRI Faculty and Staff Publications
Objective: This study delineates the clinical and molecular spectrum of ANKLE2-related microcephaly (MIC), as well as highlights shared pathological mechanisms between ANKLE2 and the Zika virus.
Methods: We identified 12 individuals with MIC and variants in ANKLE2 with a broad range of features. Probands underwent thorough phenotypic evaluations, developmental assessments, and anthropometric measurements. Brain imaging studies were systematically reviewed for developmental abnormalities. We functionally interrogated a subset of identified ANKLE2 variants in Drosophila melanogaster.
Results: All individuals had MIC (z-score ≤ -3), including nine with congenital MIC. We identified a broad range of brain abnormalities including simplified cortical gyral pattern, …
Sox9 Directs Divergent Epigenomic States In Brain Tumor Subtypes, Debosmita Sardar, Hsiao-Chi Chen, Amanda Reyes, Srinidhi Varadharajan, Antrix Jain, Carrie Mohila, Rachel Curry, Brittney Lozzi, Kavitha Rajendran, Alexis Cervantes, Kwanha Yu, Ali Jalali, Ganesh Rao, Stephen C Mack, Benjamin Deneen
Sox9 Directs Divergent Epigenomic States In Brain Tumor Subtypes, Debosmita Sardar, Hsiao-Chi Chen, Amanda Reyes, Srinidhi Varadharajan, Antrix Jain, Carrie Mohila, Rachel Curry, Brittney Lozzi, Kavitha Rajendran, Alexis Cervantes, Kwanha Yu, Ali Jalali, Ganesh Rao, Stephen C Mack, Benjamin Deneen
Duncan NRI Faculty and Staff Publications
Epigenetic dysregulation is a universal feature of cancer that results in altered patterns of gene expression that drive malignancy. Brain tumors exhibit subtype-specific epigenetic alterations; however, the molecular mechanisms responsible for these diverse epigenetic states remain unclear. Here, we show that the developmental transcription factor Sox9 differentially regulates epigenomic states in high-grade glioma (HGG) and ependymoma (EPN). Using our autochthonous mouse models, we found that Sox9 suppresses HGG growth and expands associated H3K27ac states, while promoting ZFTA-RELA (ZR
Neuronal Activity Induces Glucosylceramide That Is Secreted Via Exosomes For Lysosomal Degradation In Glia, Liping Wang, Guang Lin, Zhongyuan Zuo, Yarong Li, Seul Kee Byeon, Akhilesh Pandey, Hugo J Bellen
Neuronal Activity Induces Glucosylceramide That Is Secreted Via Exosomes For Lysosomal Degradation In Glia, Liping Wang, Guang Lin, Zhongyuan Zuo, Yarong Li, Seul Kee Byeon, Akhilesh Pandey, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
Recessive variants in GBA1 cause Gaucher disease, a prevalent form of lysosome storage disease. GBA1 encodes a lysosomal enzyme that hydrolyzes glucosylceramide (GlcCer) into glucose and ceramide. Its loss causes lysosomal dysfunction and increased levels of GlcCer. We generated a null allele of the Drosophila ortholog Gba1b by inserting the Gal4 using CRISPR-Cas9. Here, we show that Gba1b is expressed in glia but not in neurons. Glial-specific knockdown recapitulates the defects found in Gba1b mutants, and these can be rescued by glial expression of human GBA1. We show that GlcCer is synthesized upon neuronal activity, and it is transported …
Tfeb Induces Mitochondrial Itaconate Synthesis To Suppress Bacterial Growth In Macrophages, Ev-Marie Schuster, Maximilian W Epple, Katharina M Glaser, Michael Mihlan, Kerstin Lucht, Julia A Zimmermann, Anna Bremser, Aikaterini Polyzou, Nadine Obier, Nina Cabezas-Wallscheid, Eirini Trompouki, Andrea Ballabio, Jörg Vogel, Joerg M Buescher, Alexander J Westermann, Angelika S Rambold
Tfeb Induces Mitochondrial Itaconate Synthesis To Suppress Bacterial Growth In Macrophages, Ev-Marie Schuster, Maximilian W Epple, Katharina M Glaser, Michael Mihlan, Kerstin Lucht, Julia A Zimmermann, Anna Bremser, Aikaterini Polyzou, Nadine Obier, Nina Cabezas-Wallscheid, Eirini Trompouki, Andrea Ballabio, Jörg Vogel, Joerg M Buescher, Alexander J Westermann, Angelika S Rambold
Duncan NRI Faculty and Staff Publications
Successful elimination of bacteria in phagocytes occurs in the phago-lysosomal system, but also depends on mitochondrial pathways. Yet, how these two organelle systems communicate is largely unknown. Here we identify the lysosomal biogenesis factor transcription factor EB (TFEB) as regulator for phago-lysosome-mitochondria crosstalk in macrophages. By combining cellular imaging and metabolic profiling, we find that TFEB activation, in response to bacterial stimuli, promotes the transcription of aconitate decarboxylase (Acod1, Irg1) and synthesis of its product itaconate, a mitochondrial metabolite with antimicrobial activity. Activation of the TFEB-Irg1-itaconate signalling axis reduces the survival of the intravacuolar pathogen Salmonella enterica serovar Typhimurium. TFEB-driven …
Chemotherapy Coupled To Macrophage Inhibition Induces T-Cell And B-Cell Infiltration And Durable Regression In Triple-Negative Breast Cancer, Swarnima Singh, Nigel Lee, Diego A Pedroza, Igor L Bado, Clark Hamor, Licheng Zhang, Sergio Aguirre, Jingyuan Hu, Yichao Shen, Yitian Xu, Yang Gao, Na Zhao, Shu-Hsia Chen, Ying-Wooi Wan, Zhandong Liu, Jeffrey T Chang, Daniel Hollern, Charles M Perou, Xiang H F Zhang, Jeffrey M Rosen
Chemotherapy Coupled To Macrophage Inhibition Induces T-Cell And B-Cell Infiltration And Durable Regression In Triple-Negative Breast Cancer, Swarnima Singh, Nigel Lee, Diego A Pedroza, Igor L Bado, Clark Hamor, Licheng Zhang, Sergio Aguirre, Jingyuan Hu, Yichao Shen, Yitian Xu, Yang Gao, Na Zhao, Shu-Hsia Chen, Ying-Wooi Wan, Zhandong Liu, Jeffrey T Chang, Daniel Hollern, Charles M Perou, Xiang H F Zhang, Jeffrey M Rosen
Duncan NRI Faculty and Staff Publications
Immunosuppressive elements within the tumor microenvironment, such as tumor-associated macrophages (TAM), can present a barrier to successful anti-tumor responses by cytolytic T cells. Here we employed preclinical syngeneic p53 null mouse models of triple-negative breast cancer (TNBC) to develop a treatment regimen that harnessed the immunostimulatory effects of low-dose cyclophosphamide coupled with the pharmacologic inhibition of TAMs using either a small molecule CSF1R inhibitor or an anti-CSF1R antibody. This therapeutic combination was effective in treating several highly aggressive TNBC murine mammary tumor and lung metastasis models. Single cell RNA sequencing characterized tumor-infiltrating lymphocytes (TIL) including helper T cells and antigen-presenting …
De Novo Fzr1 Loss-Of-Function Variants Cause Developmental And Epileptic Encephalopathies, Sathiya N Manivannan, Jolien Roovers, Noor Smal, Candace T Myers, Dilsad Turkdogan, Filip Roelens, Oguz Kanca, Hyung-Lok Chung, Tasja Scholz, Katharina Hermann, Tatjana Bierhals, Hande S Caglayan, Hannah Stamberger, Mae Working Group Of Euroepinomics Res Consortium, Heather Mefford, Peter De Jonghe, Shinya Yamamoto, Sarah Weckhuysen, Hugo J Bellen
De Novo Fzr1 Loss-Of-Function Variants Cause Developmental And Epileptic Encephalopathies, Sathiya N Manivannan, Jolien Roovers, Noor Smal, Candace T Myers, Dilsad Turkdogan, Filip Roelens, Oguz Kanca, Hyung-Lok Chung, Tasja Scholz, Katharina Hermann, Tatjana Bierhals, Hande S Caglayan, Hannah Stamberger, Mae Working Group Of Euroepinomics Res Consortium, Heather Mefford, Peter De Jonghe, Shinya Yamamoto, Sarah Weckhuysen, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
FZR1, which encodes the Cdh1 subunit of the anaphase-promoting complex, plays an important role in neurodevelopment by regulating the cell cycle and by its multiple post-mitotic functions in neurons. In this study, evaluation of 250 unrelated patients with developmental and epileptic encephalopathies and a connection on GeneMatcher led to the identification of three de novo missense variants in FZR1. Whole-exome sequencing in 39 patient-parent trios and subsequent targeted sequencing in an additional cohort of 211 patients was performed to identify novel genes involved in developmental and epileptic encephalopathy. Functional studies in Drosophila were performed using three different mutant alleles of …
Modelmatcher: A Scientist-Centric Online Platform To Facilitate Collaborations Between Stakeholders Of Rare And Undiagnosed Disease Research, J Michael Harnish, Lucian Li, Sanja Rogic, Guillaume Poirier-Morency, Seon-Young Kim, Kym M Boycott, Michael F Wangler, Hugo J Bellen, Philip Hieter, Paul Pavlidis, Zhandong Liu, Shinya Yamamoto
Modelmatcher: A Scientist-Centric Online Platform To Facilitate Collaborations Between Stakeholders Of Rare And Undiagnosed Disease Research, J Michael Harnish, Lucian Li, Sanja Rogic, Guillaume Poirier-Morency, Seon-Young Kim, Kym M Boycott, Michael F Wangler, Hugo J Bellen, Philip Hieter, Paul Pavlidis, Zhandong Liu, Shinya Yamamoto
Duncan NRI Faculty and Staff Publications
Next-generation sequencing is a prevalent diagnostic tool for undiagnosed diseases and has played a significant role in rare disease gene discovery. While this technology resolves some cases, others are given a list of possibly damaging genetic variants necessitating functional studies. Productive collaborations between scientists, clinicians, and patients (affected individuals) can help resolve such medical mysteries, and provide insights into in vivo function of human genes. Furthermore, facilitating interactions between scientists and research funders, including non-profit organizations or commercial entities, can dramatically reduce the time to translate discoveries from bench to bedside. Several systems designed to connect clinicians and researchers with …
Parental Mosaicism For Apparent De Novo Genetic Variants: Scope, Detection, And Counseling Challenges, Roni Zemet, Ignatia B Van Den Veyver, Paweł Stankiewicz
Parental Mosaicism For Apparent De Novo Genetic Variants: Scope, Detection, And Counseling Challenges, Roni Zemet, Ignatia B Van Den Veyver, Paweł Stankiewicz
Duncan NRI Faculty and Staff Publications
The disease burden of de novo mutations (DNMs) has been evidenced only recently when the common application of next-generation sequencing technologies enabled their reliable and affordable detection through family-based clinical exome or genome sequencing. Implementation of exome sequencing into prenatal diagnostics revealed that up to 63% of pathogenic or likely pathogenic variants associated with fetal structural anomalies are apparently de novo, primarily for autosomal dominant disorders. Apparent DNMs have been considered to primarily occur as germline or zygotic events, with consequently negligible recurrence risks. However, there is now evidence that a considerable proportion of them are in fact inherited from …
Discovery Of Potent Bet Bromodomain 1 Stereoselective Inhibitors Using Dna-Encoded Chemical Library Selections, Ram K Modukuri, Zhifeng Yu, Zhi Tan, Hai Minh Ta, Melek Nihan Ucisik, Zhuang Jin, Justin L Anglin, Kiran L Sharma, Pranavanand Nyshadham, Feng Li, Kevin Riehle, John C Faver, Kevin Duong, Sureshbabu Nagarajan, Nicholas Simmons, Stephen S Palmer, Mingxing Teng, Damian W Young, Joanna S Yi, Choel Kim, Martin M Matzuk
Discovery Of Potent Bet Bromodomain 1 Stereoselective Inhibitors Using Dna-Encoded Chemical Library Selections, Ram K Modukuri, Zhifeng Yu, Zhi Tan, Hai Minh Ta, Melek Nihan Ucisik, Zhuang Jin, Justin L Anglin, Kiran L Sharma, Pranavanand Nyshadham, Feng Li, Kevin Riehle, John C Faver, Kevin Duong, Sureshbabu Nagarajan, Nicholas Simmons, Stephen S Palmer, Mingxing Teng, Damian W Young, Joanna S Yi, Choel Kim, Martin M Matzuk
Duncan NRI Faculty and Staff Publications
BRDT, BRD2, BRD3, and BRD4 comprise the bromodomain and extraterminal (BET) subfamily which contain two similar tandem bromodomains (BD1 and BD2). Selective BD1 inhibition phenocopies effects of tandem BET BD inhibition both in cancer models and, as we and others have reported of BRDT, in the testes. To find novel BET BD1 binders, we screened >4.5 billion molecules from our DNA-encoded chemical libraries with BRDT-BD1 or BRDT-BD2 proteins in parallel. A compound series enriched only by BRDT-BD1 was resynthesized off-DNA, uncovering a potent chiral compound, CDD-724, with >2,000-fold selectivity for inhibiting BRDT-BD1 over BRDT-BD2. CDD-724 stereoisomers exhibited remarkable differences in …
Biliverdin Reductase Bridges Focal Adhesion Kinase To Src To Modulate Synaptic Signaling, Chirag Vasavda, Evan R Semenza, Jason Liew, Ruchita Kothari, Ryan S Dhindsa, Shruthi Shanmukha, Anthony Lin, Robert Tokhunts, Cristina Ricco, Adele M Snowman, Lauren Albacarys, Francesco Pastore, Cristian Ripoli, Claudio Grassi, Eugenio Barone, Michael D Kornberg, Xinzhong Dong, Bindu D Paul, Solomon H Snyder
Biliverdin Reductase Bridges Focal Adhesion Kinase To Src To Modulate Synaptic Signaling, Chirag Vasavda, Evan R Semenza, Jason Liew, Ruchita Kothari, Ryan S Dhindsa, Shruthi Shanmukha, Anthony Lin, Robert Tokhunts, Cristina Ricco, Adele M Snowman, Lauren Albacarys, Francesco Pastore, Cristian Ripoli, Claudio Grassi, Eugenio Barone, Michael D Kornberg, Xinzhong Dong, Bindu D Paul, Solomon H Snyder
Duncan NRI Faculty and Staff Publications
Synapses connect discrete neurons into vast networks that send, receive, and encode diverse forms of information. Synaptic function and plasticity—the neuronal process of adapting to diverse and variable inputs—depend on the dynamic nature of synaptic molecular components, which is mediated in part by cell adhesion signaling pathways. Here, we found that the enzyme biliverdin reductase (BVR) physically links together key focal adhesion signaling molecules at the synapse. BVR-null (BVR−/−) mice exhibited substantial deficits in learning and memory on neurocognitive tests, and hippocampal slices in which BVR was postsynaptically depleted showed deficits in electrophysiological responses to stimuli. …
Cross-Species Genetic Screens Identify Transglutaminase 5 As A Regulator Of Polyglutamine-Expanded Ataxin-1, Won-Seok Lee, Ismael Al-Ramahi, Hyun-Hwan Jeong, Youjin Jang, Tao Lin, Carolyn J Adamski, Laura A Lavery, Smruti Rath, Ronald Richman, Vitaliy V Bondar, Elizabeth Alcala, Jean-Pierre Revelli, Harry T Orr, Zhandong Liu, Juan Botas, Huda Y Zoghbi
Cross-Species Genetic Screens Identify Transglutaminase 5 As A Regulator Of Polyglutamine-Expanded Ataxin-1, Won-Seok Lee, Ismael Al-Ramahi, Hyun-Hwan Jeong, Youjin Jang, Tao Lin, Carolyn J Adamski, Laura A Lavery, Smruti Rath, Ronald Richman, Vitaliy V Bondar, Elizabeth Alcala, Jean-Pierre Revelli, Harry T Orr, Zhandong Liu, Juan Botas, Huda Y Zoghbi
Duncan NRI Faculty and Staff Publications
Many neurodegenerative disorders are caused by abnormal accumulation of misfolded proteins. In spinocerebellar ataxia type 1 (SCA1), accumulation of polyglutamine-expanded (polyQ-expanded) ataxin-1 (ATXN1) causes neuronal toxicity. Lowering total ATXN1, especially the polyQ-expanded form, alleviates disease phenotypes in mice, but the molecular mechanism by which the mutant ATXN1 is specifically modulated is not understood. Here, we identified 22 mutant ATXN1 regulators by performing a cross-species screen of 7787 and 2144 genes in human cells and Drosophila eyes, respectively. Among them, transglutaminase 5 (TG5) preferentially regulated mutant ATXN1 over the WT protein. TG enzymes catalyzed cross-linking of ATXN1 in a polyQ-length–dependent manner, …