Literature DB >> 25294932

CHD8 regulates neurodevelopmental pathways associated with autism spectrum disorder in neural progenitors.

Aarathi Sugathan1, Marta Biagioli2, Christelle Golzio3, Serkan Erdin4, Ian Blumenthal4, Poornima Manavalan5, Ashok Ragavendran4, Harrison Brand1, Diane Lucente5, Judith Miles6, Steven D Sheridan1, Alexei Stortchevoi4, Manolis Kellis7, Stephen J Haggarty8, Nicholas Katsanis9, James F Gusella10, Michael E Talkowski11.   

Abstract

Truncating mutations of chromodomain helicase DNA-binding protein 8 (CHD8), and of many other genes with diverse functions, are strong-effect risk factors for autism spectrum disorder (ASD), suggesting multiple mechanisms of pathogenesis. We explored the transcriptional networks that CHD8 regulates in neural progenitor cells (NPCs) by reducing its expression and then integrating transcriptome sequencing (RNA sequencing) with genome-wide CHD8 binding (ChIP sequencing). Suppressing CHD8 to levels comparable with the loss of a single allele caused altered expression of 1,756 genes, 64.9% of which were up-regulated. CHD8 showed widespread binding to chromatin, with 7,324 replicated sites that marked 5,658 genes. Integration of these data suggests that a limited array of direct regulatory effects of CHD8 produced a much larger network of secondary expression changes. Genes indirectly down-regulated (i.e., without CHD8-binding sites) reflect pathways involved in brain development, including synapse formation, neuron differentiation, cell adhesion, and axon guidance, whereas CHD8-bound genes are strongly associated with chromatin modification and transcriptional regulation. Genes associated with ASD were strongly enriched among indirectly down-regulated loci (P < 10(-8)) and CHD8-bound genes (P = 0.0043), which align with previously identified coexpression modules during fetal development. We also find an intriguing enrichment of cancer-related gene sets among CHD8-bound genes (P < 10(-10)). In vivo suppression of chd8 in zebrafish produced macrocephaly comparable to that of humans with inactivating mutations. These data indicate that heterozygous disruption of CHD8 precipitates a network of gene-expression changes involved in neurodevelopmental pathways in which many ASD-associated genes may converge on shared mechanisms of pathogenesis.

Entities:  

Keywords:  CHD8; ChIP-seq; NPCs; RNA-seq; autism

Mesh:

Substances:

Year:  2014        PMID: 25294932      PMCID: PMC4210312          DOI: 10.1073/pnas.1405266111

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  53 in total

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3.  Mathematical formulae for the prediction of the residual beta cell function during the first two years of disease in children and adolescents with insulin-dependent diabetes mellitus.

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4.  Multiplex targeted sequencing identifies recurrently mutated genes in autism spectrum disorders.

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Journal:  Science       Date:  2012-11-15       Impact factor: 47.728

5.  AutismKB: an evidence-based knowledgebase of autism genetics.

Authors:  Li-Ming Xu; Jia-Rui Li; Yue Huang; Min Zhao; Xing Tang; Liping Wei
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6.  KCTD13 is a major driver of mirrored neuroanatomical phenotypes of the 16p11.2 copy number variant.

Authors:  Christelle Golzio; Jason Willer; Michael E Talkowski; Edwin C Oh; Yu Taniguchi; Sébastien Jacquemont; Alexandre Reymond; Mei Sun; Akira Sawa; James F Gusella; Atsushi Kamiya; Jacques S Beckmann; Nicholas Katsanis
Journal:  Nature       Date:  2012-05-16       Impact factor: 49.962

7.  Co-binding by YY1 identifies the transcriptionally active, highly conserved set of CTCF-bound regions in primate genomes.

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Journal:  Genome Biol       Date:  2013-12-31       Impact factor: 13.583

8.  Transcriptome analysis by strand-specific sequencing of complementary DNA.

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Journal:  Nucleic Acids Res       Date:  2009-07-20       Impact factor: 16.971

9.  SFARI Gene 2.0: a community-driven knowledgebase for the autism spectrum disorders (ASDs).

Authors:  Dan E Arking; Daniel B Campbell; Heather C Mefford; Eric M Morrow; Lauren A Weiss; Brett S Abrahams; Idan Menashe; Tim Wadkins; Sharmila Banerjee-Basu; Alan Packer
Journal:  Mol Autism       Date:  2013-10-03       Impact factor: 7.509

10.  Biological insights from 108 schizophrenia-associated genetic loci.

Authors: 
Journal:  Nature       Date:  2014-07-22       Impact factor: 49.962

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  140 in total

1.  Whole-genome deep-learning analysis identifies contribution of noncoding mutations to autism risk.

Authors:  Jian Zhou; Christopher Y Park; Chandra L Theesfeld; Aaron K Wong; Yuan Yuan; Claudia Scheckel; John J Fak; Julien Funk; Kevin Yao; Yoko Tajima; Alan Packer; Robert B Darnell; Olga G Troyanskaya
Journal:  Nat Genet       Date:  2019-05-27       Impact factor: 38.330

Review 2.  Genetics and genomics of psychiatric disease.

Authors:  Daniel H Geschwind; Jonathan Flint
Journal:  Science       Date:  2015-09-24       Impact factor: 47.728

3.  Chd8 Mutation Leads to Autistic-like Behaviors and Impaired Striatal Circuits.

Authors:  Randall J Platt; Yang Zhou; Ian M Slaymaker; Ashwin S Shetty; Niels R Weisbach; Jin-Ah Kim; Jitendra Sharma; Mitul Desai; Sabina Sood; Hannah R Kempton; Gerald R Crabtree; Guoping Feng; Feng Zhang
Journal:  Cell Rep       Date:  2017-04-11       Impact factor: 9.423

4.  Epigenetic changes in the developing brain: Effects on behavior.

Authors:  Eric B Keverne; Donald W Pfaff; Inna Tabansky
Journal:  Proc Natl Acad Sci U S A       Date:  2015-06-02       Impact factor: 11.205

Review 5.  Chromodomain helicase DNA-binding proteins in stem cells and human developmental diseases.

Authors:  Joseph A Micucci; Ethan D Sperry; Donna M Martin
Journal:  Stem Cells Dev       Date:  2015-02-25       Impact factor: 3.272

Review 6.  Transcribing the connectome: roles for transcription factors and chromatin regulators in activity-dependent synapse development.

Authors:  Liang-Fu Chen; Allen S Zhou; Anne E West
Journal:  J Neurophysiol       Date:  2017-05-10       Impact factor: 2.714

7.  SMCHD1 mutations associated with a rare muscular dystrophy can also cause isolated arhinia and Bosma arhinia microphthalmia syndrome.

Authors:  Natalie D Shaw; Harrison Brand; Zachary A Kupchinsky; Hemant Bengani; Lacey Plummer; Takako I Jones; Serkan Erdin; Kathleen A Williamson; Joe Rainger; Alexei Stortchevoi; Kaitlin Samocha; Benjamin B Currall; Donncha S Dunican; Ryan L Collins; Jason R Willer; Angela Lek; Monkol Lek; Malik Nassan; Shahrin Pereira; Tammy Kammin; Diane Lucente; Alexandra Silva; Catarina M Seabra; Colby Chiang; Yu An; Morad Ansari; Jacqueline K Rainger; Shelagh Joss; Jill Clayton Smith; Margaret F Lippincott; Sylvia S Singh; Nirav Patel; Jenny W Jing; Jennifer R Law; Nalton Ferraro; Alain Verloes; Anita Rauch; Katharina Steindl; Markus Zweier; Ianina Scheer; Daisuke Sato; Nobuhiko Okamoto; Christina Jacobsen; Jeanie Tryggestad; Steven Chernausek; Lisa A Schimmenti; Benjamin Brasseur; Claudia Cesaretti; Jose E García-Ortiz; Tatiana Pineda Buitrago; Orlando Perez Silva; Jodi D Hoffman; Wolfgang Mühlbauer; Klaus W Ruprecht; Bart L Loeys; Masato Shino; Angela M Kaindl; Chie-Hee Cho; Cynthia C Morton; Richard R Meehan; Veronica van Heyningen; Eric C Liao; Ravikumar Balasubramanian; Janet E Hall; Stephanie B Seminara; Daniel Macarthur; Steven A Moore; Koh-Ichiro Yoshiura; James F Gusella; Joseph A Marsh; John M Graham; Angela E Lin; Nicholas Katsanis; Peter L Jones; William F Crowley; Erica E Davis; David R FitzPatrick; Michael E Talkowski
Journal:  Nat Genet       Date:  2017-01-09       Impact factor: 38.330

8.  Loss-of-Function Mutations in UNC45A Cause a Syndrome Associating Cholestasis, Diarrhea, Impaired Hearing, and Bone Fragility.

Authors:  Clothilde Esteve; Ludmila Francescatto; Perciliz L Tan; Aurélie Bourchany; Cécile De Leusse; Evelyne Marinier; Arnaud Blanchard; Patrice Bourgeois; Céline Brochier-Armanet; Ange-Line Bruel; Arnauld Delarue; Yannis Duffourd; Emmanuelle Ecochard-Dugelay; Géraldine Hery; Frédéric Huet; Philippe Gauchez; Emmanuel Gonzales; Catherine Guettier-Bouttier; Mina Komuta; Caroline Lacoste; Raphaelle Maudinas; Karin Mazodier; Yves Rimet; Jean-Baptiste Rivière; Bertrand Roquelaure; Sabine Sigaudy; Xavier Stephenne; Christel Thauvin-Robinet; Julien Thevenon; Jacques Sarles; Nicolas Levy; Catherine Badens; Olivier Goulet; Jean-Pierre Hugot; Nicholas Katsanis; Laurence Faivre; Alexandre Fabre
Journal:  Am J Hum Genet       Date:  2018-02-08       Impact factor: 11.025

9.  Autism-linked CHD gene expression patterns during development predict multi-organ disease phenotypes.

Authors:  Sahrunizam Kasah; Christopher Oddy; M Albert Basson
Journal:  J Anat       Date:  2018-10-02       Impact factor: 2.610

10.  Co-localization between Sequence Constraint and Epigenomic Information Improves Interpretation of Whole-Genome Sequencing Data.

Authors:  Danqing Xu; Chen Wang; Krzysztof Kiryluk; Joseph D Buxbaum; Iuliana Ionita-Laza
Journal:  Am J Hum Genet       Date:  2020-04-02       Impact factor: 11.025

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