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Article

Dysregulation of The Chromatin Environment Leads to Differential Alternative Splicing as A Mechanism Of Disease In a Human Model of Autism Spectrum Disorders

2022-09-09

Abstract excerpt

<h4>ABSTRACT</h4> Autism spectrum disorder (ASD) affects 1 in 44 children. Chromatin regulatory proteins are overrepresented among genes that contain high risk variants in ASD. Disruption of the chromatin environment leads to widespread dysregulation of gene expression, which is traditionally thought as a mechanism of disease pathogenesis associated with ASD. Alternatively, alterations in chromatin dynamics could...

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Literature Corpus work
935ff750-eedb-52bf-a793-2a21a3ef07aa
DOI
10.1101/2022.09.08.507162
Open publication

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Dysregulation of The Chromatin Environment Leads to Differential Alternative Splicing as A Mechanism Of Disease In a Human Model of Autism Spectrum DisordersDOI 10.1101/2022.09.08.507162
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