bioRxiv · 10.1101/2024.03.13.584921
Enhancer-targeted CRISPR-Activation Rescues Haploinsufficient Autism Susceptibility Genes
Abstract
Autism Spectrum Disorder (ASD) is a highly heritable condition with diverse clinical presentations. Approximately 20% of ASDs genetic susceptibility is imparted by de novo mutations of major effect, most of which cause haploinsufficiency. We mapped enhancers of two high confidence autism genes - CHD8 and SCN2A and used CRISPR-based gene activation (CRISPR-A) in hPSC-derived excitatory neurons and cerebral forebrain organoids to correct the effects of haploinsufficiency, taking advantage of the presence of a wildtype allele of each gene and endogenous gene regulation. We found that CRISPR-A induced a sustained increase in CHD8 and SCN2A expression in neurons and organoids, with rescue of gene expression levels and mutation-associated phenotypes, including gene expression and physiology. These data support gene activation via targeting enhancers of haploinsufficient genes as a therapeutic intervention in ASD and other neurodevelopmental disorders.
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Chen, G. T., Nair, G., Osorio, A. J., Holley, S. M., Ghassemzadeh, K., Gonzalez, J. G., Lu, C., Sanjana, N. E., Cepeda, C., Geschwind, D.. 2024-03-14. Enhancer-targeted CRISPR-Activation Rescues Haploinsufficient Autism Susceptibility Genes. https://doi.org/10.1101/2024.03.13.584921
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