Pleiotropy of autism-associated chromatin regulators

Author:

Lasser Micaela12ORCID,Sun Nawei12ORCID,Xu Yuxiao12,Wang Sheng12ORCID,Drake Sam12,Law Karen12ORCID,Gonzalez Silvano12,Wang Belinda123ORCID,Drury Vanessa12,Castillo Octavio12,Zaltsman Yefim12ORCID,Dea Jeanselle12ORCID,Bader Ethel12,McCluskey Kate E.12,State Matthew W.1234ORCID,Willsey A. Jeremy124ORCID,Willsey Helen Rankin125ORCID

Affiliation:

1. University of California, San Francisco 1 Department of Psychiatry and Behavioral Sciences , , San Francisco, CA 94143 , USA

2. Weill Institute for Neurosciences, University of California, San Francisco 2 , San Francisco, CA 94143 , USA

3. Langley Porter Psychiatric Institute, University of California, San Francisco 3 , San Francisco, CA 94143 , USA

4. Quantitative Biosciences Institute, University of California, San Francisco 4 , San Francisco, CA 94143 , USA

5. Chan Zuckerberg Biohub - San Francisco 5 , San Francisco, CA 94158 , USA

Abstract

ABSTRACT Gene ontology analyses of high-confidence autism spectrum disorder (ASD) risk genes highlight chromatin regulation and synaptic function as major contributors to pathobiology. Our recent functional work in vivo has additionally implicated tubulin biology and cellular proliferation. As many chromatin regulators, including the ASD risk genes ADNP and CHD3, are known to directly regulate both tubulins and histones, we studied the five chromatin regulators most strongly associated with ASD (ADNP, CHD8, CHD2, POGZ and KMT5B) specifically with respect to tubulin biology. We observe that all five localize to microtubules of the mitotic spindle in vitro in human cells and in vivo in Xenopus. Investigation of CHD2 provides evidence that mutations present in individuals with ASD cause a range of microtubule-related phenotypes, including disrupted localization of the protein at mitotic spindles, cell cycle stalling, DNA damage and cell death. Lastly, we observe that ASD genetic risk is significantly enriched among tubulin-associated proteins, suggesting broader relevance. Together, these results provide additional evidence that the role of tubulin biology and cellular proliferation in ASD warrants further investigation and highlight the pitfalls of relying solely on annotated gene functions in the search for pathological mechanisms.

Funder

Overlook International Foundation

National Institute of Mental Health

Chan Zuckerberg Biohub

Coalition to Cure CHD2

University of California San Francisco

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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