Cerebral organoids containing an AUTS2 missense variant model microcephaly

Author:

Fair Summer R1,Schwind Wesley1,Julian Dominic L1,Biel Alecia1ORCID,Guo Gongbo1,Rutherford Ryan1,Ramadesikan Swetha1,Westfall Jesse1,Miller Katherine E1,Kararoudi Meisam Naeimi23,Hickey Scott E34,Mosher Theresa Mihalic1,McBride Kim L345,Neinast Reid5,Fitch James1,Lee Dean A23,White Peter13ORCID,Wilson Richard K13,Bedrosian Tracy A13ORCID,Koboldt Daniel C13,Hester Mark E136ORCID

Affiliation:

1. The Steve and Cindy Rasmussen Institute for Genomic Medicine, Abigail Wexner Research Institute at Nationwide Children’s Hospital , Columbus, OH , USA

2. Center for Childhood Cancer and Blood Diseases, Abigail Wexner Research Institute at Nationwide Children’s Hospital , Columbus, OH , USA

3. Department of Pediatrics, The Ohio State University College of Medicine , Columbus, OH , USA

4. Division of Genetic and Genomic Medicine, Abigail Wexner Research Institute at Nationwide Children’s Hospital , Columbus, OH , USA

5. Center for Cardiovascular Research, Abigail Wexner Research Institute at Nationwide Children’s Hospital , Columbus, OH , USA

6. Department of Neuroscience, The Ohio State University , Columbus, OH , USA

Abstract

Abstract Variants in the AUTS2 gene are associated with a broad spectrum of neurological conditions characterized by intellectual disability, microcephaly, and congenital brain malformations. Here, we use a human cerebral organoid model to investigate the pathophysiology of a heterozygous de novo missense AUTS2 variant identified in a patient with multiple neurological impairments including primary microcephaly and profound intellectual disability. Proband cerebral organoids exhibit reduced growth, deficits in neural progenitor cell (NPC) proliferation and disrupted NPC polarity within ventricular zone-like regions compared to control cerebral organoids. We used CRISPR-Cas9-mediated gene editing to correct this variant and demonstrate rescue of impaired organoid growth and NPC proliferative deficits. Single-cell RNA sequencing revealed a marked reduction of G1/S transition gene expression and alterations in WNT-β-catenin signalling within proband NPCs, uncovering a novel role for AUTS2 in NPCs during human cortical development. Collectively, these results underscore the value of cerebral organoids to investigate molecular mechanisms underlying AUTS2 syndrome.

Funder

Nationwide Foundation Pediatric Innovation Fund

Publisher

Oxford University Press (OUP)

Subject

Neurology (clinical)

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