Identification of disease-linked hyperactivating mutations in UBE3A through large-scale functional variant analysis

Author:

Weston Kellan P.,Gao Xiaoyi,Zhao JinghanORCID,Kim Kwang-Soo,Maloney Susan E.,Gotoff Jill,Parikh Sumit,Leu Yen-Chen,Wu Kuen-PhonORCID,Shinawi MarwanORCID,Steimel Joshua P.,Harrison Joseph S.,Yi Jason J.ORCID

Abstract

AbstractThe mechanisms that underlie the extensive phenotypic diversity in genetic disorders are poorly understood. Here, we develop a large-scale assay to characterize the functional valence (gain or loss-of-function) of missense variants identified in UBE3A, the gene whose loss-of-function causes the neurodevelopmental disorder Angelman syndrome. We identify numerous gain-of-function variants including a hyperactivating Q588E mutation that strikingly increases UBE3A activity above wild-type UBE3A levels. Mice carrying the Q588E mutation exhibit aberrant early-life motor and communication deficits, and individuals possessing hyperactivating UBE3A variants exhibit affected phenotypes that are distinguishable from Angelman syndrome. Additional structure-function analysis reveals that Q588 forms a regulatory site in UBE3A that is conserved among HECT domain ubiquitin ligases and perturbed in various neurodevelopmental disorders. Together, our study indicates that excessive UBE3A activity increases the risk for neurodevelopmental pathology and suggests that functional variant analysis can help delineate mechanistic subtypes in monogenic disorders.

Funder

Simons Foundation

Brain and Behavior Research Foundation

Angelman Syndrome Foundation

Whitehall Foundation

U.S. Department of Health & Human Services | NIH | National Institute of Mental Health

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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