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American Association for the Advancement of Science, Science Advances, 10(9), 2023

DOI: 10.1126/sciadv.ade1463

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Mechanism of KMT5B haploinsufficiency in neurodevelopment in humans and mice

Journal article published in 2023 by Sarah E. Sheppard ORCID, Laura Bryant ORCID, Rochelle N. Wickramasekara ORCID, Courtney Vaccaro, Brynn Robertson, Jodi Hallgren ORCID, Jason Hulen, Cynthia J. Watson, Victor Faundes ORCID, Yannis Duffourd, Pearl Lee ORCID, M. Celeste Simon ORCID, Xavier de la Cruz ORCID, Natália Padilla ORCID, Marco Flores-Mendez ORCID and other authors.
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Data provided by SHERPA/RoMEO

Abstract

Pathogenic variants in KMT5B , a lysine methyltransferase, are associated with global developmental delay, macrocephaly, autism, and congenital anomalies (OMIM # 617788). Given the relatively recent discovery of this disorder, it has not been fully characterized. Deep phenotyping of the largest ( n = 43) patient cohort to date identified that hypotonia and congenital heart defects are prominent features that were previously not associated with this syndrome. Both missense variants and putative loss-of-function variants resulted in slow growth in patient-derived cell lines. KMT5B homozygous knockout mice were smaller in size than their wild-type littermates but did not have significantly smaller brains, suggesting relative macrocephaly, also noted as a prominent clinical feature. RNA sequencing of patient lymphoblasts and Kmt5b haploinsufficient mouse brains identified differentially expressed pathways associated with nervous system development and function including axon guidance signaling. Overall, we identified additional pathogenic variants and clinical features in KMT5B -related neurodevelopmental disorder and provide insights into the molecular mechanisms of the disorder using multiple model systems.