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De novo variants in MAPK8IP3 cause intellectual disability with variable brain anomalies

Authors :
Alexander P.A. Stegmann
Tzipora C. Falik-Zaccai
Constance Smith-Hicks
Fernando Kok
Kenneth G. Miller
Constance T. R. M. Stumpel
Konrad Platzer
Maria Teresa Bonati
Laurie A. Demmer
Alexander Pepler
Luiza Ramos
Kaitlin M. Angione
Megan T. Cho
Candace Gamble
Petra Stöbe
Hailey Pinz
Campbell Brasington
Hanna Mandel
Carolyn Wilson
Deepali N. Shinde
Maria Iascone
Rami Abou Jamra
Thorsten Marquardt
Johannes R. Lemke
Heinrich Sticht
Sonal Mahida
Yorck Hellenbroich
Nataliya Di Donato
William Allen
Kirsty McWalter
Stacey L. Edwards
Bianca Panis
MUMC+: DA KG Lab Centraal Lab (9)
Klinische Genetica
MUMC+: DA KG Polikliniek (9)
RS: GROW - R4 - Reproductive and Perinatal Medicine
Source :
Web of Science, American Journal of Human Genetics, 104(2), 203-212. Cell Press

Abstract

Using exome sequencing, we have identified de novo variants in MAPK8IP3 in 13 unrelated individuals presenting with an overlapping phenotype of mild to severe intellectual disability. The de novo variants comprise six missense variants, three of which are recurrent, and three truncating variants. Brain anomalies such as perisylvian polymicrogyria, cerebral or cerebellar atrophy, and hypoplasia of the corpus callosum were consistent among individuals harboring recurrent de novo missense variants. MAPK8IP3 has been shown to be involved in the retrograde axonal-transport machinery, but many of its specific functions are yet to be elucidated. Using the CRISPR-Cas9 system to target six conserved amino acid positions in Caenorhabditis elegans, we found that two of the six investigated human alterations led to a significantly elevated density of axonal lysosomes, and five variants were associated with adverse locomotion. Reverse-engineering normalized the observed adverse effects back to wild-type levels. Combining genetic, phenotypic, and functional findings, as well as the significant enrichment of de novo variants in MAPK8IP3 within our total cohort of 27,232 individuals who underwent exome sequencing, we implicate de novo variants in MAPK8IP3 as a cause of a neurodevelopmental disorder with intellectual disability and variable brain anomalies.

Details

ISSN :
00029297
Database :
OpenAIRE
Journal :
Web of Science, American Journal of Human Genetics, 104(2), 203-212. Cell Press
Accession number :
edsair.doi.dedup.....4cd27bfd250a24de4fe1d6e0758f8c56