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Biallelic truncating variants in ATP9A cause a novel neurodevelopmental disorder involving postnatal microcephaly and failure to thrive

Authors :
Sarah Verheyen
Denise Horn
Manuel Holtgrewe
Cornelia Potratz
Uwe Kornak
Stefan Mundlos
Björn Fischer-Zirnsak
Jasmin Blatterer
Felix Boschann
Guido Vogt
Nadja Ehmke
Sarina Schwartzmann
Michael R. Speicher
Anette Schwerin-Nagel
Barbara Plecko
Dominik Seelow
Source :
Journal of Medical Genetics. 59:662-668
Publication Year :
2021
Publisher :
BMJ, 2021.

Abstract

BackgroundGenes implicated in the Golgi and endosomal trafficking machinery are crucial for brain development, and mutations in them are particularly associated with postnatal microcephaly (POM).MethodsExome sequencing was performed in three affected individuals from two unrelated consanguineous families presenting with delayed neurodevelopment, intellectual disability of variable degree, POM and failure to thrive. Patient-derived fibroblasts were tested for functional effects of the variants.ResultsWe detected homozygous truncating variants in ATP9A. While the variant in family A is predicted to result in an early premature termination codon, the variant in family B affects a canonical splice site. Both variants lead to a substantial reduction of ATP9A mRNA expression. It has been shown previously that ATP9A localises to early and recycling endosomes, whereas its depletion leads to altered gene expression of components from this compartment. Consistent with previous findings, we also observed overexpression of ARPC3 and SNX3, genes strongly interacting with ATP9A.ConclusionIn aggregate, our findings show that pathogenic variants in ATP9A cause a novel autosomal recessive neurodevelopmental disorder with POM. While the physiological function of endogenous ATP9A is still largely elusive, our results underline a crucial role of this gene in endosomal transport in brain tissue.

Details

ISSN :
14686244 and 00222593
Volume :
59
Database :
OpenAIRE
Journal :
Journal of Medical Genetics
Accession number :
edsair.doi...........61979bd509a68506b156c6fe1d3a124e
Full Text :
https://doi.org/10.1136/jmedgenet-2021-107843