NAA10 mutation causing a novel intellectual disability syndrome with Long QT due to N-terminal acetyltransferase impairment
We report two brothers from a non-consanguineous Irish family presenting with a novel syndrome characterised by intellectual disability, facial dysmorphism, scoliosis and long QT. Their mother has a milder phenotype including long QT. X-linked inheritance was suspected. Whole exome sequencing identi...
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Veröffentlicht in: | Scientific reports 2015-11, Vol.5 (1), p.16022-16022, Article 16022 |
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Sprache: | eng |
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Zusammenfassung: | We report two brothers from a non-consanguineous Irish family presenting with a novel syndrome characterised by intellectual disability, facial dysmorphism, scoliosis and long QT. Their mother has a milder phenotype including long QT. X-linked inheritance was suspected. Whole exome sequencing identified a novel missense variant (c.128 A > C; p.Tyr43Ser) in
NAA10
(X chromosome) as the cause of the family’s disorder. Sanger sequencing confirmed that the mutation arose
de novo
in the carrier mother.
NAA10
encodes the catalytic subunit of the major human N-terminal acetylation complex NatA.
In vitro
assays for the p.Tyr43Ser mutant enzyme showed a significant decrease in catalytic activity and reduced stability compared to wild-type Naa10 protein.
NAA10
has previously been associated with Ogden syndrome, Lenz microphthalmia syndrome and non-syndromic developmental delay. Our findings expand the clinical spectrum of
NAA10
and suggest that the proposed correlation between mutant Naa10 enzyme activity and phenotype severity is more complex than anticipated; the p.Tyr43Ser mutant enzyme has less catalytic activity than the p.Ser37Pro mutant associated with lethal Ogden syndrome but results in a milder phenotype. Importantly, we highlight the need for cardiac assessment in males and females with
NAA10
variants as both patients and carriers can have long QT. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/srep16022 |