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Recurrent De Novo and Biallelic Variation of ATAD3A , Encoding a Mitochondrial Membrane Protein, Results in Distinct Neurological Syndromes
Author(s) -
Tamar Harel,
Wan Hee Yoon,
Caterina Garone,
Shen Gu,
Zeynep CobanAkdemir,
Mohammad K. Eldomery,
Jennifer E. Posey,
Shalini N. Jhangiani,
Jill A. Rosenfeld,
Megan T. Cho,
Stéphanie Fox,
Marjorie Withers,
Stephanie Brooks,
Theodore Chiang,
Lita Duraine,
Serkan Erdin,
Bo Yuan,
Yunru Shao,
Elie Moussallem,
Costanza Lamperti,
Maria Alice Donati,
Joshua D. Smith,
Heather M. McLaughlin,
Christine M. Eng,
Magdalena Walkiewicz,
Fan Xia,
Tommaso Pippucci,
Pamela Magini,
Marco Seri,
Massimo Zeviani,
Michio Hirano,
Jill V. Hunter,
Myriam Srour,
Stefano Zanigni,
Richard A. Lewis,
Donna M. Muzny,
Timothy Lotze,
Eric Boerwinkle,
Richard A. Gibbs,
Scott E. Hickey,
Brett H. Graham,
Yaping Yang,
Daniela Buhaş,
Donna M. Martin,
Lorraine Potocki,
Claudio Graziano,
Hugo J. Bellen,
James R. Lupski
Publication year - 2016
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2016.08.007
Subject(s) - biology , mitochondrion , dnaja3 , genetics , mitophagy , mitochondrial fusion , inner mitochondrial membrane , mfn2 , microbiology and biotechnology , mitochondrial dna , gene , autophagy , apoptosis
ATPase family AAA-domain containing protein 3A (ATAD3A) is a nuclear-encoded mitochondrial membrane protein implicated in mitochondrial dynamics, nucleoid organization, protein translation, cell growth, and cholesterol metabolism. We identified a recurrent de novo ATAD3A c.1582C>T (p.Arg528Trp) variant by whole-exome sequencing (WES) in five unrelated individuals with a core phenotype of global developmental delay, hypotonia, optic atrophy, axonal neuropathy, and hypertrophic cardiomyopathy. We also describe two families with biallelic variants in ATAD3A, including a homozygous variant in two siblings, and biallelic ATAD3A deletions mediated by nonallelic homologous recombination (NAHR) between ATAD3A and gene family members ATAD3B and ATAD3C. Tissue-specific overexpression of bor R534W , the Drosophila mutation homologous to the human c.1582C>T (p.Arg528Trp) variant, resulted in a dramatic decrease in mitochondrial content, aberrant mitochondrial morphology, and increased autophagy. Homozygous null bor larvae showed a significant decrease of mitochondria, while overexpression of bor WT resulted in larger, elongated mitochondria. Finally, fibroblasts of an affected individual exhibited increased mitophagy. We conclude that the p.Arg528Trp variant functions through a dominant-negative mechanism that results in small mitochondria that trigger mitophagy, resulting in a reduction in mitochondrial content. ATAD3A variation represents an additional link between mitochondrial dynamics and recognizable neurological syndromes, as seen with MFN2, OPA1, DNM1L, and STAT2 mutations.

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