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Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder.

Publication ,  Journal Article
Oláhová, M; Yoon, WH; Thompson, K; Jangam, S; Fernandez, L; Davidson, JM; Kyle, JE; Grove, ME; Fisk, DG; Kohler, JN; Holmes, M; Dries, AM ...
Published in: Am J Hum Genet
March 1, 2018

ATP synthase, H+ transporting, mitochondrial F1 complex, δ subunit (ATP5F1D; formerly ATP5D) is a subunit of mitochondrial ATP synthase and plays an important role in coupling proton translocation and ATP production. Here, we describe two individuals, each with homozygous missense variants in ATP5F1D, who presented with episodic lethargy, metabolic acidosis, 3-methylglutaconic aciduria, and hyperammonemia. Subject 1, homozygous for c.245C>T (p.Pro82Leu), presented with recurrent metabolic decompensation starting in the neonatal period, and subject 2, homozygous for c.317T>G (p.Val106Gly), presented with acute encephalopathy in childhood. Cultured skin fibroblasts from these individuals exhibited impaired assembly of F1FO ATP synthase and subsequent reduced complex V activity. Cells from subject 1 also exhibited a significant decrease in mitochondrial cristae. Knockdown of Drosophila ATPsynδ, the ATP5F1D homolog, in developing eyes and brains caused a near complete loss of the fly head, a phenotype that was fully rescued by wild-type human ATP5F1D. In contrast, expression of the ATP5F1D c.245C>T and c.317T>G variants rescued the head-size phenotype but recapitulated the eye and antennae defects seen in other genetic models of mitochondrial oxidative phosphorylation deficiency. Our data establish c.245C>T (p.Pro82Leu) and c.317T>G (p.Val106Gly) in ATP5F1D as pathogenic variants leading to a Mendelian mitochondrial disease featuring episodic metabolic decompensation.

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Published In

Am J Hum Genet

DOI

EISSN

1537-6605

Publication Date

March 1, 2018

Volume

102

Issue

3

Start / End Page

494 / 504

Location

United States

Related Subject Headings

  • Protein Subunits
  • Mutation
  • Mitochondrial Proton-Translocating ATPases
  • Mitochondria
  • Metabolic Diseases
  • Male
  • Loss of Function Mutation
  • Infant, Newborn
  • Infant
  • Humans
 

Citation

APA
Chicago
ICMJE
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Oláhová, M., Yoon, W. H., Thompson, K., Jangam, S., Fernandez, L., Davidson, J. M., … Wheeler, M. T. (2018). Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder. Am J Hum Genet, 102(3), 494–504. https://doi.org/10.1016/j.ajhg.2018.01.020
Oláhová, Monika, Wan Hee Yoon, Kyle Thompson, Sharayu Jangam, Liliana Fernandez, Jean M. Davidson, Jennifer E. Kyle, et al. “Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder.Am J Hum Genet 102, no. 3 (March 1, 2018): 494–504. https://doi.org/10.1016/j.ajhg.2018.01.020.
Oláhová M, Yoon WH, Thompson K, Jangam S, Fernandez L, Davidson JM, et al. Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder. Am J Hum Genet. 2018 Mar 1;102(3):494–504.
Oláhová, Monika, et al. “Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder.Am J Hum Genet, vol. 102, no. 3, Mar. 2018, pp. 494–504. Pubmed, doi:10.1016/j.ajhg.2018.01.020.
Oláhová M, Yoon WH, Thompson K, Jangam S, Fernandez L, Davidson JM, Kyle JE, Grove ME, Fisk DG, Kohler JN, Holmes M, Dries AM, Huang Y, Zhao C, Contrepois K, Zappala Z, Frésard L, Waggott D, Zink EM, Kim Y-M, Heyman HM, Stratton KG, Webb-Robertson B-JM, Undiagnosed Diseases Network, Snyder M, Merker JD, Montgomery SB, Fisher PG, Feichtinger RG, Mayr JA, Hall J, Barbosa IA, Simpson MA, Deshpande C, Waters KM, Koeller DM, Metz TO, Morris AA, Schelley S, Cowan T, Friederich MW, McFarland R, Van Hove JLK, Enns GM, Yamamoto S, Ashley EA, Wangler MF, Taylor RW, Bellen HJ, Bernstein JA, Wheeler MT. Biallelic Mutations in ATP5F1D, which Encodes a Subunit of ATP Synthase, Cause a Metabolic Disorder. Am J Hum Genet. 2018 Mar 1;102(3):494–504.
Journal cover image

Published In

Am J Hum Genet

DOI

EISSN

1537-6605

Publication Date

March 1, 2018

Volume

102

Issue

3

Start / End Page

494 / 504

Location

United States

Related Subject Headings

  • Protein Subunits
  • Mutation
  • Mitochondrial Proton-Translocating ATPases
  • Mitochondria
  • Metabolic Diseases
  • Male
  • Loss of Function Mutation
  • Infant, Newborn
  • Infant
  • Humans