Biallelic PPA2 Mutations Cause Sudden Unexpected Cardiac Arrest in Infancy
Author(s) -
Anne Guimier,
Christopher T. Gordon,
François Godard,
Gianina Ravenscroft,
Myriam Oufadem,
Christelle Vasnier,
Caroline Rambaud,
Patrick Nitschké,
Christine BôleFeysot,
Cécile Masson,
Stéphane Dauger,
Cheryl Longman,
Nigel G. Laing,
B. Kugener,
Damien Bonnet,
Patrice Bouvagnet,
Sylvie Di Filippo,
Vincent Probst,
Richard Redon,
Philippe Charron,
Agnès Rötig,
Stanislas Lyonnet,
Alain Dautant,
Loïc de Pontual,
Jean-Paul di Rago,
Agnés Delahodde,
Jeanne Amiel
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.2016.06.021
Subject(s) - missense mutation , biology , mitochondrion , genetics , sudden death , mutation , gene , mitochondrial disease , mitochondrial dna , medicine
Sudden unexpected death in infancy occurs in apparently healthy infants and remains largely unexplained despite thorough investigation. The vast majority of cases are sporadic. Here we report seven individuals from three families affected by sudden and unexpected cardiac arrest between 4 and 20 months of age. Whole-exome sequencing revealed compound heterozygous missense mutations in PPA2 in affected infants of each family. PPA2 encodes the mitochondrial pyrophosphatase, which hydrolyzes inorganic pyrophosphate into two phosphates. This is an essential activity for many biosynthetic reactions and for energy metabolism of the cell. We show that deletion of the orthologous gene in yeast (ppa2Δ) compromises cell viability due to the loss of mitochondria. Expression of wild-type human PPA2, but not PPA2 containing the mutations identified in affected individuals, preserves mitochondrial function in ppa2Δ yeast. Using a regulatable (doxycycline-repressible) gene expression system, we found that the pathogenic PPA2 mutations rapidly inactivate the mitochondrial energy transducing system and prevent the maintenance of a sufficient electrical potential across the inner membrane, which explains the subsequent disappearance of mitochondria from the mutant yeast cells. Altogether these data demonstrate that PPA2 is an essential gene in yeast and that biallelic mutations in PPA2 cause a mitochondrial disease leading to sudden cardiac arrest in infants.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom