Perrault syndrome is caused by recessive mutations in CLPP, encoding a mitochondrial ATP-dependent chambered protease.

TitlePerrault syndrome is caused by recessive mutations in CLPP, encoding a mitochondrial ATP-dependent chambered protease.
Publication TypeJournal Article
Year of Publication2013
AuthorsJenkinson, EM, Rehman, AU, Walsh, T, Clayton-Smith, J, Lee, K, Morell, RJ, Drummond, MC, Khan, SN, Naeem, MAsif, Rauf, B, Billington, N, Schultz, JM, Urquhart, JE, Lee, MK, Berry, A, Hanley, NA, Mehta, S, Cilliers, D, Clayton, PE, Kingston, H, Smith, MJ, Warner, TT, Black, GC, Trump, D, Davis, JRE, Ahmad, W, Leal, SM, Riazuddin, S, King, M-C, Friedman, TB, Newman, WG
Corporate AuthorsUniversity of Washington Center for Mendelian Genomics
JournalAm J Hum Genet
Volume92
Issue4
Pagination605-13
Date Published2013 Apr 04
ISSN1537-6605
KeywordsAdenosine Triphosphate, Adolescent, Adult, ATP-Dependent Proteases, Endopeptidase Clp, Exome, Female, Genes, Recessive, Gonadal Dysgenesis, 46,XX, Hearing Loss, Sensorineural, Homozygote, Humans, In Situ Hybridization, Male, Mitochondria, Mutation, Pedigree, Phenotype, Young Adult
Abstract

Perrault syndrome is a genetically and clinically heterogeneous autosomal-recessive condition characterized by sensorineural hearing loss and ovarian failure. By a combination of linkage analysis, homozygosity mapping, and exome sequencing in three families, we identified mutations in CLPP as the likely cause of this phenotype. In each family, affected individuals were homozygous for a different pathogenic CLPP allele: c.433A>C (p.Thr145Pro), c.440G>C (p.Cys147Ser), or an experimentally demonstrated splice-donor-site mutation, c.270+4A>G. CLPP, a component of a mitochondrial ATP-dependent proteolytic complex, is a highly conserved endopeptidase encoded by CLPP and forms an element of the evolutionarily ancient mitochondrial unfolded-protein response (UPR(mt)) stress signaling pathway. Crystal-structure modeling suggests that both substitutions would alter the structure of the CLPP barrel chamber that captures unfolded proteins and exposes them to proteolysis. Together with the previous identification of mutations in HARS2, encoding mitochondrial histidyl-tRNA synthetase, mutations in CLPP expose dysfunction of mitochondrial protein homeostasis as a cause of Perrault syndrome.

DOI10.1016/j.ajhg.2013.02.013
Alternate JournalAm. J. Hum. Genet.
PubMed ID23541340
PubMed Central IDPMC3617381
Grant ListU54 HG006493 / HG / NHGRI NIH HHS / United States
N01HG65403 / HG / NHGRI NIH HHS / United States
R01 DC011651 / DC / NIDCD NIH HHS / United States
N01 HG065403 / HG / NHGRI NIH HHS / United States
R01 DC005641 / DC / NIDCD NIH HHS / United States
Z01 DC000039 / DC / NIDCD NIH HHS / United States
R01 DC003594 / DC / NIDCD NIH HHS / United States
/ / Intramural NIH HHS / United States
Z01 HL004232 / HL / NHLBI NIH HHS / United States
T32 DC000039 / DC / NIDCD NIH HHS / United States
K08 HL004232 / HL / NHLBI NIH HHS / United States
088566 / / Wellcome Trust / United Kingdom
DC000039-15 / DC / NIDCD NIH HHS / United States
UM1 HG006493 / HG / NHGRI NIH HHS / United States
R01 CA157744 / CA / NCI NIH HHS / United States
/ / Wellcome Trust / United Kingdom