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Mitochondrial PITRM1 peptidase loss-of-function in childhood cerebellar atrophy

Authors :
Tom Walsh
Paul Renbaum
Bassam Abu Libdeh
Pedro-Filipe Teixeira
Dario Brunetti
Reeval Segel
Rachel Beeri
Yeshaya Langer
Fouad Zahdeh
Ephrat Levy-Lahad
Suleyman Gulsuner
Enrico Baruffini
Ariella Weinberg-Shukron
Massimo Zeviani
Maher Shahrour
Roberta Ruotolo
Imad Dweikat
Elzbieta Glaser
Mary Claire King
Sharon Zeligson
Adi Aran
Brunetti, Dario [0000-0002-2740-9370]
King, Mary-Claire [0000-0001-9426-1743]
Zeviani, Massimo [0000-0002-9067-5508]
Apollo - University of Cambridge Repository
Publication Year :
2018
Publisher :
BMJ, 2018.

Abstract

ObjectiveTo identify the genetic basis of a childhood-onset syndrome of variable severity characterised by progressive spinocerebellar ataxia, mental retardation, psychotic episodes and cerebellar atrophy.MethodsIdentification of the underlying mutations by whole exome and whole genome sequencing. Consequences were examined in patients’ cells and in yeast.ResultsTwo brothers from a consanguineous Palestinian family presented with progressive spinocerebellar ataxia, mental retardation and psychotic episodes. Serial brain imaging showed severe progressive cerebellar atrophy. Whole exome sequencing revealed a novel mutation: pitrilysin metallopeptidase 1 (PITRM1) c.2795C>T, p.T931M, homozygous in the affected children and resulting in 95% reduction in PITRM1 protein. Whole genome sequencing revealed a chromosome X structural rearrangement that also segregated with the disease. Independently, two siblings from a second Palestinian family presented with similar, somewhat milder symptoms and the same PITRM1 mutation on a shared haplotype. PITRM1T931M carrier frequency was 0.027 (3/110) in the village of the first family evaluated, and 0/300 among Palestinians from other locales. PITRM1 is a mitochondrial matrix enzyme that degrades 10–65 amino acid oligopeptides, including the mitochondrial fraction of amyloid-beta peptide. Analysis of peptide cleavage activity by the PITRM1T931M protein revealed a significant decrease in the degradation capacity specifically of peptides ≥40 amino acids.ConclusionPITRM1T931M results in childhood-onset recessive cerebellar pathology. Severity of PITRM1-related disease may be affected by the degree of impairment in cleavage of mitochondrial long peptides. Disruption and deletion of X linked regulatory segments may also contribute to severity.

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....2abc59b9bb406afd3040708c895309a3
Full Text :
https://doi.org/10.17863/cam.32916