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Compound heterozygosity for loss-of-function lysyl-tRNA synthetase mutations in a patient with peripheral neuropathy

  • Heather M. McLaughlin
  • , Reiko Sakaguchi
  • , Cuiping Liu
  • , Takao Igarashi
  • , Davut Pehlivan
  • , Kristine Chu
  • , Ram Iyer
  • , Pedro Cruz
  • , Praveen F. Cherukuri
  • , Nancy F. Hansen
  • , James C. Mullikin
  • , Leslie G. Biesecker
  • , Thomas E. Wilson
  • , Victor Ionasescu
  • , Garth Nicholson
  • , Charles Searby
  • , Kevin Talbot
  • , Jeffrey M. Vance
  • , Stephan Züchner
  • , Kinga Szigeti
  • James R. Lupski, Ya Ming Hou, Eric D. Green, Anthony Antonellis
  • University of Michigan, Ann Arbor
  • Thomas Jefferson University
  • Baylor College of Medicine
  • National Institutes of Health
  • University of Iowa
  • ANZAC Research Institute
  • The University of Sydney
  • University of Oxford
  • University of Miami
  • Texas Children's Hospital Houston

Research output: Contribution to journalArticlepeer-review

176 Scopus citations

Abstract

Charcot-Marie-Tooth (CMT) disease comprises a genetically and clinically heterogeneous group of peripheral nerve disorders characterized by impaired distal motor and sensory function. Mutations in three genes encoding aminoacyl-tRNA synthetases (ARSs) have been implicated in CMT disease primarily associated with an axonal pathology. ARSs are ubiquitously expressed, essential enzymes responsible for charging tRNA molecules with their cognate amino acids. To further explore the role of ARSs in CMT disease, we performed a large-scale mutation screen of the 37 human ARS genes in a cohort of 355 patients with a phenotype consistent with CMT. Here we describe three variants (p.Leu133His, p.Tyr173SerfsX7, and p.Ile302Met) in the lysyl-tRNA synthetase (KARS) gene in two patients from this cohort. Functional analyses revealed that two of these mutations (p.Leu133His and p.Tyr173SerfsX7) severely affect enzyme activity. Interestingly, both functional variants were found in a single patient with CMT disease and additional neurological and non-neurological sequelae. Based on these data, KARS becomes the fourth ARS gene associated with CMT disease, indicating that this family of enzymes is specifically critical for axon function.

Original languageEnglish
Pages (from-to)560-566
Number of pages7
JournalAmerican Journal of Human Genetics
Volume87
Issue number4
DOIs
StatePublished - Oct 8 2010

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