Skip to main navigation Skip to search Skip to main content

A Cysteinyl-tRNA Synthetase Mutation Causes Novel Autosomal-Dominant Inheritance of a Parkinsonism/Spinocerebellar-Ataxia Complex

  • Han Kui Liu
  • , Hong Lin Hao
  • , Hui You
  • , Feng Feng
  • , Xiu Hong Qi
  • , Xiao Yan Huang
  • , Bo Hou
  • , Chang Geng Tian
  • , Han Wang
  • , Huan Ming Yang
  • , Jian Wang
  • , Rui Wu
  • , Hui Fang
  • , Jiang Ning Zhou
  • , Jian Guo Zhang
  • , Zhen Xin Zhang
  • BGI-Shenzhen
  • BGI Genomics
  • Chinese Academy of Medical Sciences
  • University of Science and Technology of China
  • Peking University
  • Children's Hospital of Fudan University
  • Anhui Medical University

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

This study aimed to identify possible pathogenic genes in a 90-member family with a rare combination of multiple neurodegenerative disease phenotypes, which has not been depicted by the known neurodegenerative disease. We performed physical and neurological examinations with International Rating Scales to assess signs of ataxia, Parkinsonism, and cognitive function, as well as brain magnetic resonance imaging scans with seven sequences. We searched for co-segregations of abnormal repeat-expansion loci, pathogenic variants in known spinocerebellar ataxia-related genes, and novel rare mutations via whole-genome sequencing and linkage analysis. A rare co-segregating missense mutation in the CARS gene was validated by Sanger sequencing and the aminoacylation activity of mutant CARS was measured by spectrophotometric assay. This pedigree presented novel late-onset core characteristics including cerebellar ataxia, Parkinsonism, and pyramidal signs in all nine affected members. Brain magnetic resonance imaging showed cerebellar/pons atrophy, pontine-midline linear hyperintensity, decreased rCBF in the bilateral basal ganglia and cerebellar dentate nucleus, and hypo-intensities of the cerebellar dentate nuclei, basal ganglia, mesencephalic red nuclei, and substantia nigra, all of which suggested neurodegeneration. Whole-genome sequencing identified a novel pathogenic heterozygous mutation (E795V) in the CARS gene, meanwhile, exhibited none of the known repeat-expansions or point mutations in pathogenic genes. Remarkably, this CARS mutation causes a 20% decrease in aminoacylation activity to charge tRNACys with L-cysteine in protein synthesis compared with that of the wild type. All family members carrying a heterozygous mutation CARS (E795V) had the same clinical manifestations and neuropathological changes of Parkinsonism and spinocerebellar-ataxia. These findings identify novel pathogenesis of Parkinsonism-spinocerebellar ataxia and provide insights into its genetic architecture.

Original languageEnglish
Pages (from-to)1489-1501
Number of pages13
JournalNeuroscience Bulletin
Volume40
Issue number10
DOIs
StatePublished - Oct 2024
Externally publishedYes

Keywords

  • CARS gene
  • Parkinsonism
  • Spinocerebellar ataxia

Fingerprint

Dive into the research topics of 'A Cysteinyl-tRNA Synthetase Mutation Causes Novel Autosomal-Dominant Inheritance of a Parkinsonism/Spinocerebellar-Ataxia Complex'. Together they form a unique fingerprint.

Cite this