4.6 Article

Mia40 and MINOS act in parallel with Ccs1 in the biogenesis of mitochondrial Sod1

期刊

FEBS JOURNAL
卷 280, 期 20, 页码 4943-4959

出版社

WILEY
DOI: 10.1111/febs.12409

关键词

ALS; Mia40; MINOS/MICOS/MitOS; mitochondrial intermembrane space; protein biogenesis and transport

资金

  1. Foundation for Polish Science WELCOME Program
  2. EU within the European Regional Development Fund
  3. EMBO
  4. Polish Ministry of Science and Higher Education [N N301 298337]
  5. National Science Centre in Poland [2011/02/B/NZ2/01402]
  6. Swiss National Science Foundation
  7. Polish National Science Centre [2011/03/N/NZ3/01614]

向作者/读者索取更多资源

Superoxide dismutase1 (Sod1) is a major superoxide-scavenging enzyme in the eukaryotic cell, and is localized in the cytosol and intermembrane space of mitochondria. Sod1 requires its specific chaperone Ccs1 and disulfide bond formation in order to be retained in the intermembrane space. Our study identified a pool of Sod1 that is present in the reduced state in mitochondria that lack Ccs1. We created yeast mutants with mutations in highly conserved amino acid residues corresponding to human mutations that cause amyotrophic lateral sclerosis, and found that some of the mutant proteins were present in the reduced state. These mutant variants of Sod1 were efficiently localized in mitochondria. Localization of the reduced, Ccs1-independent forms of Sod1 relied on Mia40, an essential component of the mitochondrial intermembrane space import and assembly pathway that is responsible for the biogenesis of intermembrane space proteins. Furthermore, the mitochondrial inner membrane organizing system (MINOS), which is responsible for mitochondrial membrane architecture, differentially modulated the presence of reduced Sod1 in mitochondria. Thus, we identified novel mitochondrial players that are possibly involved in pathological conditions caused by changes in the biogenesis of Sod1.

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