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Article Dans Une Revue Journal of Biological Chemistry Année : 2017

The thioreduction component CcmG confers efficiency and the heme ligation component CcmH ensures stereo-specificity during cytochrome c maturation

A.F. Verissimo
  • Fonction : Auteur
B.K. Hassani
J. Hwang
  • Fonction : Auteur
S. Steimle
  • Fonction : Auteur
N. Selamoglu
  • Fonction : Auteur
C. Sanders
  • Fonction : Auteur
C.E. Khatchikian
  • Fonction : Auteur
F. Daldal
  • Fonction : Auteur

Résumé

In many Gram-negative bacteria, including Rhodobacter capsulatus, cytochrome c maturation (Ccm) is carried out by a membrane-integral machinery composed of nine proteins (CcmA to I). During this process, the periplasmic thiol-disulfide oxidoreductase DsbA is thought to catalyze the formation of a disulfide bond between the Cys residues at the apocytochrome c heme-binding site (CXXCH). Subsequently, a Ccm-specific thi-oreductive pathway involving CcmG and CcmH reduces this disulfide bond to allow covalent heme ligation. Currently, the sequence of thioredox reactions occurring between these components and apocytochrome c and the identity of their active Cys residues are unknown. In this work, we first investigated protein–protein interactions among the apocytochrome c, CcmG, and the heme-ligation components CcmF, CcmH, and CcmI. We found that they all interact with each other, forming a CcmFGHI–apocytochrome c complex. Using purified wild-type CcmG, CcmH, and apocytochrome c, as well as their respective Cys mutant variants, we determined the rates of thiol-disulfide exchange reactions between selected pairs of Cys residues from these proteins. We established that CcmG can efficiently reduce the disulfide bond of apocytochrome c and also resolve a mixed disulfide bond formed between apocytochrome c and CcmH. We further show that Cys-45 of CcmH and Cys-34 of apocytochrome c are most likely to form this mixed disulfide bond, which is consistent with the stereo-specificity of the heme–apocytochrome c ligation reaction. We conclude that CcmG confers efficiency, and CcmH ensures stereo-specificity during Ccm and present a comprehensive model for thioreduction reactions that lead to heme–apocytochrome c ligation. © 2017 by The American Society for Biochemistry and Molecular Biology, Inc. Published in the U.S.A.

Dates et versions

hal-01631827 , version 1 (09-11-2017)

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Citer

A.F. Verissimo, B.K. Hassani, J. Hwang, S. Steimle, N. Selamoglu, et al.. The thioreduction component CcmG confers efficiency and the heme ligation component CcmH ensures stereo-specificity during cytochrome c maturation. Journal of Biological Chemistry, 2017, 292 (32), pp.13154-13167. ⟨10.1074/jbc.M117.794586⟩. ⟨hal-01631827⟩
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