4.4 Article

Structural characterization of CHCHD5 and CHCHD7: Two atypical human twin CX9C proteins

期刊

JOURNAL OF STRUCTURAL BIOLOGY
卷 180, 期 1, 页码 190-200

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jsb.2012.07.007

关键词

CHCH domain; Mitochondrial import; Mia40-dependent disulfide relay system; alpha-hairpin domain; Thiol-based redox chemistry; NMR

资金

  1. Access to Research Infrastructures activity in the 7th Framework Programme of the EC (Bio-NMR) [261863]
  2. Italian MIUR-FIRB PROTEO-MICA-RBRNO7BMCT
  3. Ente Cassa di Risparmio
  4. WeNMR project (European FP7 e-Infrastructure grant) [261572]
  5. national GRID Initiatives of Belgium, Italy, Germany
  6. Netherlands (via the Dutch BIG Grid project), Portugal, UK, South Africa
  7. Latin America GRID infrastructure via the Gisela+ project

向作者/读者索取更多资源

Twin CX9C proteins constitute a large protein family among all eukaryotes; are putative substrates of the mitochondrial Mia40-dependent import machinery; contain a coiled coil-helix-coiled coil-helix (CHCH) fold stabilized by two disulfide bonds as exemplified by three structures available for this family. However, they considerably differ at the primary sequence level and this prevents an accurate prediction of their structural models. With the aim of expanding structural information on CHCH proteins, here we structurally characterized human CHCHD5 and CHCHD7. While CHCHD5 has two weakly interacting CHCH domains which sample a range of limited conformations as a consequence of hydrophobic interactions. CHCHD7 has a third helix hydrophobically interacting with an extension of helix alpha 2, which is part of the CHCH domain. Upon reduction of the disulfide bonds both proteins become unstructured exposing hydrophobic patches, with the result of protein aggregation/precipitation. These results suggest a model where the molecular interactions guiding the protein recognition between Mia40 and the disulfide-reduced CHCHD5 and CHCHD7 substrates occurs in vivo when the latter proteins are partially embedded in the protein import pore of the outer membrane of mitochondria. (C) 2012 Elsevier Inc. All rights reserved.

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