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Mia40 targets cysteines in a hydrophobic environment to direct oxidative protein folding in the mitochondria
- Source :
- Nature communications. 5
- Publication Year :
- 2013
-
Abstract
- Mia40 catalyses the oxidative folding of disulphide-containing proteins in the mitochondria. The folding pathway is directed by the formation of the first mixed disulphide between Mia40 and its substrate. Here, we employ Cox17 to elucidate the molecular determinants of this reaction. Mia40 engages initially in a dynamic non-covalent enzyme–substrate complex that forms and dissociates within milliseconds. Cys36 of Cox17 forms the mixed disulphide in an extremely rapid reaction that is limited by the preceding complex formation with Mia40. Cys36 reacts much faster than the three other cysteines of Cox17, because it neighbours three hydrophobic residues. Mia40 binds preferentially to hydrophobic regions and the dynamic nature of the non-covalent complex allows rapid reorientation for an optimal positioning of the reactive cysteine. Mia40 thus uses the unique proximity between its substrate-binding site and the catalytic disulphide to select a particular cysteine for forming the critical initial mixed disulphide. Proteins containing multiple disulphide bonds fold more efficiently if these bonds are formed in a defined order. Koch et al.find that the mitochondrial thiol oxidase Mia40 achieves this by preferentially targeting cysteine residues within a hydrophobic context.
- Subjects :
- Protein Folding
Saccharomyces cerevisiae Proteins
Stereochemistry
Molecular Sequence Data
General Physics and Astronomy
Context (language use)
Mitochondrial Membrane Transport Proteins
Models, Biological
General Biochemistry, Genetics and Molecular Biology
Mitochondrial Proteins
COX17
Copper Transport Proteins
Thiol oxidase
Mitochondrial Precursor Protein Import Complex Proteins
Animals
Amino Acid Sequence
Cysteine
Disulfides
Peptide sequence
Cation Transport Proteins
Multidisciplinary
biology
Chemistry
Oxidative folding
General Chemistry
Mitochondria
Folding (chemistry)
Biochemistry
biology.protein
Protein folding
Hydrophobic and Hydrophilic Interactions
Oxidation-Reduction
Molecular Chaperones
Subjects
Details
- ISSN :
- 20411723
- Volume :
- 5
- Database :
- OpenAIRE
- Journal :
- Nature communications
- Accession number :
- edsair.doi.dedup.....4603273d82047089e7e439405d7a1d21