A discrete pathway for the transfer of intermembrane space proteins across the outer membrane of mitochondria

2014 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​A discrete pathway for the transfer of intermembrane space proteins across the outer membrane of mitochondria​
Gornicka, A.; Bragoszewski, P.; Chroscicki, P.; Wenz, L.-S.; Schulz, C. ; Rehling, P.   & Chacinska, A.​ (2014) 
Molecular Biology of the Cell25(25) pp. 3999​-4009​.​ DOI: https://doi.org/10.1091/mbc.E14-06-1155 

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Authors
Gornicka, Agnieszka; Bragoszewski, Piotr; Chroscicki, Piotr; Wenz, Lena-Sophie; Schulz, Christian ; Rehling, Peter ; Chacinska, Agnieszka
Abstract
Mitochondrial proteins are synthesized on cytosolic ribosomes and imported into mitochondria with the help of protein translocases. For the majority of precursor proteins, the role of the translocase of the outer membrane (TOM) and mechanisms of their transport across the outer mitochondrial membrane are well recognized. However, little is known about the mode of membrane translocation for proteins that are targeted to the intermembrane space via the redox-driven mitochondrial intermembrane space import and assembly (MIA) pathway. On the basis of the results obtained from an in organello competition import assay, we hypothesized that MIA-dependent precursor proteins use an alternative pathway to cross the outer mitochondrial membrane. Here we demonstrate that this alternative pathway involves the protein channel formed by Tom40. We sought a translocation intermediate by expressing tagged versions of MIA-dependent proteins in vivo. We identified a transient interaction between our model substrates and Tom40. Of interest, outer membrane translocation did not directly involve other core components of the TOM complex, including Tom22. Thus MIA-dependent proteins take another route across the outer mitochondrial membrane that involves Tom40 in a form that is different from the canonical TOM complex.
Issue Date
2014
Journal
Molecular Biology of the Cell 
ISSN
1059-1524
eISSN
1939-4586
Language
English

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