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Meier S, et al.  (2005) Proline residues of transmembrane domains determine the sorting of inner membrane proteins in mitochondria. J Cell Biol 170(6):881-8

Abstract: Most inner membrane proteins of mitochondria are synthesized in the cytosol and reach the inner membrane using one of two alternative sorting pathways. On the stop transfer route, proteins are arrested during import at the level of the inner membrane. The conservative sorting pathway involves translocation through the inner membrane and insertion from the matrix. It is unclear how the translocase of the inner membrane 23 protein translocation machinery differentiates between the two classes of proteins. Here we show that proline residues in hydrophobic stretches strongly disfavor the translocation arrest of transmembrane domains (TMDs) and favor the transfer of preproteins to the matrix. We propose that proline residues, together with the hydrophobicity of the TMD and the presence of charged residues COOH-terminally flanking the TMD, are determinants of the intramitochondrial sorting of inner membrane proteins.

Status: Published Type: Journal Article | Research Support, Non-U.S. Gov't PubMed ID: 16157698

Topics addressed in this paper

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AFG3 CBP4 COX18 COX5A COX5B CYT1 DLD1 HEM14 MBA1 MRS2
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OMS1 OXA1 RIP1 SCO1 SCO2 SHE9 TCM62 TIM23 TIM50 YME1
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Topics Genes linked to topics (#21 )
YME2
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