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The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation

Tim44 is a protein of the mitochondrial inner membrane and serves as an adaptor protein for mtHsp70 that drives the import of preproteins in an ATP-dependent manner. In this study we have modified the interaction of Tim44 with mtHsp70 and characterized the consequences for protein translocation. By...

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Autores principales: Merlin, Alessio, Voos, Wolfgang, Maarse, Ammy C., Meijer, Michiel, Pfanner, Nikolaus, Rassow, Joachim
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1999
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2133122/
https://www.ncbi.nlm.nih.gov/pubmed/10352014
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author Merlin, Alessio
Voos, Wolfgang
Maarse, Ammy C.
Meijer, Michiel
Pfanner, Nikolaus
Rassow, Joachim
author_facet Merlin, Alessio
Voos, Wolfgang
Maarse, Ammy C.
Meijer, Michiel
Pfanner, Nikolaus
Rassow, Joachim
author_sort Merlin, Alessio
collection PubMed
description Tim44 is a protein of the mitochondrial inner membrane and serves as an adaptor protein for mtHsp70 that drives the import of preproteins in an ATP-dependent manner. In this study we have modified the interaction of Tim44 with mtHsp70 and characterized the consequences for protein translocation. By deletion of an 18-residue segment of Tim44 with limited similarity to J-proteins, the binding of Tim44 to mtHsp70 was weakened. We found that in the yeast Saccharomyces cerevisiae the deletion of this segment is lethal. To investigate the role of the 18-residue segment, we expressed Tim44(Δ18) in addition to the endogenous wild-type Tim44. Tim44(Δ18) is correctly targeted to mitochondria and assembles in the inner membrane import site. The coexpression of Tim44(Δ18) together with wild-type Tim44, however, does not stimulate protein import, but reduces its efficiency. In particular, the promotion of unfolding of preproteins during translocation is inhibited. mtHsp70 is still able to bind to Tim44(Δ18) in an ATP-regulated manner, but the efficiency of interaction is reduced. These results suggest that the J-related segment of Tim44 is needed for productive interaction with mtHsp70. The efficient cooperation of mtHsp70 with Tim44 facilitates the translocation of loosely folded preproteins and plays a crucial role in the import of preproteins which contain a tightly folded domain.
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spelling pubmed-21331222008-05-01 The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation Merlin, Alessio Voos, Wolfgang Maarse, Ammy C. Meijer, Michiel Pfanner, Nikolaus Rassow, Joachim J Cell Biol Regular Articles Tim44 is a protein of the mitochondrial inner membrane and serves as an adaptor protein for mtHsp70 that drives the import of preproteins in an ATP-dependent manner. In this study we have modified the interaction of Tim44 with mtHsp70 and characterized the consequences for protein translocation. By deletion of an 18-residue segment of Tim44 with limited similarity to J-proteins, the binding of Tim44 to mtHsp70 was weakened. We found that in the yeast Saccharomyces cerevisiae the deletion of this segment is lethal. To investigate the role of the 18-residue segment, we expressed Tim44(Δ18) in addition to the endogenous wild-type Tim44. Tim44(Δ18) is correctly targeted to mitochondria and assembles in the inner membrane import site. The coexpression of Tim44(Δ18) together with wild-type Tim44, however, does not stimulate protein import, but reduces its efficiency. In particular, the promotion of unfolding of preproteins during translocation is inhibited. mtHsp70 is still able to bind to Tim44(Δ18) in an ATP-regulated manner, but the efficiency of interaction is reduced. These results suggest that the J-related segment of Tim44 is needed for productive interaction with mtHsp70. The efficient cooperation of mtHsp70 with Tim44 facilitates the translocation of loosely folded preproteins and plays a crucial role in the import of preproteins which contain a tightly folded domain. The Rockefeller University Press 1999-05-31 /pmc/articles/PMC2133122/ /pubmed/10352014 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Regular Articles
Merlin, Alessio
Voos, Wolfgang
Maarse, Ammy C.
Meijer, Michiel
Pfanner, Nikolaus
Rassow, Joachim
The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title_full The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title_fullStr The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title_full_unstemmed The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title_short The J-related Segment of Tim44 Is Essential for Cell Viability: A Mutant Tim44 Remains in the Mitochondrial Import Site, but Inefficiently Recruits mtHsp70 and Impairs Protein Translocation
title_sort j-related segment of tim44 is essential for cell viability: a mutant tim44 remains in the mitochondrial import site, but inefficiently recruits mthsp70 and impairs protein translocation
topic Regular Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2133122/
https://www.ncbi.nlm.nih.gov/pubmed/10352014
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