Cargando…

The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding

DnaJ homologues function in cooperation with hsp70 family members in various cellular processes including intracellular protein trafficking and folding. Three human DnaJ homologues present in the cytosol have been identified: dj1 (hsp40/hdj-1), dj2 (HSDJ/hdj-2), and neuronal tissue-specific hsj1. dj...

Descripción completa

Detalles Bibliográficos
Autores principales: Terada, Kazutoyo, Kanazawa, Masaki, Bukau, Bernd, Mori, Masataka
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2140199/
https://www.ncbi.nlm.nih.gov/pubmed/9382858
_version_ 1782143938569699328
author Terada, Kazutoyo
Kanazawa, Masaki
Bukau, Bernd
Mori, Masataka
author_facet Terada, Kazutoyo
Kanazawa, Masaki
Bukau, Bernd
Mori, Masataka
author_sort Terada, Kazutoyo
collection PubMed
description DnaJ homologues function in cooperation with hsp70 family members in various cellular processes including intracellular protein trafficking and folding. Three human DnaJ homologues present in the cytosol have been identified: dj1 (hsp40/hdj-1), dj2 (HSDJ/hdj-2), and neuronal tissue-specific hsj1. dj1 is thought to be engaged in folding of nascent polypeptides, whereas functions of the other DnaJ homologues remain to be elucidated. To investigate roles of dj2 and dj1, we developed a system of chaperone depletion from and readdition to rabbit reticulocyte lysates. Using this system, we found that heat shock cognate 70 protein (hsc70) and dj2, but not dj1, are involved in mitochondrial import of preornithine transcarbamylase. Bacterial DnaJ could replace mammalian dj2 in mitochondrial protein import. We also tested the effects of these DnaJ homologues on folding of guanidine-denatured firefly luciferase. Unexpectedly, dj2, but not dj1, together with hsc70 refolded the protein efficiently. We propose that dj2 is the functional partner DnaJ homologue of hsc70 in the mammalian cytosol. Bacterial DnaJ protein could replace mammalian dj2 in the refolding of luciferase. Thus, the cytosolic chaperone system for mitochondrial protein import and for protein folding is highly conserved, involving DnaK and DnaJ in bacteria, Ssa1–4p and Ydj1p in yeast, and hsc70 and dj2 in mammals.
format Text
id pubmed-2140199
institution National Center for Biotechnology Information
language English
publishDate 1997
publisher The Rockefeller University Press
record_format MEDLINE/PubMed
spelling pubmed-21401992008-05-01 The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding Terada, Kazutoyo Kanazawa, Masaki Bukau, Bernd Mori, Masataka J Cell Biol Article DnaJ homologues function in cooperation with hsp70 family members in various cellular processes including intracellular protein trafficking and folding. Three human DnaJ homologues present in the cytosol have been identified: dj1 (hsp40/hdj-1), dj2 (HSDJ/hdj-2), and neuronal tissue-specific hsj1. dj1 is thought to be engaged in folding of nascent polypeptides, whereas functions of the other DnaJ homologues remain to be elucidated. To investigate roles of dj2 and dj1, we developed a system of chaperone depletion from and readdition to rabbit reticulocyte lysates. Using this system, we found that heat shock cognate 70 protein (hsc70) and dj2, but not dj1, are involved in mitochondrial import of preornithine transcarbamylase. Bacterial DnaJ could replace mammalian dj2 in mitochondrial protein import. We also tested the effects of these DnaJ homologues on folding of guanidine-denatured firefly luciferase. Unexpectedly, dj2, but not dj1, together with hsc70 refolded the protein efficiently. We propose that dj2 is the functional partner DnaJ homologue of hsc70 in the mammalian cytosol. Bacterial DnaJ protein could replace mammalian dj2 in the refolding of luciferase. Thus, the cytosolic chaperone system for mitochondrial protein import and for protein folding is highly conserved, involving DnaK and DnaJ in bacteria, Ssa1–4p and Ydj1p in yeast, and hsc70 and dj2 in mammals. The Rockefeller University Press 1997-12-01 /pmc/articles/PMC2140199/ /pubmed/9382858 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 Article
Terada, Kazutoyo
Kanazawa, Masaki
Bukau, Bernd
Mori, Masataka
The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title_full The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title_fullStr The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title_full_unstemmed The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title_short The Human DnaJ Homologue dj2 Facilitates Mitochondrial Protein Import and Luciferase Refolding
title_sort human dnaj homologue dj2 facilitates mitochondrial protein import and luciferase refolding
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2140199/
https://www.ncbi.nlm.nih.gov/pubmed/9382858
work_keys_str_mv AT teradakazutoyo thehumandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT kanazawamasaki thehumandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT bukaubernd thehumandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT morimasataka thehumandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT teradakazutoyo humandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT kanazawamasaki humandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT bukaubernd humandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding
AT morimasataka humandnajhomologuedj2facilitatesmitochondrialproteinimportandluciferaserefolding