Literature DB >> 21811887

Reactivation of protein aggregates by mortalin and Tid1--the human mitochondrial Hsp70 chaperone system.

Ohad Iosefson1, Shelly Sharon, Pierre Goloubinoff, Abdussalam Azem.   

Abstract

The mitochondrial 70-kDa heat shock protein (mtHsp70), also known in humans as mortalin, is a central component of the mitochondrial protein import motor and plays a key role in the folding of matrix-localized mitochondrial proteins. MtHsp70 is assisted by a member of the 40-kDa heat shock protein co-chaperone family named Tid1 and a nucleotide exchange factor. Whereas, yeast mtHsp70 has been extensively studied in the context of protein import in the mitochondria, and the bacterial 70-kDa heat shock protein was recently shown to act as an ATP-fuelled unfolding enzyme capable of detoxifying stably misfolded polypeptides into harmless natively refolded proteins, little is known about the molecular functions of the human mortalin in protein homeostasis. Here, we developed novel and efficient purification protocols for mortalin and the two spliced versions of Tid1, Tid1-S, and Tid1-L and showed that mortalin can mediate the in vitro ATP-dependent reactivation of stable-preformed heat-denatured model aggregates, with the assistance of Mge1 and either Tid1-L or Tid1-S co-chaperones or yeast Mdj1. Thus, in addition of being a central component of the protein import machinery, human mortalin together with Tid1, may serve as a protein disaggregating machine which, for lack of Hsp100/ClpB disaggregating co-chaperones, may carry alone the scavenging of toxic protein aggregates in stressed, diseased, or aging human mitochondria.

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Year:  2011        PMID: 21811887      PMCID: PMC3227851          DOI: 10.1007/s12192-011-0285-3

Source DB:  PubMed          Journal:  Cell Stress Chaperones        ISSN: 1355-8145            Impact factor:   3.667


  52 in total

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Authors:  T Laufen; M P Mayer; C Beisel; D Klostermeier; A Mogk; J Reinstein; B Bukau
Journal:  Proc Natl Acad Sci U S A       Date:  1999-05-11       Impact factor: 11.205

Review 2.  Translocation of proteins into mitochondria.

Authors:  Walter Neupert; Johannes M Herrmann
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3.  Hsp70 chaperone ligands control domain association via an allosteric mechanism mediated by the interdomain linker.

Authors:  Joanna F Swain; Gizem Dinler; Renuka Sivendran; Diana L Montgomery; Mathias Stotz; Lila M Gierasch
Journal:  Mol Cell       Date:  2007-04-13       Impact factor: 17.970

Review 4.  The Hsp70 chaperone machines of Escherichia coli: a paradigm for the repartition of chaperone functions.

Authors:  Pierre Genevaux; Costa Georgopoulos; William L Kelley
Journal:  Mol Microbiol       Date:  2007-10-04       Impact factor: 3.501

5.  Tid1 isoforms are mitochondrial DnaJ-like chaperones with unique carboxyl termini that determine cytosolic fate.

Authors:  Bin Lu; Nuria Garrido; Johannes N Spelbrink; Carolyn K Suzuki
Journal:  J Biol Chem       Date:  2006-03-10       Impact factor: 5.157

Review 6.  The mechanism of Hsp70 chaperones: (entropic) pulling the models together.

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Authors:  A Szabo; T Langer; H Schröder; J Flanagan; B Bukau; F U Hartl
Journal:  Proc Natl Acad Sci U S A       Date:  1994-10-25       Impact factor: 11.205

Review 8.  Three faces of mortalin: a housekeeper, guardian and killer.

Authors:  Sunil C Kaul; Custer C Deocaris; Renu Wadhwa
Journal:  Exp Gerontol       Date:  2006-12-22       Impact factor: 4.032

Review 9.  The heat shock protein 70 family: Highly homologous proteins with overlapping and distinct functions.

Authors:  Mads Daugaard; Mikkel Rohde; Marja Jäättelä
Journal:  FEBS Lett       Date:  2007-05-25       Impact factor: 4.124

10.  Discovery of genes activated by the mitochondrial unfolded protein response (mtUPR) and cognate promoter elements.

Authors:  Jonathan E Aldridge; Tomohisa Horibe; Nicholas J Hoogenraad
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  22 in total

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Journal:  Cell Stress Chaperones       Date:  2018-12-01       Impact factor: 3.667

2.  Crystal structure of the nucleotide-binding domain of mortalin, the mitochondrial Hsp70 chaperone.

Authors:  Joseph Amick; Simon E Schlanger; Christine Wachnowsky; Mitchell A Moseng; Corey C Emerson; Michelle Dare; Wen-I Luo; Sujay S Ithychanda; Jay C Nix; J A Cowan; Richard C Page; Saurav Misra
Journal:  Protein Sci       Date:  2014-04-17       Impact factor: 6.725

3.  A novel variant of the human mitochondrial DnaJ protein, Tid1, associates with a human disease exhibiting developmental delay and polyneuropathy.

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Review 4.  Mitochondrial Stress Response and Cancer.

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Journal:  Trends Cancer       Date:  2020-05-22

5.  Tid1, the Mammalian Homologue of Drosophila Tumor Suppressor Tid56, Mediates Macroautophagy by Interacting with Beclin1-containing Autophagy Protein Complex.

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Review 6.  Mitochondrial chaperones in human health and disease.

Authors:  Tyler Bahr; Joshua Katuri; Ting Liang; Yidong Bai
Journal:  Free Radic Biol Med       Date:  2021-11-12       Impact factor: 7.376

7.  Elucidation of the interaction proteome of mitochondrial chaperone Hsp78 highlights its role in protein aggregation during heat stress.

Authors:  Witold Jaworek; Marc Sylvester; Giovanna Cenini; Wolfgang Voos
Journal:  J Biol Chem       Date:  2022-09-14       Impact factor: 5.486

8.  Mortalin (HSPA9) facilitates BRAF-mutant tumor cell survival by suppressing ANT3-mediated mitochondrial membrane permeability.

Authors:  Pui-Kei Wu; Seung-Keun Hong; Wenjing Chen; Andrew E Becker; Rebekah L Gundry; Chien-Wei Lin; Hao Shao; Jason E Gestwicki; Jong-In Park
Journal:  Sci Signal       Date:  2020-03-10       Impact factor: 8.192

9.  Essential role of TID1 in maintaining mitochondrial membrane potential homogeneity and mitochondrial DNA integrity.

Authors:  Andy Cheuk-Him Ng; Stephen D Baird; Robert A Screaton
Journal:  Mol Cell Biol       Date:  2014-02-03       Impact factor: 4.272

10.  Csn3 gene is regulated by all-trans retinoic acid during neural differentiation in mouse P19 cells.

Authors:  Rie Komori; Takanobu Kobayashi; Hikaru Matsuo; Katsuhito Kino; Hiroshi Miyazawa
Journal:  PLoS One       Date:  2013-04-17       Impact factor: 3.240

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