Literature DB >> 14634002

Selective contribution of eukaryotic prefoldin subunits to actin and tubulin binding.

C Torrey Simons1, An Staes, Heidi Rommelaere, Christophe Ampe, Sally A Lewis, Nicholas J Cowan.   

Abstract

Eukaryotic prefoldin (PFD) is a heterohexameric chaperone with a jellyfish-like structure whose function is to deliver nonnative target proteins, principally actins and tubulins, to the eukaryotic cytosolic chaperonin for facilitated folding. Here we demonstrate that functional PFD can spontaneously assemble from its six constituent individual subunits (PFD1-PFD6), each expressed as a recombinant protein. Using engineered forms of PFD assembled in vitro, we show that the tips of the PFD tentacles are required to form binary complexes with authentic target proteins. We show that PFD uses the distal ends of different but overlapping sets of subunits to form stable binary complexes with different target proteins, namely actin and alpha- and beta-tubulin. We also present data that suggest a model for the order of these six subunits within the hexamer. Our data are consistent with the hypothesis that PFD, like the eukaryotic cytosolic chaperonin, has co-evolved specifically to facilitate the folding of its target proteins.

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Year:  2003        PMID: 14634002     DOI: 10.1074/jbc.M306053200

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  20 in total

1.  Molecular clamp mechanism of substrate binding by hydrophobic coiled-coil residues of the archaeal chaperone prefoldin.

Authors:  Victor F Lundin; Peter C Stirling; Juan Gomez-Reino; Jill C Mwenifumbo; Jennifer M Obst; José M Valpuesta; Michel R Leroux
Journal:  Proc Natl Acad Sci U S A       Date:  2004-03-19       Impact factor: 11.205

2.  Decoded calreticulin-deficient embryonic stem cell transcriptome resolves latent cardiophenotype.

Authors:  Randolph S Faustino; Anca Chiriac; Nicolas J Niederlander; Timothy J Nelson; Atta Behfar; Prasanna K Mishra; Slobodan Macura; Marek Michalak; Andre Terzic; Carmen Perez-Terzic
Journal:  Stem Cells       Date:  2010-07       Impact factor: 6.277

3.  Prefoldin subunits are protected from ubiquitin-proteasome system-mediated degradation by forming complex with other constituent subunits.

Authors:  Makoto Miyazawa; Erika Tashiro; Hirotake Kitaura; Hiroshi Maita; Hiroo Suto; Sanae M M Iguchi-Ariga; Hiroyoshi Ariga
Journal:  J Biol Chem       Date:  2011-04-08       Impact factor: 5.157

Review 4.  Prefoldin, a jellyfish-like molecular chaperone: functional cooperation with a group II chaperonin and beyond.

Authors:  Muhamad Sahlan; Tamotsu Zako; Masafumi Yohda
Journal:  Biophys Rev       Date:  2018-02-09

5.  UXT is a novel centrosomal protein essential for cell viability.

Authors:  Huiwu Zhao; Qiang Wang; Hongtao Zhang; Qingdu Liu; Xiulian Du; Mark Richter; Mark I Greene
Journal:  Mol Biol Cell       Date:  2005-10-12       Impact factor: 4.138

6.  Prefoldin 5 is required for normal sensory and neuronal development in a murine model.

Authors:  YongSuk Lee; Richard S Smith; Wanda Jordan; Benjamin L King; Jungyeon Won; Jose M Valpuesta; Jurgen K Naggert; Patsy M Nishina
Journal:  J Biol Chem       Date:  2010-10-18       Impact factor: 5.157

7.  Genome-wide autozygosity mapping in human populations.

Authors:  Shuang Wang; Chad Haynes; Francis Barany; Jurg Ott
Journal:  Genet Epidemiol       Date:  2009-02       Impact factor: 2.135

8.  Prefoldin protects neuronal cells from polyglutamine toxicity by preventing aggregation formation.

Authors:  Erika Tashiro; Tamotsu Zako; Hideki Muto; Yoshinori Itoo; Karin Sörgjerd; Naofumi Terada; Akira Abe; Makoto Miyazawa; Akira Kitamura; Hirotake Kitaura; Hiroshi Kubota; Mizuo Maeda; Takashi Momoi; Sanae M M Iguchi-Ariga; Masataka Kinjo; Hiroyoshi Ariga
Journal:  J Biol Chem       Date:  2013-05-17       Impact factor: 5.157

9.  Prefoldin plays a role as a clearance factor in preventing proteasome inhibitor-induced protein aggregation.

Authors:  Akira Abe; Kazuko Takahashi-Niki; Yuka Takekoshi; Takashi Shimizu; Hirotake Kitaura; Hiroshi Maita; Sanae M M Iguchi-Ariga; Hiroyoshi Ariga
Journal:  J Biol Chem       Date:  2013-08-14       Impact factor: 5.157

10.  Identification of dynamic changes in proteins associated with the cellular cytoskeleton after exposure to okadaic acid.

Authors:  Jill A Opsahl; Sonja Ljostveit; Therese Solstad; Kristin Risa; Peter Roepstorff; Kari E Fladmark
Journal:  Mar Drugs       Date:  2013-05-24       Impact factor: 5.118

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