The ClpB chaperone forms a hexamer ring and rescues aggregated proteins in co-operation with the DnaK system. Each subunit of ClpB has two nucleotide-binding modules, AAA (ATPase associated with various cellular activities)-1 and AAA-2, and an 85-Å (1 Å=0.1 nm)-long coiled-coil. The coiled-coil consists of two halves: wing-1, leaning toward AAA-1, and wing-2, leaning away from all the domains. The coiled-coil is stabilized by leucine zipper-like interactions between leucine and isoleucine residues of two amphipathic α-helices that twist around each other to form each wing. To destabilize the two wings, we developed a series of mutants by replacing these residues with alanine. As the number of replaced residues increased, the chaperone activity was lost and the hexamer became unstable. The mutants, which had a stable hexameric structure but lost the chaperone activities, were able to exert the threading of soluble denatured proteins through their central pore. The destabilization of wing-1, but not wing-2, resulted in a several-fold stimulation of ATPase activity. These results indicate that stability of both wings of the coiled-coil is critical for full functioning of ClpB, but not for the central-pore threading of substrate proteins, and that wing-1 is involved in the communication between AAA-1 and AAA-2.
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Research Article|
June 12 2009
Stability of the two wings of the coiled-coil domain of ClpB chaperone is critical for its disaggregation activity Available to Purchase
Yo-hei Watanabe;
Yo-hei Watanabe
1
*Department of Biology, Faculty of Science and Engineering, Konan University, Okamoto 8–9–1, Kobe 658–8501, Japan
1To whom correspondence should be addressed (email [email protected]).
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Yosuke Nakazaki;
Yosuke Nakazaki
*Department of Biology, Faculty of Science and Engineering, Konan University, Okamoto 8–9–1, Kobe 658–8501, Japan
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Ryoji Suno;
Ryoji Suno
†Chemical Resources Laboratory, R-1, Tokyo Institute of Technology, Nagatsuta 4259, Yokohama 226–8503, Japan
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Masasuke Yoshida
Masasuke Yoshida
†Chemical Resources Laboratory, R-1, Tokyo Institute of Technology, Nagatsuta 4259, Yokohama 226–8503, Japan
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Publisher: Portland Press Ltd
Received:
November 17 2008
Revision Received:
March 30 2009
Accepted:
April 07 2009
Accepted Manuscript online:
April 07 2009
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© The Authors Journal compilation © 2009 Biochemical Society
2009
Biochem J (2009) 421 (1): 71–77.
Article history
Received:
November 17 2008
Revision Received:
March 30 2009
Accepted:
April 07 2009
Accepted Manuscript online:
April 07 2009
Citation
Yo-hei Watanabe, Yosuke Nakazaki, Ryoji Suno, Masasuke Yoshida; Stability of the two wings of the coiled-coil domain of ClpB chaperone is critical for its disaggregation activity. Biochem J 1 July 2009; 421 (1): 71–77. doi: https://doi.org/10.1042/BJ20082238
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