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Interprotomer motion-transmission mechanism for the hexameric AAA ATPase p97.


ABSTRACT: Multimeric AAA ATPases represent a structurally homologous yet functionally diverse family of proteins. The essential and highly abundant hexameric AAA ATPase p97 is perhaps the best studied AAA protein, playing an essential role in various important cellular activities. During ATP-hydrolysis process, p97 undergoes dramatic conformational changes, and these changes are initiated in the C-terminal ATPase domain and transmitted across the entire length of the molecule to the N-terminal effector domain. However, the detailed mechanism of the motion transmission remains unclear. Here, we report an interprotomer motion-transmission mechanism to explain this process: The nucleotide-dependent motion transmission between the two ATPase domains of one protomer is mediated by its neighboring protomer. This finding reveals a strict requirement for interprotomer coordination of p97 during the motion-transmission process and may shed light on studies of other AAA ATPases.

SUBMITTER: Li G 

PROVIDER: S-EPMC3309748 | biostudies-literature | 2012 Mar

REPOSITORIES: biostudies-literature

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Interprotomer motion-transmission mechanism for the hexameric AAA ATPase p97.

Li Guangtao G   Huang Chengdong C   Zhao Gang G   Lennarz William J WJ  

Proceedings of the National Academy of Sciences of the United States of America 20120221 10


Multimeric AAA ATPases represent a structurally homologous yet functionally diverse family of proteins. The essential and highly abundant hexameric AAA ATPase p97 is perhaps the best studied AAA protein, playing an essential role in various important cellular activities. During ATP-hydrolysis process, p97 undergoes dramatic conformational changes, and these changes are initiated in the C-terminal ATPase domain and transmitted across the entire length of the molecule to the N-terminal effector do  ...[more]

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