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Nanomechanics of the substrate binding domain of Hsp70 determine its allosteric ATP-induced conformational change.


ABSTRACT: Owing to the cooperativity of protein structures, it is often almost impossible to identify independent subunits, flexible regions, or hinges simply by visual inspection of static snapshots. Here, we use single-molecule force experiments and simulations to apply tension across the substrate binding domain (SBD) of heat shock protein 70 (Hsp70) to pinpoint mechanical units and flexible hinges. The SBD consists of two nanomechanical units matching 3D structural parts, called the ?- and ?-subdomain. We identified a flexible region within the rigid ?-subdomain that gives way under load, thus opening up the ?/? interface. In exactly this region, structural changes occur in the ATP-induced opening of Hsp70 to allow substrate exchange. Our results show that the SBD's ability to undergo large conformational changes is already encoded by passive mechanics of the individual elements.

SUBMITTER: Mandal SS 

PROVIDER: S-EPMC5468673 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Nanomechanics of the substrate binding domain of Hsp70 determine its allosteric ATP-induced conformational change.

Mandal Soumit Sankar SS   Merz Dale R DR   Buchsteiner Maximilian M   Dima Ruxandra I RI   Rief Matthias M   Žoldák Gabriel G  

Proceedings of the National Academy of Sciences of the United States of America 20170522 23


Owing to the cooperativity of protein structures, it is often almost impossible to identify independent subunits, flexible regions, or hinges simply by visual inspection of static snapshots. Here, we use single-molecule force experiments and simulations to apply tension across the substrate binding domain (SBD) of heat shock protein 70 (Hsp70) to pinpoint mechanical units and flexible hinges. The SBD consists of two nanomechanical units matching 3D structural parts, called the α- and β-subdomain  ...[more]

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