Efficient conversion of chemical energy into mechanical work by Hsp70 chaperones.
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ABSTRACT: Hsp70 molecular chaperones are abundant ATP-dependent nanomachines that actively reshape non-native, misfolded proteins and assist a wide variety of essential cellular processes. Here, we combine complementary theoretical approaches to elucidate the structural and thermodynamic details of the chaperone-induced expansion of a substrate protein, with a particular emphasis on the critical role played by ATP hydrolysis. We first determine the conformational free-energy cost of the substrate expansion due to the binding of multiple chaperones using coarse-grained molecular simulations. We then exploit this result to implement a non-equilibrium rate model which estimates the degree of expansion as a function of the free energy provided by ATP hydrolysis. Our results are in quantitative agreement
SUBMITTER: Assenza S
PROVIDER: S-EPMC7000219 | biostudies-literature | 2019 Dec
REPOSITORIES: biostudies-literature
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