Literature DB >> 16581833

Simple models for extracting mechanical work from the ATP hydrolysis cycle.

Jonathan L Eide1, Arup K Chakraborty, George F Oster.   

Abstract

According to the binding-zipper model, the RecA class of ATPase motors converts chemical energy into mechanical force by the progressive annealing of hydrogen bonds between the nucleotide and the catalytic pocket. The role of hydrolysis is to weaken the binding of products, allowing them to be released so that the cycle can repeat. Molecular dynamics can be used to study the unbinding process, but the binding process is more complex, so that inferences about it are made indirectly from structural, mutation, and biochemical studies. Here we present a series of models of varying complexity that illustrate the basic processes involved in force production during ATP binding. These models reveal the role of solvent and geometry in determining the amount of mechanical work that can be extracted from the binding process.

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Year:  2006        PMID: 16581833      PMCID: PMC1471842          DOI: 10.1529/biophysj.105.073320

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  26 in total

1.  Elastic energy storage in beta-sheets with application to F1-ATPase.

Authors:  Sean Sun; David Chandler; Aaron R Dinner; George Oster
Journal:  Eur Biophys J       Date:  2003-09-03       Impact factor: 1.733

Review 2.  Catalytic sites of Escherichia coli F1-ATPase.

Authors:  A E Senior
Journal:  J Bioenerg Biomembr       Date:  1992-10       Impact factor: 2.945

3.  Why is the mechanical efficiency of F(1)-ATPase so high?

Authors:  G Oster; H Wang
Journal:  J Bioenerg Biomembr       Date:  2000-10       Impact factor: 2.945

4.  Asymmetry in the F1-ATPase and its implications for the rotational cycle.

Authors:  Sean X Sun; Hongyun Wang; George Oster
Journal:  Biophys J       Date:  2004-03       Impact factor: 4.033

5.  Torque generation by the Fo motor of the sodium ATPase.

Authors:  Jianhua Xing; Hongyun Wang; Christoph von Ballmoos; Peter Dimroth; George Oster
Journal:  Biophys J       Date:  2004-10       Impact factor: 4.033

Review 6.  RecA-like motor ATPases--lessons from structures.

Authors:  Jiqing Ye; Andrew R Osborne; Michael Groll; Tom A Rapoport
Journal:  Biochim Biophys Acta       Date:  2004-11-04

7.  Conformational dynamics of the F1-ATPase beta-subunit: a molecular dynamics study.

Authors:  Rainer A Böckmann; Helmut Grubmüller
Journal:  Biophys J       Date:  2003-09       Impact factor: 4.033

8.  Energy transduction in the F1 motor of ATP synthase.

Authors:  H Wang; G Oster
Journal:  Nature       Date:  1998-11-19       Impact factor: 49.962

Review 9.  Polymer motors: pushing out the front and pulling up the back.

Authors:  Alex Mogilner; George Oster
Journal:  Curr Biol       Date:  2003-09-16       Impact factor: 10.834

Review 10.  Conserved arginine residues implicated in ATP hydrolysis, nucleotide-sensing, and inter-subunit interactions in AAA and AAA+ ATPases.

Authors:  Teru Ogura; Sidney W Whiteheart; Anthony J Wilkinson
Journal:  J Struct Biol       Date:  2004 Apr-May       Impact factor: 2.867

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