Literature DB >> 22855405

The mechanism of the converter domain rotation in the recovery stroke of myosin motor protein.

Andrij Baumketner1.   

Abstract

Upon ATP binding, myosin motor protein is found in two alternative conformations, prerecovery state M* and postrecovery state M**. The transition from one state to the other, known as the recovery stroke, plays a key role in the myosin functional cycle. Despite much recent research, the microscopic details of this transition remain elusive. A critical step in the recovery stroke is the rotation of the converter domain from "up" position in prerecovery state to "down" position in postrecovery state that leads to the swing of the lever arm attached to it. In this work, we demonstrate that the two rotational states of the converter domain are determined by the interactions within a small structural motif in the force-generating region of the protein that can be accurately modeled on computers using atomic representation and explicit solvent. Our simulations show that the transition between the two states is controlled by a small helix (SH1) located next to the relay helix and relay loop. A small translation in the position of SH1 away from the relay helix is seen to trigger the transition from "up" state to "down" state. The transition is driven by a cluster of hydrophobic residues I687, F487, and F506 that make significant contributions to the stability of both states. The proposed mechanism agrees well with the available structural and mutational studies.
Copyright © 2012 Wiley Periodicals, Inc.

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Year:  2012        PMID: 22855405      PMCID: PMC3486948          DOI: 10.1002/prot.24155

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  44 in total

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4.  The principal motions involved in the coupling mechanism of the recovery stroke of the myosin motor.

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5.  ETNA: equilibrium transitions network and Arrhenius equation for extracting folding kinetics from REMD simulations.

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6.  Energetics of subdomain movements and fluorescence probe solvation environment change in ATP-bound myosin.

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7.  Structural mechanism of the recovery stroke in the myosin molecular motor.

Authors:  Stefan Fischer; Björn Windshügel; Daniel Horak; Kenneth C Holmes; Jeremy C Smith
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Review 8.  Structural and functional insights into the Myosin motor mechanism.

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Authors:  I Rayment; W R Rypniewski; K Schmidt-Bäse; R Smith; D R Tomchick; M M Benning; D A Winkelmann; G Wesenberg; H M Holden
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10.  Extensive conformational transitions are required to turn on ATP hydrolysis in myosin.

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Journal:  J Mol Biol       Date:  2008-07-01       Impact factor: 5.469

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  7 in total

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3.  Mapping interactions between myosin relay and converter domains that power muscle function.

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Journal:  Hum Mutat       Date:  2013-12-12       Impact factor: 4.878

5.  Cardiomyopathy mutations impact the actin-activated power stroke of human cardiac myosin.

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Review 6.  Poorly understood aspects of striated muscle contraction.

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7.  Structural basis for drug-induced allosteric changes to human β-cardiac myosin motor activity.

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  7 in total

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