Issue December 2011

category image Volume 29
No. 3 (p 424-596)
December 2011
ISSN 0739-1102

Mechanical Transduction Mechanisms of RecA-Like Molecular Motors

A majority of ATP-dependent molecular motors are RecA-like proteins, performing diverse functions in biology. These RecA-like molecular motors consist of a highly conserved core containing the ATP-binding site. Here I examined how ATP binding within this core is coupled to the conformational changes of different RecA-like molecular motors. Conserved hydrogen bond networks and conformational changes revealed two major mechanical transduction mechanisms: (1) intra-domain conformational changes and (2) inter-domain conformational changes. The intra-domain mechanism has a significant hydrogen bond rearrangement within the domain containing the P-loop, causing relative motion between two parts of the protein. The inter-domain mechanism exhibits little conformational change in the P-loop domain. Instead, the major conformational change is observed between the P-loop domain and an adjacent domain or subunit containing the arginine finger. These differences in the mechanical transduction mechanisms may link to the underlying energy surface governing a Brownian ratchet or a power stroke.

This article can be cited as:
Jung-Chi Liao. Mechanical Transduction Mechanisms of RecA-Like Molecular Motors J. Biomol Struct Dyn 29(3)497-507(2011).

Jung-Chi Liao*

Department of Mechanical Engineering, Columbia University, New York, NY 10027

jcliao@columbia.edu

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