4.7 Article

Molecular dynamics simulation of the Escherichia coli NikR protein:: Equilibrium conformational fluctuations reveal interdomain allosteric communication pathways

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 378, 期 5, 页码 1155-1173

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2008.03.010

关键词

allostery; NikR; molecular dynamics; correlations; fluctuations

资金

  1. NIGMS NIH HHS [T32 GM008492, T32 GM008492-15] Funding Source: Medline

向作者/读者索取更多资源

Escherichia coli NikR is a homotetrameric Ni2+- and DNA-binding protein that functions as a transcriptional repressor of the NikABCDE nickel permease. The protein is composed of two distinct domains. The N-terminal 50 amino acids of each chain forms part of the dimeric ribbon-helix-helix (RHH) domains, a well-studied DNA-binding fold. The 83-residue C-terminal nickel-binding domain forms an ACT (aspartokinase, chorismate mutase, and TyrA) fold and contains the tetrameric interface. In this study, we have utilized an equilibrium molecular dynamics simulation in order to explore the conformational dynamics of the NikR tetramer and determine important residue interactions within and between the RHH and ACT domains to gain insight into the effects of Ni2+ on DNA-binding activity. The molecular simulation data were analyzed using two different correlation measures based on fluctuations in atomic position and noncovalent contacts together with a clustering algorithm to define groups of residues with similar correlation patterns for both types of correlation measure. Based on these analyses, we have defined a series of residue interrelationships that describe an allosteric communication pathway between the Ni2+- and DNA-binding sites, which are separated by 40 A. Several of the residues identified by our analyses have been previously shown experimentally to be important for NikR function. An additional subset of the identified residues structurally connects the experimentally implicated residues and may help coordinate the allosteric communication between the ACT and RHH domains. (C) 2008 Elsevier Ltd. All rights reserved.

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