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Molecular dynamics simulations of the Trp repressor-DNA complex and the AV77 mutant

机译:Trp阻遏物-DNA复合物和AV77突变体的分子动力学模拟。

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摘要

Molecular dynamics simulations were performed on E. coli wild type (WT) Trp repressor and the AV77 mutant in interaction with DNA. Alanine to valine mutation at position 77 results in a repressor with enhanced activity at low concentrations of the L-Trp co-repressor. However, WT and AV77 mutant show an identical crystallographic structure, preventing to devise a clear structure-function correlation and suggesting that the different activity could be ascribed to a varied dynamical behavior. Root mean square deviations, dynamical cross correlation and hydrogen bond analysis have been performed to detect specific differences between the two repressor forms, showing that both ligand and DNA binding is different in the two complexes. (c) 2005 Elsevier B.V. All rights reserved.
机译:在大肠杆菌野生型(WT)Trp阻遏物和与DNA相互作用的AV77突变体上进行了分子动力学模拟。在第77位的丙氨酸向缬氨酸突变会导致阻遏物在低浓度的L-Trp阻遏物时具有增强的活性。然而,WT和AV77突变体显示出相同的晶体结构,从而阻止了明确的结构-功能相关性,并暗示了不同的活性可能归因于变化的动力学行为。已经进行了均方根偏差,动力学互相关和氢键分析以检测两种阻遏物形式之间的特异性差异,表明两种复合物中配体和DNA结合均不同。 (c)2005 Elsevier B.V.保留所有权利。

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