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首页> 外文期刊>Nucleic Acids Research >DNA-recognition process described by MD simulations of the lactose repressor protein on a specific and a non-specific DNA sequence
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DNA-recognition process described by MD simulations of the lactose repressor protein on a specific and a non-specific DNA sequence

机译:通过MD模拟乳糖阻遏蛋白在特定和非特定DNA序列上描述的DNA识别过程

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摘要

The lactose repressor protein may bind DNA in two possible configurations: a specific one, if the DNA sequence corresponds to a binding site, and a non-specific one otherwise. To find its target sequences, the lactose repressor first binds non-specifically to DNA, and subsequently, it rapidly searches for a binding site. Atomic structures of non-specific and specific complexes are available from crystallographic and nuclear magnetic resonance experiments. However, what remains unknown is a detailed description of the steps that transform the non-specific complex into the specific one. Here, how the protein first recognizes its binding site has been studied using molecular dynamics simulations. The picture that emerges is that of a protein that is asmobile when interacting with non-specific DNA sequences as when free in solution. This high degree of mobility allows the protein to rapidly sample different DNA sequences. In contrast, when the protein encounters a binding site, the configuration ensemble collapses, and the protein sliding movements along the DNA sequence become scarce. The binding energies in the specific and non-specific complexes were analysed using the Molecular Mechanics Poisson Boltzmann Surface Area approach. These results represent a first step towards a throughout characterization of the DNA-recognition process.
机译:乳糖阻遏蛋白可以两种可能的方式结合DNA:如果DNA序列对应于结合位点,则为一种特异性,否则为非特异性。为了找到其靶序列,乳糖阻遏物首先非特异性地与DNA结合,然后迅速寻找结合位点。非特异性和特异性配合物的原子结构可从晶体学和核磁共振实验中获得。但是,仍然未知的是将非特定复合物转换为特定复合物的步骤的详细说明。在这里,已经使用分子动力学模拟研究了蛋白质如何首先识别其结合位点。出现的图像是当与非特异性DNA序列相互作用时(如在溶液中游离时)可移动的蛋白质。这种高度的移动性使蛋白质可以快速采样不同的DNA序列。相反,当蛋白质遇到结合位点时,构型集合崩溃,并且蛋白质沿着DNA序列的滑动运动变得稀少。使用分子力学泊松玻耳兹曼表面积法分析了特异性和非特异性复合物中的结合能。这些结果代表了对DNA识别过程进行全面表征的第一步。

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