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DNA phosphate crowding correlates with protein cationic side chain density and helical curvature in protein/DNA crystal structures

机译:DNA磷酸盐拥挤与蛋白质阳离子侧链密度和蛋白质/ DNA晶体结构中的螺旋曲率相关

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摘要

Sequence-specific binding of proteins to their DNA targets involves a complex spectrum of processes that often induce DNA conformational variation in the bound complex. The forces imposed by protein binding that cause the helical deformations are intimately interrelated and difficult to parse or rank in importance. To investigate the role of electrostatics in helical deformation, we quantified the relationship between protein cationic residue density (Cpc) and DNA phosphate crowding (Cpp). The correlation between Cpc and Cpp was then calculated for a subset of 58 high resolution protein-DNA crystal structures. Those structures containing strong Cpc/Cpp correlation (>+/-0.25) were likely to contain DNA helical curvature. Further, the correlation factor sign predicted the direction of helical curvature with positive (16 structures) and negative (seven structures) correlation containing concave (DNA curved toward protein) and convex (DNA curved away from protein) curvature, respectively. Protein-DNA complexes without significant Cpc/Cpp (36 structures) correlation (-0.25<0<0.25) tended to contain DNA without significant curvature. Interestingly, concave and convex complexes also include more arginine and lysine phosphate contacts, respectively, whereas linear complexes included essentially equivalent numbers of Lys/Arg phosphate contacts. Together, these findings suggest an important role for electrostatic interactions in protein-DNA complexes involving helical curvature.
机译:蛋白质与其DNA靶标的序列特异性结合涉及复杂的过程,这些过程通常会在结合的复合物中诱导DNA构象变异。引起螺旋形变形的蛋白质结合所施加的力是密切相关的,并且很难解析或确定其重要性。为了研究静电在螺旋形变形中的作用,我们量化了蛋白质阳离子残基密度(Cpc)与DNA磷酸拥挤(Cpp)之间的关系。然后计算58个高分辨率蛋白质-DNA晶体结构的子集的Cpc和Cpp之间的相关性。那些包含强Cpc / Cpp相关性(> +/- 0.25)的结构可能包含DNA螺旋曲率。此外,相关因子符号用正(16个结构)和负(七个结构)相关预测螺旋曲率的方向,正相关分别包含凹(DNA朝向蛋白质弯曲)和凸(DNA远离蛋白质弯曲)弯曲。没有明显的Cpc / Cpp(36个结构)相关性(-0.25 <0 <0.25)的蛋白质-DNA复合物倾向于包含没有明显曲率的DNA。有趣的是,凹凸配合物还分别包含更多的精氨酸和赖氨酸磷酸酯接触,而线性配合物包括基本上等量的Lys / Arg磷酸酯接触。在一起,这些发现表明静电相互作用在涉及螺旋曲率的蛋白质-DNA复合物中的重要作用。

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