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螺旋状RecA-DNA复合物的结构。II. 在RecA-ATPγS细丝束中观察到的局部构象变化。

Structure of helical RecA-DNA complexes. II. Local conformational changes visualized in bundles of RecA-ATP gamma S filaments.

作者信息

Egelman E H, Stasiak A

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06511.

出版信息

J Mol Biol. 1988 Mar 20;200(2):329-49. doi: 10.1016/0022-2836(88)90245-8.

Abstract

Complexes of RecA-DNA filaments, formed in the presence of a non-hydrolyzable ATP analog, ATP gamma S, aggregate together into regular bundles in the presence of Mg2+. Electron micrographs of several different forms of RecA-double-stranded DNA bundles have been analyzed: bundles of six supercoiled filaments at two different concentrations of Mg2+, and bundles of three supercoiled filaments at a single concentration of Mg2+. The bundles are all characterized by a regular left-handed supercoiling of the component filaments arising from the non-integral number of RecA subunits per turn of the RecA helix in these aggregates, about 6.15 units/turn. When single-stranded DNA is used instead of double-stranded DNA, regular aggregates composed of many filaments are formed. These aggregates do not supercoil, consistent with a symmetry of the component filaments of close to 6.0 units/turn. These different structures have provided a strong confirmation of the analysis of isolated RecA filaments. Since different RecA protomers within the component filaments of these aggregates are in different environments, they have provided a direct view of different conformations that RecA subunits may adopt within the same filament as a result of nonequivalent contacts. The conformational changes we have visualized are quite large, with apparent movements of mass over distances greater than 2 nm. The RecA-mediated strand exchange reaction is a highly dynamic process, which involves both the unwinding and stretching of DNA, in addition to the physical movement of DNA strands. It is quite likely, therefore, that the different conformations of RecA subunits seen in these aggregates represent different states of RecA during its enzymatic strand exchange activity.

摘要

在不可水解的ATP类似物ATPγS存在的情况下形成的RecA-DNA细丝复合物,在Mg2+存在时聚集在一起形成规则的束状结构。已对几种不同形式的RecA-双链DNA束的电子显微镜图像进行了分析:在两种不同Mg2+浓度下的六股超螺旋细丝束,以及在单一Mg2+浓度下的三股超螺旋细丝束。这些束的共同特征是,由于这些聚集体中RecA螺旋每圈的RecA亚基数量不是整数,约为6.15个单位/圈,组成细丝呈现规则的左手超螺旋。当使用单链DNA代替双链DNA时,会形成由许多细丝组成的规则聚集体。这些聚集体不会超螺旋,这与组成细丝接近6.0个单位/圈的对称性一致。这些不同的结构有力地证实了对分离的RecA细丝的分析。由于这些聚集体组成细丝内的不同RecA原聚体处于不同环境,它们直接展示了RecA亚基由于不等价接触可能在同一细丝内采取的不同构象。我们观察到的构象变化相当大,质量的明显移动距离大于2纳米。RecA介导的链交换反应是一个高度动态的过程,除了DNA链的物理移动外,还涉及DNA的解旋和拉伸。因此,很可能在这些聚集体中看到的RecA亚基的不同构象代表了RecA在其酶促链交换活性过程中的不同状态。

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