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DNA 四向接头几何结构的凝胶电泳分析。

Gel electrophoretic analysis of the geometry of a DNA four-way junction.

作者信息

Cooper J P, Hagerman P J

机构信息

Department of Biochemistry, University of Colorado Health Sciences Center, Denver 80262.

出版信息

J Mol Biol. 1987 Dec 20;198(4):711-9. doi: 10.1016/0022-2836(87)90212-9.

Abstract

Branched DNA molecules (Holliday structures) are believed to be key intermediates in the process of homologous genetic recombination. However, despite the importance of such structures, their transient nature makes it difficult to analyze their physical properties. In an effort to evaluate several models for the geometry of such branched molecules, a stable, synthetic DNA four-way junction has been constructed. The geometry of the synthetic junction has been probed by gel electrophoresis, utilizing the fact that bent DNA molecules demonstrate reduced mobilities on polyacrylamide gels to an extent that varies with the degree of the bend angle. From the synthetic four-way junction, we have produced a set of molecules in which all combinations of two junction arms have been extended by 105 base-pairs. The electrophoretic mobilities of the extended junctions differ in a manner which indicates that the junction is not a completely flexible structure; nor is it tetrahedral or planar-tetragonal. Instead, the four strands that comprise the DNA four-way junction are structurally non-equivalent. The significance of these observations with regard to previous models for four-way junction geometry is discussed.

摘要

分支DNA分子(霍利迪结构)被认为是同源基因重组过程中的关键中间体。然而,尽管这类结构很重要,但其短暂性使得分析它们的物理性质变得困难。为了评估几种关于此类分支分子几何形状的模型,已构建了一种稳定的合成DNA四向连接体。利用弯曲的DNA分子在聚丙烯酰胺凝胶上迁移率降低且降低程度随弯曲角度而变化这一事实,通过凝胶电泳探测了合成连接体的几何形状。从合成四向连接体出发,我们制备了一组分子,其中两个连接臂的所有组合都延伸了105个碱基对。延伸连接体的电泳迁移率以一种表明该连接体不是完全灵活的结构、也不是四面体或平面四边形的方式存在差异。相反,构成DNA四向连接体的四条链在结构上是不等价的。讨论了这些观察结果对于先前四向连接体几何形状模型的意义。

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