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序列对三臂DNA连接体结构的影响。

Effect of sequence on the structure of three-arm DNA junctions.

作者信息

Lu M, Guo Q, Kallenbach N R

机构信息

Department of Chemistry, New York University, New York 10003.

出版信息

Biochemistry. 1991 Jun 18;30(24):5815-20. doi: 10.1021/bi00238a001.

Abstract

We have investigated the geometry of a number of three-arm branched DNA molecules by measuring the relative electrophoretic mobilities of analogues of each junction in which one pair of arms is extended. In general, the mobilities of three species of three-arm junctions in which the duplex arms are extended pairwise differ in the presence of Mg2+. This effect is eliminated by the absence of Mg2+ or by an increase in temperature, leading us to conclude that the three-arm DNA junctions are not 3-fold symmetric, because of either preferential stacking or asymmetric kinking of the arms at the branch that occurs in the presence of Mg2+. The geometry of the junction is governed by the base sequence at the branch and 1 bp removed from the branch. The pairwise elongated analogues of junctions that contain identical base pairs at the branch or 1 bp from the branch show mobility differences; when both positions have the same sequence no mobility differences are detected even in the presence of Mg2+. Formation of a branch in three-arm DNA junctions can be seen to produce a strain or deformation that propagates about one turn of the helix from the branch, leading thymines in this region to become hyperreactive to osmium tetraoxide. Surprisingly, the effect is independent of the presence or absence of metal cations. The structure of the three-arm junction is thus quite different in character from that of four-arm junctions both in the presence and absence of high concentrations of metal cations.

摘要

我们通过测量每一个连接点类似物的相对电泳迁移率来研究多个三臂分支DNA分子的几何形状,其中一对臂是延伸的。一般来说,在Mg2+存在的情况下,双链臂成对延伸的三种三臂连接点的迁移率是不同的。在没有Mg2+或温度升高时,这种效应会消除,这使我们得出结论:由于在Mg2+存在下分支处臂的优先堆积或不对称扭结,三臂DNA连接点不是三重对称的。连接点的几何形状由分支处的碱基序列及从分支处移除1个碱基对后的碱基序列决定。在分支处或距离分支1个碱基对处包含相同碱基对的连接点的成对延伸类似物显示出迁移率差异;当两个位置具有相同序列时,即使在Mg2+存在的情况下也检测不到迁移率差异。可以看出,三臂DNA连接点中分支的形成会产生一种应变或变形,该应变或变形从分支处开始沿螺旋传播约一圈,导致该区域的胸腺嘧啶对四氧化锇变得高度敏感。令人惊讶的是,这种效应与金属阳离子的存在与否无关。因此,无论是否存在高浓度金属阳离子,三臂连接点的结构在性质上都与四臂连接点有很大不同。

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