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双链DNA分支迁移的扭转控制

Torsional control of double-stranded DNA branch migration.

作者信息

Yang X, Vologodskii A V, Liu B, Kemper B, Seeman N C

机构信息

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

出版信息

Biopolymers. 1998;45(1):69-83. doi: 10.1002/(SICI)1097-0282(199801)45:1<69::AID-BIP6>3.0.CO;2-X.

Abstract

DNA branched junctions are analogues of Holliday junction recombination intermediates. Partially mobile junctions contain a limited amount of homology flanking the branch point. A partially mobile DNA branched junction has been incorporated into a synthetic double-stranded circular DNA molecule. The junction is flanked by four homologous nucleotide pairs, so that there are five possible locations for the branch point. Two opposite arms of the branched junction are joined to form the circular molecule, which contains 262 nucleotides to the base of the junction. This molecule represents a system whereby torque applied to the circular molecule can have an impact on the junction, by relocating its branch point. Ligation of the molecule produces two topoisomers; about 87% of the product is a relaxed molecule, and the rest is a molecule with one positive supercoil. The position of the branch point is assayed by cleaving the molecule with endonuclease VII. We find that the major site of the branch point in the relaxed topoisomer is at the maximally extruded position in the relaxed molecule. Upon the addition of ethidium, the major site of the branch point migrates to the minimally extruded position.

摘要

DNA分支连接是霍利迪连接重组中间体的类似物。部分可移动连接在分支点两侧含有有限数量的同源序列。一个部分可移动的DNA分支连接已被整合到一个合成的双链环状DNA分子中。该连接两侧有四个同源核苷酸对,因此分支点有五个可能的位置。分支连接的两条相对臂连接形成环状分子,该环状分子在连接点底部含有262个核苷酸。这个分子代表了一个系统,通过重新定位其分支点,施加在环状分子上的扭矩可以对连接产生影响。该分子的连接产生两种拓扑异构体;约87%的产物是松弛分子,其余是带有一个正超螺旋的分子。通过用核酸内切酶VII切割分子来测定分支点的位置。我们发现,松弛拓扑异构体中分支点的主要位置在松弛分子中最大程度挤出的位置。加入溴化乙锭后,分支点的主要位置迁移到最小程度挤出的位置。

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