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T4核酸内切酶VII可切割霍利迪连接体类似物的交叉链。

T4 endonuclease VII cleaves the crossover strands of Holliday junction analogs.

作者信息

Mueller J E, Kemper B, Cunningham R P, Kallenbach N R, Seeman N C

机构信息

Department of Biological Sciences, State University of New York, Albany 12222.

出版信息

Proc Natl Acad Sci U S A. 1988 Dec;85(24):9441-5. doi: 10.1073/pnas.85.24.9441.

Abstract

We have formed four-arm branched DNA junctions that contain no more than a single base pair of branch migratory freedom. Recently, we have shown that these Holliday junction analogs have twofold symmetric protection patterns in solution when probed with hydroxyl radicals: two opposite strands of one junction show extensive protection near the branch point, while the other pair of opposite strands is virtually as susceptible as a double helix. In a different junction, the hydroxyl radical protection pattern is reversed. These patterns suggest that a crossover-isomer bias exists in these molecules and that the protected strands form the crossover between helices. Here, we examine the cleavage pattern of these structures when they are resolved by T4 endonuclease VII. Junctions are formed from a single shamrock-shaped molecule, which contains 5', 3', or internal labels. The enzyme shows a preference for resolving these modified junctions at sites near those protected from hydroxyl radicals. This result suggests that only crossover strands in a Holliday junction are cleaved, and thus an odd number of crossover isomerizations must occur when flanking markers are exchanged.

摘要

我们构建了四臂分支DNA连接体,其分支迁移自由度不超过一个碱基对。最近,我们发现,当用羟基自由基探测时,这些霍利迪连接体类似物在溶液中具有双重对称的保护模式:一个连接体的两条相对链在分支点附近显示出广泛的保护,而另一对相对链实际上与双螺旋一样易于被羟基自由基攻击。在另一个连接体中,羟基自由基保护模式则相反。这些模式表明这些分子中存在交叉异构体偏向,并且受保护的链形成了螺旋之间的交叉。在此,我们研究了这些结构被T4内切核酸酶VII切割时的切割模式。连接体由单个三叶草形分子形成,该分子含有5'、3'或内部标记。该酶倾向于在免受羟基自由基攻击的位点附近切割这些修饰的连接体。这一结果表明,在霍利迪连接体中只有交叉链被切割,因此当侧翼标记交换时,必定发生奇数个交叉异构化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6af1/282768/8f6ccd7d55e8/pnas00303-0080-a.jpg

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