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噬菌体T4内切核酸酶VII和噬菌体T7内切核酸酶I对合成的可分支迁移霍利迪连接体的切割特异性。

Cleavage specificity of bacteriophage T4 endonuclease VII and bacteriophage T7 endonuclease I on synthetic branch migratable Holliday junctions.

作者信息

Picksley S M, Parsons C A, Kemper B, West S C

机构信息

Imperial Cancer Research Fund, Clare Hall Laboratories, South Mimms, Hertfordshire, U.K.

出版信息

J Mol Biol. 1990 Apr 20;212(4):723-35. doi: 10.1016/0022-2836(90)90233-C.

Abstract

Holliday junctions are intermediate structures that are formed and resolved during the process of genetic recombination. To investigate the interaction of junction-resolving nucleases with synthetic Holliday junctions that contain homologous arm sequences, we constructed substrates in which the junction point was free to branch migrate through 26 base-pairs of homology. In the absence of divalent cations, we found that both phage T4 endonuclease VII and phage T7 endonuclease I bound the synthetic junctions to form specific protein-DNA complexes. Such complexes were not observed in the presence of Mg2+, since the Holliday junctions were resolved by the introduction of symmetrical cuts in strands of like polarity. The major sites of cleavage were identified and found to occur within the boundaries of homology. T4 endonuclease VII showed a cleavage preference for the 3' side of thymine bases, whereas T7 endonuclease I preferentially cut the DNA between two pyrimidine residues. However, cleavage was not observed at all the available sites, indicating that in addition to their structural requirements, the endonucleases show strong site preferences.

摘要

霍利迪连接体是在基因重组过程中形成并解离的中间结构。为了研究连接体解离核酸酶与含有同源臂序列的合成霍利迪连接体之间的相互作用,我们构建了底物,其中连接点可以自由地通过26个碱基对的同源序列进行分支迁移。在没有二价阳离子的情况下,我们发现噬菌体T4内切核酸酶VII和噬菌体T7内切核酸酶I都能结合合成连接体,形成特定的蛋白质-DNA复合物。在Mg2+存在的情况下未观察到这种复合物,因为霍利迪连接体通过在相同极性的链中引入对称切割而被解离。确定了主要切割位点,发现其位于同源序列范围内。T4内切核酸酶VII对胸腺嘧啶碱基的3'侧表现出切割偏好,而T7内切核酸酶I则优先切割两个嘧啶残基之间的DNA。然而,并非所有可用位点都观察到切割,这表明除了结构要求外,这些内切核酸酶还表现出强烈的位点偏好。

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