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EcoRII核酸内切酶与含有单个识别位点的DNA底物的相互作用。

Interaction of EcoRII endonuclease with DNA substrates containing single recognition sites.

作者信息

Gabbara S, Bhagwat A S

机构信息

Department of Chemistry, Wayne State University, Detroit, Michigan 48202.

出版信息

J Biol Chem. 1992 Sep 15;267(26):18623-30.

PMID:1526995
Abstract

EcoRII is unusual among type II restriction enzymes in that, while it cleaves substrates such as pBR322 and bacteriophage lambda that contain several recognition sites for the enzyme efficiently, substrates such as the genomes of bacteriophages T3 and T7 which contain a small number of recognition sites are cut poorly by it. Interestingly, pBR322, or a short DNA duplex containing a single site for the enzyme, can activate the enzyme to cleave resistant substrates. We show here that, at low concentrations, activator short duplexes are themselves cleaved poorly by the enzyme. Further, the reaction shows substrate cooperativity, and at high concentrations, the duplexes are both activators and good substrates for the enzyme. This supports the model that the activation of EcoRII involves binding of more than one DNA molecule and provides a simple system to study the mechanism of activation. Using a gel mobility shift assay, we show that the enzyme forms sequence-specific, methylation-sensitive complexes with the duplexes in the absence of activating DNA. Therefore, resistance of the short duplexes to the enzyme at low concentrations cannot be due to an inability of the enzyme to bind the duplexes. Interestingly, these complexes are stable in the presence of Mg2+, the cofactor for the enzyme, and the complexes obtained in the presence of Mg2+ do not contain DNA that is cleaved by the enzyme. The inefficient step in the action of EcoRII on resistant substrates must occur subsequent to initial substrate binding and it is this step that the activating DNA must regulate.

摘要

EcoRII在II型限制酶中较为特殊,尽管它能高效切割含有多个该酶识别位点的底物,如pBR322和噬菌体λ,但对于含有少量识别位点的底物,如噬菌体T3和T7的基因组,它的切割效果很差。有趣的是,pBR322或含有该酶单个位点的短DNA双链体可以激活该酶切割抗性底物。我们在此表明,在低浓度下,激活剂短双链体本身被该酶切割的效率很低。此外,该反应显示出底物协同性,在高浓度下,双链体既是该酶的激活剂又是良好的底物。这支持了EcoRII激活涉及多个DNA分子结合的模型,并提供了一个简单的系统来研究激活机制。使用凝胶迁移率变动分析,我们表明该酶在没有激活DNA的情况下与双链体形成序列特异性、甲基化敏感的复合物。因此,低浓度下短双链体对该酶的抗性并非由于该酶无法结合双链体。有趣的是,这些复合物在该酶的辅因子Mg2+存在下是稳定的,并且在Mg2+存在下获得的复合物不包含被该酶切割的DNA。EcoRII作用于抗性底物时的低效步骤必定发生在初始底物结合之后,而激活DNA必须调节的正是这一步骤。

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