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EcoRV限制酶的结构-功能相关性:从非特异性结合到特异性DNA切割

Structure-function correlation for the EcoRV restriction enzyme: from non-specific binding to specific DNA cleavage.

作者信息

Vipond I B, Halford S E

机构信息

Department of Biochemistry, University of Bristol, UK.

出版信息

Mol Microbiol. 1993 Jul;9(2):225-31. doi: 10.1111/j.1365-2958.1993.tb01685.x.

Abstract

The EcoRV restriction endonuclease cleaves DNA at its recognition sequence at least a million times faster than at any other DNA sequence. The only cofactor it requires for activity is Mg2+; but in binding to DNA in the absence of Mg2+, the EcoRV enzyme shows no specificity for its recognition site. Instead, the reason why EcoRV cuts one DNA sequence faster than any other is that the rate of cleavage is controlled by the binding of Mg2+ to EcoRV-DNA complexes: the complex at the recognition site has a high affinity for Mg2+, while the complexes at other DNA sequences have low affinities for Mg2+. The structures of the EcoRV endonuclease, and of its complexes with either specific or non-specific DNA, have been solved by X-ray crystallography. In the specific complex, the protein interacts with the bases in the recognition sequence and the DNA takes up a highly distorted structure. In the non-specific complex with an unrelated DNA sequence, there are virtually no interactions with the bases and the DNA retains a B-like structure. Since the free energy changes for the formation of specific and non-specific complexes are the same, the energy from the specific interactions balances that required for the distortion of the DNA. The distortion inserts the phosphate at the scissile bond into the active site of the enzyme, where it forms part of the binding site for Mg2+. Without this distortion, the EcoRV-DNA complex would be unable to bind Mg2+ and thus unable to cleave DNA.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

EcoRV限制性内切酶在其识别序列处切割DNA的速度比在任何其他DNA序列处至少快一百万倍。其活性所需的唯一辅助因子是Mg2+;但在没有Mg2+的情况下与DNA结合时,EcoRV酶对其识别位点没有特异性。相反,EcoRV切割一个DNA序列比其他序列更快的原因是切割速率受Mg2+与EcoRV-DNA复合物结合的控制:识别位点处的复合物对Mg2+具有高亲和力,而其他DNA序列处的复合物对Mg2+具有低亲和力。EcoRV内切酶及其与特异性或非特异性DNA复合物的结构已通过X射线晶体学解析。在特异性复合物中,蛋白质与识别序列中的碱基相互作用,DNA呈现高度扭曲的结构。在与不相关DNA序列的非特异性复合物中,与碱基几乎没有相互作用,DNA保留B样结构。由于形成特异性和非特异性复合物的自由能变化相同,特异性相互作用产生的能量平衡了DNA扭曲所需的能量。这种扭曲将可切割键处的磷酸插入酶的活性位点,在那里它形成Mg2+结合位点的一部分。没有这种扭曲,EcoRV-DNA复合物将无法结合Mg2+,因此无法切割DNA。(摘要截短至250字)

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