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霍利迪连接体核酸内切酶CCE1序列特异性的剖析

Dissection of the sequence specificity of the Holliday junction endonuclease CCE1.

作者信息

Schofield M J, Lilley D M, White M F

机构信息

CRC Nucleic Acid Structure Group, Department of Biochemistry, University of Dundee, U.K.

出版信息

Biochemistry. 1998 May 26;37(21):7733-40. doi: 10.1021/bi980399s.

Abstract

CCE1 is a Holliday (four-way DNA) junction-specific endonuclease which resolves mitochondrial DNA recombination intermediates in Saccharomycescerevisiae. The junction-resolving enzymes are a diverse class, widely distributed in nature from viruses to higher eukaryotes. In common with most other junction-resolving enzymes, the cleavage activity of CCE1 is nucleotide sequence-dependent. We have undertaken a systematic study of the sequence specificity of CCE1, using a single-turnover kinetic assay and a panel of synthetic four-way DNA junction substrates. A tetranucleotide consensus cleavage sequence 5'-ACT downward arrowA has been identified, with specificity residing mainly at the central CT dinucleotide. Equilibrium constants for CCE1 binding to four-way junctions are unaffected by sequence variations, suggesting that substrate discrimination occurs predominantly in the transition state complex. CCE1 cuts most efficiently at the junction center, but can also cleave the DNA backbone at positions one nucleotide 3' or 5' of the point of strand exchange, suggesting a significant degree of conformational flexibility in the CCE1:junction complex. Introduction of base analogues at single sites in four-way junctions has allowed investigation of the sequence specificity of CCE1 in finer detail. In particular, the N7 moiety of the guanine base-pairing with the cytosine of the consensus sequence appears to be crucial for catalysis. The functional significance of sequence specificity in junction-resolving enzymes is discussed.

摘要

CCE1是一种霍利迪(四链DNA)连接点特异性核酸内切酶,可在酿酒酵母中解析线粒体DNA重组中间体。连接点解析酶是一类多样的酶,在自然界中广泛分布,从病毒到高等真核生物都有。与大多数其他连接点解析酶一样,CCE1的切割活性依赖于核苷酸序列。我们使用单周转动力学测定法和一组合成的四链DNA连接点底物,对CCE1的序列特异性进行了系统研究。已鉴定出一个四核苷酸共有切割序列5'-ACT↓A,特异性主要存在于中央CT二核苷酸处。CCE1与四链连接点结合的平衡常数不受序列变异的影响,这表明底物识别主要发生在过渡态复合物中。CCE1在连接点中心切割效率最高,但也可在链交换点的3'或5'端一个核苷酸位置处切割DNA主链,这表明CCE1:连接点复合物具有显著程度的构象灵活性。在四链连接点的单个位点引入碱基类似物,使得能够更详细地研究CCE1的序列特异性。特别是,与共有序列中的胞嘧啶配对的鸟嘌呤的N7部分似乎对催化作用至关重要。文中讨论了连接点解析酶中序列特异性的功能意义。

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