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利用EcoRV限制性内切核酸酶进行定点诱变研究,以确定参与识别和催化的区域。

Site-directed mutagenesis studies with EcoRV restriction endonuclease to identify regions involved in recognition and catalysis.

作者信息

Thielking V, Selent U, Köhler E, Wolfes H, Pieper U, Geiger R, Urbanke C, Winkler F K, Pingoud A

机构信息

Zentrum Biochemie, Medizinische Hochschule Hannover, Germany.

出版信息

Biochemistry. 1991 Jul 2;30(26):6416-22. doi: 10.1021/bi00240a011.

Abstract

Guided by the X-ray structure analysis of a crystalline EcoRV-d(GGGATATCCC) complex (Winkler, in preparation), we have begun to identify functionally important amino acid residues of EcoRV. We show here that Asn70, Asp74, Ser183, Asn185, Thr186, and Asn188 are most likely involved in the binding and/or cleavage of the DNA, because their conservative substitution leads to mutants of no or strongly reduced activity. In addition, C-terminal amino acid residues of EcoRV seem to be important for its activity, since their deletion inactivates the enzyme. Following the identification of three functionally important regions, we have inspected the sequences of other restriction and modification enzymes for homologous regions. It was found that two restriction enzymes that recognize similar sequences as EcoRV (DpnII and HincII), as well as two modification enzymes (M.DpnII and, in a less apparent form, M.EcoRV), have the sequence motif -SerGlyXXXAsnIleXSer- in common, which in EcoRV contains the essential Ser183 and Asn188 residues. Furthermore, the C-terminal region, shown to be essential for EcoRV, is highly homologous to a similar region in the restriction endonuclease SmaI. On the basis of these findings we propose that these restriction enzymes and to a certain extent also some of their corresponding modification enzymes interact with DNA in a similar manner.

摘要

在结晶态的EcoRV-d(GGGATATCCC)复合物的X射线结构分析(温克勒,正在准备)的指导下,我们已经开始鉴定EcoRV中功能重要的氨基酸残基。我们在此表明,Asn70、Asp74、Ser183、Asn185、Thr186和Asn188极有可能参与DNA的结合和/或切割,因为它们的保守取代会导致无活性或活性大幅降低的突变体。此外,EcoRV的C末端氨基酸残基似乎对其活性很重要,因为它们的缺失会使酶失活。在鉴定出三个功能重要区域后,我们检查了其他限制酶和修饰酶的序列以寻找同源区域。发现两种识别与EcoRV相似序列的限制酶(DpnII和HincII)以及两种修饰酶(M.DpnII和,不太明显的,M.EcoRV)具有共同的序列基序-SerGlyXXXAsnIleXSer-,在EcoRV中该基序包含必需的Ser183和Asn188残基。此外,已证明对EcoRV至关重要的C末端区域与限制内切酶SmaI中的类似区域高度同源。基于这些发现,我们提出这些限制酶以及在一定程度上它们相应的一些修饰酶以相似的方式与DNA相互作用。

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