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MunI限制性内切酶假定活性位点残基的定点诱变:催化必需的羧酸盐残基的替换引发DNA结合特异性。

Site-directed mutagenesis of putative active site residues of MunI restriction endonuclease: replacement of catalytically essential carboxylate residues triggers DNA binding specificity.

作者信息

Lagunavicius A, Siksnys V

机构信息

Institute of Biotechnology, Graiciuno 8, Vilnius 2028, Lithuania.

出版信息

Biochemistry. 1997 Sep 16;36(37):11086-92. doi: 10.1021/bi963125i.

Abstract

Mapping of the conserved sequence regions in the restriction endonucleases MunI (C/AATTG) and EcoRI (G/AATTC) to the known X-ray structure of EcoRI allowed us to identify the sequence motif 82PDX14EXK as the putative catalytic/Mg2+ ion binding site of MunI [Siksnys, V., Zareckaja, N., Vaisvila, R., Timinskas, A., Stakenas, P., Butkus, V., & Janulaitis, A. Gene (1994) 142, 1-8]. Site-directed mutagenesis was then used to test whether amino acids P82, D83, E98, and K100 were important for the catalytic activity of MunI. Mutation P82A generated only a marginal effect on the cleavage properties of the enzyme. Investigation of the cleavage properties of the D83, E98, and K100 substitution mutants, however, in vivo and in vitro, revealed either an absence of catalytic activity or markedly reduced catalytic activity. Interestingly, the deleterious effect of the E98Q replacement in vitro was partially overcome by replacement of the metal cofactor used. Though the catalytic activity of the E98Q mutant was only 0.4% of WT under standard conditions (in the presence of Mg2+ ions), the mutant exhibited 40% of WT catalytic activity in buffer supplemented with Mn2+ ions. Further, the DNA binding properties of these substitution mutants were analyzed using the gel shift assay technique. In the absence of Mg2+ ions, WT MunI bound both cognate DNA and noncognate sequences with similar low affinities. The D83A and E98A mutants, in contrast, in the absence of Mg2+ ions, exhibited significant specificity of binding to cognate DNA, suggesting that the substitutions made can simulate the effect of the Mg2+ ion in conferring specificity to the MunI restriction enzyme.

摘要

通过将限制性内切酶MunI(C/AATTG)和EcoRI(G/AATTC)的保守序列区域与已知的EcoRI X射线结构进行比对,我们得以确定序列基序82PDX14EXK为MunI的推定催化/Mg2+离子结合位点[Siksnys, V., Zareckaja, N., Vaisvila, R., Timinskas, A., Stakenas, P., Butkus, V., & Janulaitis, A. Gene (1994) 142, 1 - 8]。随后利用定点诱变来测试氨基酸P82、D83、E98和K100对MunI催化活性是否重要。P82A突变对该酶的切割特性仅产生了轻微影响。然而,对D83、E98和K100替代突变体在体内和体外的切割特性研究表明,要么缺乏催化活性,要么催化活性显著降低。有趣的是,在体外,E98Q替代的有害效应通过更换所使用的金属辅因子而部分得到克服。尽管在标准条件下(存在Mg2+离子)E98Q突变体的催化活性仅为野生型的0.4%,但该突变体在补充了Mn2+离子的缓冲液中表现出野生型40%的催化活性。此外,使用凝胶迁移试验技术分析了这些替代突变体的DNA结合特性。在不存在Mg2+离子的情况下,野生型MunI以相似的低亲和力结合同源DNA和非同源序列。相比之下,在不存在Mg2+离子的情况下,D83A和E98A突变体表现出与同源DNA结合的显著特异性,这表明所做的替代可以模拟Mg2+离子赋予MunI限制酶特异性的作用。

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