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I型限制性内切酶R.EcoR124I中的蛋白质-蛋白质和蛋白质-DNA相互作用。

Protein-protein and protein-DNA interactions in the type I restriction endonuclease R.EcoR124I.

作者信息

Mernagh D R, Janscak P, Firman K, Kneale G G

机构信息

Division of Molecular and Cell Biology, School of Biological Sciences, University of Portsmouth, UK.

出版信息

Biol Chem. 1998 Apr-May;379(4-5):497-503. doi: 10.1515/bchm.1998.379.4-5.497.

Abstract

The type I restriction-modification system EcoR124I recognizes and binds to the split DNA recognition sequence 5'-GAAN(6)RTCG-3'. The methyltransferase, consisting of HsdM and HsdS subunits with the composition M2S, can interact with one or more subunits of the HsdR subunit to form the endonuclease. The interaction of the methyltransferase with HsdR has been investigated by surface plasmon resonance, showing that there are two non-equivalent binding sites for HsdR which differ in binding affinity by at least two orders of magnitude. DNA footprinting experiments using Exonuclease III suggest that the addition of HsdR to the methyltransferase (at a stoichiometry of either 1:1 or 2:1) increases the stability of the resulting DNA-protein complex but does not increase the size of the footprint. More extensive in situ footprinting experiments using copper-phenanthroline on the DNA-protein complexes formed by M2S, R1M2S and R2M2S also show no difference in the detailed cleavage pattern, with approximately 18 nucleotides protected on both strands in each complex. Thus the HsdR subunit(s) of the endonuclease stabilise the interaction of the M2S complex with DNA, but do not directly contribute to DNA binding. In addition, the thymidine nucleotide in the tetranucleotide recognition sequence GTCG is hyper-reactive to cleavage in each case, suggesting that the DNA structure in this region is altered in these complexes.

摘要

I型限制修饰系统EcoR124I识别并结合分裂的DNA识别序列5'-GAAN(6)RTCG-3'。甲基转移酶由组成M2S的HsdM和HsdS亚基组成,可与HsdR亚基的一个或多个亚基相互作用形成内切核酸酶。通过表面等离子体共振研究了甲基转移酶与HsdR的相互作用,结果表明HsdR有两个不等价的结合位点,其结合亲和力相差至少两个数量级。使用核酸外切酶III的DNA足迹实验表明,向甲基转移酶中添加HsdR(化学计量比为1:1或2:1)可增加所得DNA-蛋白质复合物的稳定性,但不会增加足迹的大小。使用铜-菲咯啉对由M2S、R1M2S和R2M2S形成的DNA-蛋白质复合物进行更广泛的原位足迹实验,也表明详细的切割模式没有差异,每个复合物中两条链上大约有18个核苷酸受到保护。因此,内切核酸酶的HsdR亚基稳定了M2S复合物与DNA的相互作用,但不直接参与DNA结合。此外,在每种情况下,四核苷酸识别序列GTCG中的胸腺嘧啶核苷酸对切割具有高反应性,这表明该区域的DNA结构在这些复合物中发生了改变。

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