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首页> 外文期刊>Nucleic Acids Research >TstI, a Type II restriction-modification protein with DNA recognition, cleavage and methylation functions in a single polypeptide
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TstI, a Type II restriction-modification protein with DNA recognition, cleavage and methylation functions in a single polypeptide

机译:TstI,II型限制性修饰蛋白,具有单个多肽中的DNA识别,切割和甲基化功能

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Type II restriction-modification systems cleave and methylate DNA at specific sequences. However, the Type IIB systems look more like Type I than conventional Type II schemes as they employ the same protein for both restriction and modification and for DNA recognition. Several Type IIB proteins, including the archetype BcgI, are assemblies of two polypeptides: one with endonuclease and methyltransferase roles, another for DNA recognition. Conversely, some IIB proteins express all three functions from separate segments of a single polypeptide. This study analysed one such single-chain protein, TstI. Comparison with BcgI showed that the one- and the two-polypeptide systems differ markedly. Unlike the heterologous assembly of BcgI, TstI forms a homotetramer. The tetramer bridges two recognition sites before eventually cutting the DNA in both strands on both sides of the sites, but at each site the first double-strand break is made long before the second. In contrast, BcgI cuts all eight target bonds at two sites in a single step. TstI also differs from BcgI in either methylating or cleaving unmodified sites at similar rates. The site may thus be modified before TstI can make the second double-strand break. TstI MTase acts best at hemi-methylated sites.C1 Halford, Stephen E.; Univ Bristol, DNA Prot Interact Unit, Sch Biochem, Bristol BS8 1TD, Avon, UKSC Biochemistry & Molecular Biology
机译:II型限制性修饰系统以特定序列切割和甲基化DNA。但是,与常规的II型方案相比,IIB型系统看起来更像I型,因为它们使用相同的蛋白质进行限制和修饰以及DNA识别。几种IIB型蛋白质(包括原型BcgI)是两种多肽的组装体:一种具有核酸内切酶和甲基转移酶的作用,另一种用于DNA识别。相反,某些IIB蛋白从单个多肽的不同片段表达全部三种功能。这项研究分析了一种这样的单链蛋白TstI。与BcgI的比较表明,一个和两个多肽系统明显不同。与BcgI的异源组装不同,TstI形成同源四聚体。四聚体桥接两个识别位点,然后最终在位点两侧的两条链中切割DNA,但在每个位点,第一个双链断裂要早于第二个。相比之下,BcgI只需一步即可在两个位点切割所有八个靶标键。 TstI与BcgI的区别还在于甲基化或以相似的速率切割未修饰位点。因此,可以在TstI可以进行第二个双链断裂之前修饰该位点。 TstI MTase在半甲基化位点发挥最佳作用。布里斯托大学(Univ Bristol),DNA生物相互作用单元,Sch Biochem,布里斯托BS8 1TD,雅芳(Avon),UKSC生物化学与分子生物学

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