Janulaitis A, Petrusyte M, Maneliene Z, Klimasauskas S, Butkus V
Institute of Biotechnology FERMENTAS, Vilnius, Lithuania.
Nucleic Acids Res. 1992 Nov 25;20(22):6043-9. doi: 10.1093/nar/20.22.6043.
The Eco57I restriction endonuclease and methylase were purified to homogeneity from the E.coli RR1 strain carrying the eco57IRM genes on a recombinant plasmid. The molecular weight of the denaturated methylase is 63 kDa. The restriction endonuclease exists in a monomeric form with an apparent molecular weight of 104-108 kDa. R.Eco57I also possesses methylase activity. The methylation activities of both enzymes modify the outer A residue in the target sequence 5'CTGAAG yielding N6-methyladenine. M.Eco57I modifies both strands of the substrate while R.Eco57I modifies only one. Only the methylase enzyme is stimulated by Ca2+. The restriction endonuclease shows an absolute requirement for Mg2+ and is stimulated by AdoMet. ATP has no influence on either activity of the enzymes. The subunit structure and enzymatic properties of the Eco57I enzymes distinguish them from all other restriction-modification enzymes that have been described previously. Therefore, RM.Eco57I may be regarded as a representative of a novel class of restriction-modification systems, and we propose to classify it as type IV.
从携带重组质粒上的eco57IRM基因的大肠杆菌RR1菌株中纯化出了Eco57I限制性内切酶和甲基化酶,使其达到了均一性。变性甲基化酶的分子量为63 kDa。限制性内切酶以单体形式存在,表观分子量为104 - 108 kDa。R.Eco57I也具有甲基化酶活性。两种酶的甲基化活性都会修饰靶序列5'CTGAAG中的外侧A残基,生成N6 - 甲基腺嘌呤。M.Eco57I会修饰底物的两条链,而R.Eco57I只修饰一条链。只有甲基化酶受Ca2 +刺激。限制性内切酶对Mg2 +有绝对需求,并受S - 腺苷甲硫氨酸刺激。ATP对这两种酶的活性均无影响。Eco57I酶的亚基结构和酶学特性使其有别于之前描述的所有其他限制性修饰酶。因此,RM.Eco57I可被视为一类新型限制性修饰系统的代表,我们建议将其归类为IV型。