Merkiene E, Vilkaitis G, Klimasauskas S
Institute of Biotechnology, Vilnius, Lithuania.
Biol Chem. 1998 Apr-May;379(4-5):569-71.
Sequence analysis of the BcnI restriction-modification system revealed the presence of an open reading frame encoding a second cytosine-N4 methyltransferase, M.BcnIA, in the vicinity of the genes specifying the previously characterized cytosine-N4 methyltransferase M.BcnIB and restriction endonuclease R.BcnI. Both methyltransferases were purified from the E. coli cells expressing the individual genes, and their enzymatic efficiencies in vitro were compared with a variety of DNA substrates. Both enzymes act on 5'-CC(C/G)GG-3' sites in double-stranded DNA, however, M.BcnIA can also, with a comparable efficiency, modify the specific targets in single-stranded DNA. The biological significance of the presence of the tandem methyltransferases in the BcnI system is discussed.
对BcnI限制修饰系统的序列分析显示,在指定先前已表征的胞嘧啶-N4甲基转移酶M.BcnIB和限制内切酶R.BcnI的基因附近,存在一个编码第二种胞嘧啶-N4甲基转移酶M.BcnIA的开放阅读框。两种甲基转移酶均从表达单个基因的大肠杆菌细胞中纯化出来,并将它们在体外对多种DNA底物的酶促效率进行了比较。两种酶都作用于双链DNA中的5'-CC(C/G)GG-3'位点,然而,M.BcnIA也能以相当的效率修饰单链DNA中的特定靶标。文中讨论了BcnI系统中串联甲基转移酶存在的生物学意义。