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ApaLI、NspI、NspHI、SacI、ScaI和SapI限制修饰系统在大肠杆菌中的克隆与表达。

Cloning and expression of the ApaLI, NspI, NspHI, SacI, ScaI, and SapI restriction-modification systems in Escherichia coli.

作者信息

Xu S Y, Xiao J P, Ettwiller L, Holden M, Aliotta J, Poh C L, Dalton M, Robinson D P, Petronzio T R, Moran L, Ganatra M, Ware J, Slatko B, Benner J

机构信息

New England Biolabs, Inc., Beverly, MA 01915, USA.

出版信息

Mol Gen Genet. 1998 Nov;260(2-3):226-31. doi: 10.1007/s004380050890.

Abstract

The genes encoding the ApaLI (5'-GTGCAC-3'), NspI (5'-RCATGY-3'), NspHI (5'-RCATGY-3'), SacI (5'-GAGCTC-3'), SapI (5'-GCTCTTCN1-3', 5'-N4GAAGAGC-3') and ScaI (5'-AGTACT-3') restriction-modification systems have been cloned in E. coli. Amino acid sequence comparison of M.ApaLI, M.NspI, M.NspHI, and M.SacI with known methylases indicated that they contain the ten conserved motifs characteristic of C5 cytosine methylases. NspI and NspHI restriction-modification systems are highly homologous in amino acid sequence. The C-termini of the NspI and NlaIII (5'-CATG-3') restriction endonucleases share significant similarity. 5mC modification of the internal C in a SacI site renders it resistant to SacI digestion. External 5mC modification of a SacI site has no effect on SacI digestion. N4mC modification of the second base in the sequence 5'-GCTCTTC-3' blocks SapI digestion. N4mC modification of the other cytosines in the SapI site does not affect SapI digestion. N4mC modification of ScaI site blocks ScaI digetion. A DNA invertase homolog was found adjacent to the ApaLI restriction-modification system. A DNA transposase subunit homolog was found upstream of the SapI restriction endonuclease gene.

摘要

编码ApaLI(5'-GTGCAC-3')、NspI(5'-RCATGY-3')、NspHI(5'-RCATGY-3')、SacI(5'-GAGCTC-3')、SapI(5'-GCTCTTCN1-3',5'-N4GAAGAGC-3')和ScaI(5'-AGTACT-3')限制修饰系统的基因已在大肠杆菌中克隆。M.ApaLI、M.NspI、M.NspHI和M.SacI与已知甲基化酶的氨基酸序列比较表明,它们含有C5胞嘧啶甲基化酶特有的十个保守基序。NspI和NspHI限制修饰系统在氨基酸序列上高度同源。NspI和NlaIII(5'-CATG-3')限制内切酶的C末端具有显著的相似性。SacI位点内部C的5mC修饰使其对SacI消化具有抗性。SacI位点的外部5mC修饰对SacI消化没有影响。序列5'-GCTCTTC-3'中第二个碱基的N4mC修饰会阻止SapI消化。SapI位点中其他胞嘧啶的N4mC修饰不影响SapI消化。ScaI位点的N4mC修饰会阻止ScaI消化。在ApaLI限制修饰系统附近发现了一个DNA转化酶同源物。在SapI限制内切酶基因上游发现了一个DNA转座酶亚基同源物。

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