Szybalski W, Kim S C, Hasan N, Podhajska A J
McArdle Laboratory for Cancer Research, University of Wisconsin, Madison 53706.
Gene. 1991 Apr;100:13-26. doi: 10.1016/0378-1119(91)90345-c.
Class-IIS restriction enzymes (ENases-IIS) interact with two discrete sites on double-stranded DNA: the recognition site, which is 4-7 bp long, and the cleavage site, usually 1-20 bp away from the recognition site. The recognition sequences of ENases-IIS are totally (or partially) asymmetric and all of the characterized ENases-IIS are monomeric. A total of 35 ENases-IIS are described (80, if all isoschizomers are taken into consideration) together with ten related ENases (class IIT), and 15 cognate methyltransferases (MTases-IIS). The physical, chemical, and molecular properties of the ENases-IIS and MTases-IIS are reviewed and many unique applications of this class of enzymes are described, including: precise trimming of DNA; retrieval of cloned fragments; gene assembly; use as a universal restriction enzyme; cleavage of single-stranded DNA; detection of point mutations; tandem amplification; printing-amplification reaction; and localization of methylated bases.
IIS类限制酶(ENases-IIS)与双链DNA上的两个离散位点相互作用:识别位点,长度为4 - 7个碱基对,以及切割位点,通常距离识别位点1 - 20个碱基对。ENases-IIS的识别序列完全(或部分)不对称,所有已表征的ENases-IIS都是单体。总共描述了35种ENases-IIS(如果考虑所有同裂酶,则为80种)以及十种相关的酶(IIT类)和15种同源甲基转移酶(MTases-IIS)。本文综述了ENases-IIS和MTases-IIS的物理、化学和分子特性,并描述了这类酶的许多独特应用,包括:DNA的精确修剪;克隆片段的回收;基因组装;用作通用限制酶;单链DNA的切割;点突变的检测;串联扩增;打印扩增反应;以及甲基化碱基的定位。