Kovacs B J, Gregory S P, Butterworth P H
Gene. 1984 Jul-Aug;29(1-2):63-8. doi: 10.1016/0378-1119(84)90166-5.
Some restriction endonucleases generate a single-stranded nick at their recognition sequences in the presence of ethidium bromide (EtBr). This nick can then be extended to a single-stranded gap in which mutations can be introduced by a variety of techniques. To date, the templates used in these studies have largely contained a single recognition site for a given enzyme. Therefore, we have extended these studies to twelve enzymes for which multiple recognition sites exist in the template and show that, under appropriate conditions, one single-stranded nick is introduced per plasmid molecule.
一些限制性内切核酸酶在溴化乙锭(EtBr)存在的情况下,会在其识别序列处产生单链切口。然后这个切口可以扩展为单链缺口,在这个缺口中可以通过多种技术引入突变。迄今为止,这些研究中使用的模板在很大程度上只包含给定酶的单个识别位点。因此,我们将这些研究扩展到模板中存在多个识别位点的12种酶,并表明在适当条件下,每个质粒分子会引入一个单链切口。