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血链球菌(Challis株)的质粒转化通过环状和线性分子发生。

Plasmid transformation of Streptococcus sanguis (Challis) occurs by circular and linear molecules.

作者信息

Behnke D

出版信息

Mol Gen Genet. 1981;182(3):490-7. doi: 10.1007/BF00293940.

Abstract

Transformation of Streptococcus sanguis (Challis) by antibiotic resistance plasmids has shown that (a) competence developed with identical kinetics for chromosomal and plasmid DNA; (b) dependence of transformant yield on plasmid DNA concentration was second order; (c) open circular plasmid DNA transformed Challis, although at reduced frequency, (d) linearization of plasmid DNA by restriction enzymes cutting at unique sites inactivated the transforming capacity; (e) transforming activity was restored when linear plasmid molecules generated by different restriction enzymes were mixed; (f) restoration of transforming activity depended on the distance between the linearizing cuts, i.e. on the presence of sufficiently long overlapping homologous sequences; (g) when linear deletion mutants were mixed with linear parental plasmids the smaller plasmid was restored with significantly higher frequency. Based on these data, a model for plasmid transformation of Challis is proposed according to which circular plasmid is linearized during binding and uptake. One DNA strand enters the cell and restoration of circular plasmids inside the cell occurs by annealing of complementary single strands from two different donor molecules. Implications of this model for recombinant DNA experiments in streptococci are discussed.

摘要

用抗生素抗性质粒对血链球菌(Challis)进行转化已表明:(a)感受态对染色体DNA和质粒DNA的形成动力学相同;(b)转化子产量对质粒DNA浓度的依赖性为二级;(c)开环质粒DNA可转化Challis,尽管频率较低;(d)通过在唯一位点切割的限制酶使质粒DNA线性化会使其转化能力失活;(e)当由不同限制酶产生的线性质粒分子混合时,转化活性得以恢复;(f)转化活性的恢复取决于线性化切割之间的距离,即取决于是否存在足够长的重叠同源序列;(g)当线性缺失突变体与线性亲本质粒混合时,较小的质粒恢复频率明显更高。基于这些数据,提出了Challis质粒转化的模型,根据该模型,环状质粒在结合和摄取过程中被线性化。一条DNA链进入细胞,细胞内环状质粒通过来自两个不同供体分子的互补单链退火而恢复。讨论了该模型对链球菌重组DNA实验的意义。

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