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通过位点特异性重组系统产生单碱基对缺失、插入和替换。

Generation of single base-pair deletions, insertions, and substitutions by a site-specific recombination system.

作者信息

Leong J M, Nunes-Düby S E, Landy A

出版信息

Proc Natl Acad Sci U S A. 1985 Oct;82(20):6990-4. doi: 10.1073/pnas.82.20.6990.

Abstract

The sequence analysis of both products of individual phi 80 site-specific recombination events in vivo shows that recombination with a secondary attachment (att) site generates several different novel joints at the mismatched position: one recombination event resulted in a single base-pair deletion and two other recombination events resulted in two different single base-pair substitutions. The characterized products of recombination can be straightforwardly interpreted as the outcome of strand exchange involving staggered nicks bracketing the heterology within an overlap region of five to nine base pairs. In comparison, more complex segregation patterns have been observed in previous studies of lambda recombination between nonidentical att sites; the nature of the overlap region heterology may have a significant effect on the segregation patterns. To recover both products of a single recombination event, we used a plasmid that carries the phi 80 int and xis genes and both att sites. Because the two att sites are situated in opposite orientation, intramolecular recombination between them inverts rather than deletes the intervening segment of DNA. Although subsequent reinversion restores the original gross genetic arrangement, single base-pair insertions, deletions, and substitutions are introduced at the sites of recombination. One of the mutations improves the recombination efficiency of the secondary att site and thereby converts a formerly "stable" sequence to an efficient target for rearrangement, and other mutations are predicted to alter the specificity of recombination. These pathways may also provide useful models for the efficient generation of localized sequence diversity on a development (as well as evolutionary) time scale.

摘要

对体内单个φ80位点特异性重组事件的两种产物进行序列分析表明,与二级附着(att)位点的重组在错配位置产生了几种不同的新型接头:一次重组事件导致一个单碱基对缺失,另外两次重组事件导致两种不同的单碱基对替换。已表征的重组产物可直接解释为涉及交错切口的链交换的结果,这些交错切口包围了五到九个碱基对重叠区域内的异源区域。相比之下,在先前关于不同att位点之间的λ重组研究中观察到了更复杂的分离模式;重叠区域异源的性质可能对分离模式有显著影响。为了回收单个重组事件的两种产物,我们使用了一种携带φ80 int和xis基因以及两个att位点的质粒。由于两个att位点的方向相反,它们之间的分子内重组会使DNA的中间片段发生倒转而非缺失。尽管随后的再次倒转会恢复原始的总体遗传排列,但单碱基对的插入、缺失和替换会在重组位点引入。其中一个突变提高了二级att位点的重组效率,从而将一个以前“稳定”的序列转变为一个有效的重排靶点,预计其他突变会改变重组的特异性。这些途径也可能为在发育(以及进化)时间尺度上有效产生局部序列多样性提供有用的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef7f/391295/c71cc7e56af9/pnas00360-0278-a.jpg

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