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海洋蓝藻聚球藻属PCC7002的一种新型质粒重组机制。

A novel plasmid recombination mechanism of the marine cyanobacterium Synechococcus sp. PCC7002.

作者信息

Akiyama H, Kanai S, Hirano M, Miyasaka H

机构信息

Biological Sciences Department, Toray Research Center, Inc., Kamakura, Kanagawa, Japan.

出版信息

DNA Res. 1998 Dec 31;5(6):327-34. doi: 10.1093/dnares/5.6.327.

Abstract

We describe a novel mechanism of site-specific recombination in the unicellular marine cyanobacterium Synechococcus sp. PCC7002. The specific recombination sites on the smallest plasmid pAQ1 were localized by studying the properties of pAQ1-derived shuttle-vectors. We found that a palindromic element, the core sequence of which is G(G/A)CGATCGCC, functions as a resolution site for site-specific plasmid recombination. Furthermore, site-directed mutagenesis analysis of the element show that the site-specific recombination in the cyanobacterium requires sequence specificity, symmetry in the core sequence and, in part, the spacing between the elements. Interestingly, this element is over-represented not only in pAQ1 and in the genome of the cyanobacterium, but also in the accumulated cyanobacterial sequences from Synechococcus sp. PCC6301, PCC7942, vulcanus and Synechocystis sp. PCC6803 within GenBank and EMBL databases. Thus, these findings strongly suggest that the site-specific recombination mechanism based on the palindromic element should be common in these cyanobacteria.

摘要

我们描述了单细胞海洋蓝藻聚球藻属(Synechococcus sp.)PCC7002中位点特异性重组的一种新机制。通过研究源自pAQ1的穿梭载体的特性,确定了最小质粒pAQ1上的特异性重组位点。我们发现一个回文元件,其核心序列为G(G/A)CGATCGCC,作为位点特异性质粒重组的解离位点。此外,对该元件的定点诱变分析表明,蓝藻中的位点特异性重组需要序列特异性、核心序列中的对称性以及部分元件之间的间距。有趣的是,该元件不仅在pAQ1和蓝藻基因组中大量存在,而且在GenBank和EMBL数据库中来自聚球藻属PCC6301、PCC7942、火山聚球藻以及集胞藻属PCC6803的累积蓝藻序列中也大量存在。因此,这些发现有力地表明基于回文元件的位点特异性重组机制在这些蓝藻中应该很常见。

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