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SXT整合与切除的控制

Control of SXT integration and excision.

作者信息

Burrus Vincent, Waldor Matthew K

机构信息

Department of Microbiology and Medicine, Tufts University School of Medicine, 136 Harrison Avenue, Boston, MA 02111, USA.

出版信息

J Bacteriol. 2003 Sep;185(17):5045-54. doi: 10.1128/JB.185.17.5045-5054.2003.

Abstract

The Vibrio cholerae SXT element is a conjugative self-transmissible chromosomally integrating element that encodes resistance to multiple antibiotics. SXT integrates in a site-specific fashion at prfC and excises from the chromosome to form a circular but nonreplicative extrachromosomal form. Both chromosomal integration and excision depend on an SXT-encoded recombinase, Int. Here we found that Int is necessary and sufficient for SXT integration and that int expression in recipient cells requires the SXT activators SetC and SetD. Although no xis-like gene was annotated in the SXT genome, Int was not sufficient to mediate efficient SXT chromosomal excision. We identified a novel SXT Xis that seems to function as a recombination directionality factor (RDF), facilitating SXT excision and inhibiting SXT integration. Although unrelated to any previously characterized RDF, Xis is similar to five hypothetical proteins that together may constitute a new family of RDFs. Using real-time quantitative PCR assays to study SXT excision from the chromosome, we determined that while SXT excision is required for SXT transfer, the percentage of cells containing an excised circular SXT does not appear to be a major factor limiting SXT transfer; i.e., we found that most cells harboring an excised circular SXT molecule do not act as SXT donors. In the absence of prfC, SXT integrated into several secondary attachment sites but preferentially into the 5' end of pntB. SXT excision and transfer from a donor containing pntB::SXT were reduced, suggesting that the SXT integration site may also influence the element's transmissibility.

摘要

霍乱弧菌SXT元件是一种可接合的自我传递性染色体整合元件,编码对多种抗生素的抗性。SXT以位点特异性方式整合到prfC位点,并从染色体上切除形成环状但非复制性的染色体外形式。染色体整合和切除都依赖于SXT编码的重组酶Int。我们发现Int对于SXT整合是必需且充分的,并且受体细胞中int的表达需要SXT激活因子SetC和SetD。尽管在SXT基因组中未注释到类似xis的基因,但Int不足以介导有效的SXT染色体切除。我们鉴定出一种新型的SXT Xis,它似乎作为重组方向性因子(RDF)发挥作用,促进SXT切除并抑制SXT整合。尽管与任何先前表征的RDF无关,但Xis与五个假定蛋白相似,它们可能共同构成一个新的RDF家族。使用实时定量PCR分析研究SXT从染色体上的切除,我们确定虽然SXT切除对于SXT转移是必需的,但含有切除的环状SXT的细胞百分比似乎不是限制SXT转移的主要因素;即,我们发现大多数含有切除的环状SXT分子的细胞不作为SXT供体。在没有prfC的情况下,SXT整合到几个次要附着位点,但优先整合到pntB的5'端。从含有pntB::SXT的供体中进行的SXT切除和转移减少,表明SXT整合位点也可能影响该元件的可传递性。

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