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耶尔森菌高致病性岛的整合模块

Integrative module of the high-pathogenicity island of Yersinia.

作者信息

Rakin A, Noelting C, Schropp P, Heesemann J

机构信息

Max von Pettenkofer-Institut für Hygiene und Medizinische Mikrobiologie, Petterkofer Str. 9a, 80336 München, Germany.

出版信息

Mol Microbiol. 2001 Jan;39(2):407-15. doi: 10.1046/j.1365-2958.2001.02227.x.

Abstract

The high-pathogenicity island of Yersinia pestis (Yps HPI) encodes virulence-associated genes involved in siderophore yersiniabactin-mediated iron uptake. The Yps HPI contains a P4-type integrase (Int-HPI), associated with the asn-tRNA locus, and is flanked by 17 bp direct repeats. We constructed a minimal integrative module of the pathogenicity island carrying the reconstituted 266 bp attP (POP') attachment site derived from putative attR and attL junctions of the Yps HPI and the functional int-HPI gene from Y. pestis KUMA. The attP-int-HPI module recombined efficiently, site specifically and RecA independently with the bacterial attB site present either in the chromosome (asn-tDNA) or on a plasmid, with no preference for a certain asn-tRNA gene. The excision of the integrated suicide plasmid carrying the integrative module, on the other hand, was a rare event and could be demonstrated only by polymerase chain reaction. Analysis of the 5' terminus of the transcript for int-HPI revealed that the integration of attP-int-HPI was coupled with the replacement of the endogenous int-HPI promoter, localized in the P' part of the attP site, by the adjacent asn-tRNA promoter. These results suggest that two alternative promoters control integration and excision of the HPI by its integrase.

摘要

鼠疫耶尔森菌的高致病性岛(Yps HPI)编码与耶尔森菌素介导的铁摄取相关的毒力相关基因。Yps HPI包含一个与天冬酰胺tRNA基因座相关的P4型整合酶(Int-HPI),并由17 bp的正向重复序列侧翼包围。我们构建了一个致病性岛的最小整合模块,该模块携带了源自Yps HPI假定的attR和attL连接点的重构266 bp attP(POP')附着位点以及来自鼠疫耶尔森菌KUMA的功能性int-HPI基因。attP-int-HPI模块能高效、位点特异性且独立于RecA地与存在于染色体(天冬酰胺tDNA)或质粒上的细菌attB位点进行重组,对特定的天冬酰胺tRNA基因无偏好。另一方面,携带整合模块的整合自杀质粒的切除是一个罕见事件,只能通过聚合酶链反应来证明。对int-HPI转录本5'末端的分析表明,attP-int-HPI的整合与内源性int-HPI启动子的替换相关,该启动子位于attP位点的P'部分,被相邻的天冬酰胺tRNA启动子所取代。这些结果表明,两个替代启动子通过其整合酶控制HPI的整合和切除。

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