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耶尔森氏菌高致病性岛(HPI):进化与功能方面

The Yersinia high-pathogenicity island (HPI): evolutionary and functional aspects.

作者信息

Schubert Sören, Rakin Alexander, Heesemann Jürgen

机构信息

Max von Pettenkofer-Institut für Hygiene und Medizinische Mikrobiologie, Lehrstuhl für Bakteriologie, Pettenkoferstr 9a, D-80336 München, Germany.

出版信息

Int J Med Microbiol. 2004 Sep;294(2-3):83-94. doi: 10.1016/j.ijmm.2004.06.026.

Abstract

The high-pathogenicity island (HPI) is a genomic island essential for the mouse-virulence phenotype in Yersinia and indispensable for pathogenicity of Yersinia and certain pathotypes of Escherichia coli. In contrast to most genomic islands, the HPI is a functional island widely disseminated among members of the family of Enterobacteriaceae. The HPI-encoded phage P4-like integrase together with excisionase and recombination sites make up the genetic mobility module of the island, while the siderophore yersiniabactin biosynthesis and uptake system comprises its functional part with respect to fitness and pathogenicity. The HPI-integrase promotes integration of the island into attB sites represented by three to four asn tDNAs in Yersinia pestis and E. coli. An additional enzyme, excisionase, is essential for efficient excision of the HPI from the initial site of integration. Furthermore a unique type of HPI has been characterized in the E. coli strain ECOR31 carrying a functional conjugative mating pair formation (Mpf) and a DNA-processing system, both of which are characteristic of integrative and conjugative elements (ICE). A model of conjugative transfer for the dissemination of HPIs is proposed in which the excised HPI is mobilized to a new recipient either trapped by a transmissive asn tDNA-carrying plasmid or autonomously as an ICE named ICEEcl.

摘要

高致病性岛(HPI)是耶尔森菌属中对小鼠毒力表型至关重要的基因组岛,对耶尔森菌属和某些大肠杆菌致病型的致病性不可或缺。与大多数基因组岛不同,HPI是一个在肠杆菌科成员中广泛传播的功能岛。HPI编码的类噬菌体P4整合酶与切除酶及重组位点共同构成了该岛的遗传移动模块,而铁载体耶尔森菌素的生物合成和摄取系统则是其在适应性和致病性方面的功能部分。HPI整合酶促进该岛整合到鼠疫耶尔森菌和大肠杆菌中由三到四个天冬酰胺tDNA代表的attB位点。另一种酶,即切除酶,对于从初始整合位点高效切除HPI至关重要。此外,在携带功能性接合配对形成(Mpf)和DNA加工系统的大肠杆菌菌株ECOR31中鉴定出了一种独特类型的HPI,这两者都是整合性接合元件(ICE)的特征。提出了一种HPI传播的接合转移模型,其中切除的HPI被携带可转移天冬酰胺tDNA的质粒捕获或作为名为ICEEcl的ICE自主转移到新的受体中。

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