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首页> 外文期刊>Journal of bacteriology >Molecular cloning and expression of genetic determinants for the iron uptake system mediated by the Vibrio anguillarum plasmid pJM1.
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Molecular cloning and expression of genetic determinants for the iron uptake system mediated by the Vibrio anguillarum plasmid pJM1.

机译:鳗弧菌质粒pJM1介导的铁吸收系统的分子克隆和遗传决定因子的表达。

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Plasmid pJM1 from an invasive strain of Vibrio anguillarum encodes an iron uptake system which mediates the biosynthesis of a siderophore and a membrane receptor for the iron-siderophore complex. This system has been associated with the ability of V. anguillarum to cause hemorrhagic septicemic disease in marine fish. Recombinant derivatives containing essential regions of the pJM1-mediated iron uptake system cloned into cosmid vector pVK102 were introduced into low-virulence iron uptake-deficient V. anguillarum strains by using a trifactor mating procedure with helper plasmid pRK2013. Three recombinant clones, pJHC-T7, pJHC-T11, and pJHC-T2612, possessed genetic determinants for receptor activity. Production of receptor activity was correlated in all three cases with the presence of OM2, an 86-kilodalton outer membrane protein which was induced under iron-limiting conditions. Two of the clones, pJHC-T7 and pJHC-T2612, also coded for the production of siderophore activity, although at a much lower level than the wild type. Strains harboring either of these two clones were still unable to grow under iron-limiting conditions. This inability was overcome only when other indigenous pJM1 derivatives were present in the cells in addition to the recombinant cosmids. This restoration of high siderophore production and ability to grow under iron-limiting conditions was achieved even when the indigenous plasmids possessed lesions in genes involved in siderophore activity or in both siderophore and receptor production. Thus, another function mediated by plasmid pJM1, possibly a transacting factor, may play a role in the regulation of siderophore production. Results of experimental infections demonstrated that restoration of the ability to grow under conditions of iron limitations by introduction of an recombinant clone into one of the low-virulence V. anguillarum strains was correlated with an increase in bacterial pathogenicity.
机译:来自入侵性鳗弧菌的菌株的质粒pJM1编码铁摄取系统,该铁摄取系统介导铁-铁和铁-铁-铁配合物的膜受体的生物合成。该系统与鳗弧菌在海水鱼类中引起出血性败血病的能力有关。通过与辅助质粒pRK2013的三因子交配程序,将克隆到粘粒载体pVK102中的,包含pJM1介导的铁摄取系统必需区域的重组衍生物引入低毒力的铁摄取缺陷型安圭拉弧菌。三个重组克隆pJHC-T7,pJHC-T11和pJHC-T2612具有受体活性的遗传决定因素。在所有这三种情况下,受体活性的产生与OM2的存在相关,OM2是在铁限制条件下诱导的86千达尔顿外膜蛋白。 pJHC-T7和pJHC-T2612这两个克隆也编码产生铁载体活性,尽管其水平比野生型低得多。带有这两个克隆中任何一个的菌株在铁限制条件下仍无法生长。仅当重组黏粒中还存在其他天然pJM1衍生物时,才能克服这种无能。即使当原生质粒在涉及铁载体活性或涉及铁载体和受体产生的基因中具有损伤时,也实现了铁载体高产量和在铁限制条件下生长的能力的这种恢复。因此,由质粒pJM1介导的另一种功能,可能是一种交易因子,可能在铁载体产生的调节中起作用。实验性感染的结果表明,通过将重组克隆引入一种低毒力的安圭拉弧菌菌株中,在铁限制条件下恢复生长的能力与细菌致病性的增加有关。

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