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H-NS regulation of virulence gene expression in enteroinvasive Escherichia coli harboring the virulence plasmid integrated into the host chromosome.

机译:H-NS调节在肠道侵袭性大肠杆菌中的毒力基因表达,其携带整合到宿主染色体中的毒力质粒。

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摘要

We have previously shown that integration of the virulence plasmid pINV into the chromosome of enteroinvasive Escherichia coli and of Shigella flexneri makes these strains noninvasive (C. Zagaglia, M. Casalino, B. Colonna, C. Conti, A. Calconi, and M. Nicoletti, Infect. Immun. 59:792-799, 1991). In this work, we have studied the transcription of the virulence regulatory genes virB, virF, and hns (virR) in wild-type enteroinvasive E. coli HN280 and in its pINV-integrated derivative HN280/32. While transcription of virF and of hns is not affected by pINV integration, transcription of virB is severely reduced even if integration does not occur within the virB locus. This indicates that VirF cannot activate virB transcription when pINV is integrated, and this lack of expression accounts for the noninvasive phenotype of HN280/32. Virulence gene expression in strains HN280 and HN280/32, as well as in derivatives harboring a mxiC::lacZ operon fusion either on the autonomously replicating pINV or on the integrated pINV, was studied. The effect of the introduction of plasmids carrying virB (pBNI) or virF (pHW745 and pMYSH6504), and of a delta hns deletion, in the different strains was evaluated by measuring beta-galactosidase activity, virB transcription, and virB-regulated virulence phenotypes like synthesis of Ipa proteins, contact-mediated hemolysis, and capacity to invade HeLa cells. The introduction of pBN1 or of the delta hns deletion in pINV-integrated strains induces temperature-regulated expression or temperature-independent expression, respectively, of beta-galactosidase activity and of all virulence phenotypes, while an increase in virF gene dosage does not, in spite of a high-level induction of virB transcription. Moreover, a wild-type hns gene placed in trans fully reversed the induction of beta-galactosidase activity due to the delta hns deletion. These results indicate that virB transcription is negatively regulated by H-NS both at 30 and at 37 degrees C in pINV-integrated strains and that there is also a dose-dependent effect of VirF on virB transcription. The negative effect of H-NS on virB transcription at the permissive temperature of 37 degrees C could be due to changes in the DNA topology occurring upon pINV integration that favor more stable binding of H-NS to the virB promoter DNA region. At 30 degrees C, the introduction of the high-copy-number plasmid pMYSH6504 (but not of the low-copy-number pHW745) or of the deltahns deletion induces, in strains harboring an autonomously replicating pINV, beta-galactosidase activity, virB transcription, and expression of the virulence phenotypes, indicating that, as for HN280/32, the increase in virF gene dosage overcomes the negative regulatory effect of H-NS on virB transcription. Moreover, we have found that virF transcription is finely modulated by temperature and, with E. coli K-12 strains containing a virF-lacZ gene fusion, by H-NS. This leads us to speculate that, in enteroinvasive bacteria, the level of Virf inside the cell controls the temperature-regulated expression of invasion genes.
机译:先前我们已经证明,将毒性质粒pINV整合到肠侵袭性大肠杆菌和弗氏志贺氏菌的染色体中会使这些菌株成为非侵害性的(C.Zagaglia,M.Casalino,B.Colonna,C.Conti,A.Calconi和M. Nicoletti,Infect.Immun.59:792-799,1991)。在这项工作中,我们研究了野生型肠道侵袭性大肠杆菌HN280及其pINV整合的衍生物HN280 / 32中毒力调节基因virB,virF和hns(virR)的转录。尽管virF和hns的转录不受pINV整合的影响,但即使在virB基因座中未发生整合,virB的转录也会大大降低。这表明当整合了pINV时,VirF无法激活virB转录,这种表达的缺乏解释了HN280 / 32的非侵入性表型。研究了在自主复制的pINV或整合的pINV上,菌株HN280和HN280 / 32以及带有mxiC :: lacZ操纵子融合体的衍生物中的毒力基因表达。通过测量β-半乳糖苷酶活性,virB转录和virB调控的毒力表型,评估了在不同菌株中引入带有virB(pBNI)或virF(pHW745和pMYSH6504)的质粒以及Δhns缺失的效果。 Ipa蛋白的合成,接触介导的溶血作用以及侵袭HeLa细胞的能力。在pINV整合菌株中引入pBN1或Δhns缺失分别诱导β-半乳糖苷酶活性和所有毒力表型的温度调节表达或温度非依赖性表达,而virF基因剂量的增加不会尽管对virB转录有高水平的诱导作用。此外,由于δhns缺失,置于反式的野生型hns基因完全逆转了对β-半乳糖苷酶活性的诱导。这些结果表明,在整合了pINV的菌株中,vir-B转录在30和37摄氏度下都受到H-NS的负调控,并且VirF对virB转录也具有剂量依赖性。 H-NS在37摄氏度的允许温度下对virB转录的负面影响可能归因于pINV整合后发生的DNA拓扑变化,这有利于H-NS与virB启动子DNA区域更稳定的结合。在30摄氏度下,高拷贝数质粒pMYSH6504(而不是低拷贝数pHW745的质粒)或deltahns缺失的引入在具有自主复制pINV的菌株中诱导了β-半乳糖苷酶活性,virB转录,以及毒力表型的表达,表明就HN280 / 32而言,virF基因剂量的增加克服了H-NS对virB转录的负面调节作用。此外,我们已经发现,virF转录受温度和H-NS对含有virF-lacZ基因融合体的大肠杆菌K-12菌株的温度进行精细调节。这使我们推测,在肠入侵细菌中,细胞内Virf的水平控制着温度调节入侵基因的表达。

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