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博德特氏菌属中bvg位点的结构与遗传分析。

Structural and genetic analysis of the bvg locus in Bordetella species.

作者信息

Aricò B, Scarlato V, Monack D M, Falkow S, Rappuoli R

机构信息

Sclavo Research Centre, Siena, Italy.

出版信息

Mol Microbiol. 1991 Oct;5(10):2481-91. doi: 10.1111/j.1365-2958.1991.tb02093.x.

Abstract

The bvg locus contains two genes, bvgA and bvgS, which control the expression of the virulence-associated genes in Bordetella species by a system similar to the two-component systems used by a variety of bacterial species to respond to environmental stimuli. We determined the nucleotide sequence of the bvg loci of Bordetella parapertussis and Bordetella bronchiseptica and compared them with the previously determined sequence of Bordetella pertussis. The nucleotide and amino acid sequences of the bvg loci of these species are well conserved in those regions coding for the protein domains which have putative kinase and DNA-binding activities. In marked contrast, the region of BvgS that codes for the protein domain with putative sensor activity shows a high degree of variability. In total, we find 198 base-pair changes in the bvg loci of B. parapertussis and B. bronchiseptica relative to the bvg locus of B. pertussis. One hundred and seventy-three of these base-pair changes are identical in B. parapertussis and B. bronchiseptica. This confirms our previous observation that B. parapertussis and B. bronchiseptica are more related to each other than to B. pertussis. We have mapped the mutations that cause phase changes in B. bronchiseptica and we have found that in three cases these are due to spontaneous deletions in the bvgS gene. The wild-type bvg locus present on a multicopy plasmid cannot complement avirulent derivatives of B. bronchiseptica to wild-type levels, but it can do so when the bvgA gene on the plasmid is inactivated. This suggests that hyperexpression of bvgA down-regulates the bvg system.

摘要

bvg位点包含两个基因,bvgA和bvgS,它们通过一种类似于多种细菌物种用于响应环境刺激的双组分系统来控制博德特氏菌属中与毒力相关基因的表达。我们测定了副百日咳博德特氏菌和支气管败血博德特氏菌bvg位点的核苷酸序列,并将它们与先前测定的百日咳博德特氏菌的序列进行比较。这些物种bvg位点的核苷酸和氨基酸序列在编码具有假定激酶和DNA结合活性的蛋白质结构域的区域中高度保守。形成鲜明对比的是,编码具有假定传感活性的蛋白质结构域的BvgS区域显示出高度的变异性。总体而言,相对于百日咳博德特氏菌的bvg位点,我们在副百日咳博德特氏菌和支气管败血博德特氏菌的bvg位点中发现了198个碱基对的变化。其中173个碱基对的变化在副百日咳博德特氏菌和支气管败血博德特氏菌中是相同的。这证实了我们之前的观察结果,即副百日咳博德特氏菌和支气管败血博德特氏菌彼此之间的关系比它们与百日咳博德特氏菌的关系更为密切。我们已经定位了导致支气管败血博德特氏菌发生相变的突变,并且我们发现,在三种情况下,这些突变是由于bvgS基因中的自发缺失所致。存在于多拷贝质粒上的野生型bvg位点不能将支气管败血博德特氏菌的无毒衍生物互补到野生型水平,但当质粒上的bvgA基因失活时,它可以做到这一点。这表明bvgA的过度表达会下调bvg系统。

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