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磷酸化的BvgA足以激活百日咳博德特氏菌中毒力调节基因的转录。

Phosphorylated BvgA is sufficient for transcriptional activation of virulence-regulated genes in Bordetella pertussis.

作者信息

Steffen P, Goyard S, Ullmann A

机构信息

Unité de Biochimie des Régulations Cellulaires, Institut Pasteur, 28 rue du Docteur Roux, Paris, France.

出版信息

EMBO J. 1996 Jan 2;15(1):102-9.

Abstract

In Bordetella pertussis the expression of virulence factors is coordinately regulated by the BvgS and BvgA proteins, members of the bacterial two-component signal transduction family, BvgS being the transmembrane sensor and BvgA the regulator. Activation of virulence gene expression requires phosphorylation of BvgA. On the basis of observed differences in the regulation of individual genes, the existence of accessory regulators has been postulated. They were supposed to be necessary for expression of genes encoding adenylate cyclase toxin (cya) and pertussis toxin (ptx), but not required for the expression of fha, encoding filamentous hemagglutinin. To clarify this issue we investigated the mechanism of activation of the BvgAS-controlled genes by performing in vitro run-off transcription experiments. We show, using purified RNA polymerase of B.pertussis, that phosphorylated BvgA is sufficient for transcriptional activation of the major virulence genes, thus providing good evidence that BvgA regulation operates directly with the transcription initiation machinery at the promoters of the virulence genes without a requirement for accessory activators. In addition, our results indicate that activation of the different promoters may involve distinct mechanisms. We suggest that the previously observed differences in regulation of individual virulence-associated genes reflect differences in the phosphorylation state of BvgA.

摘要

在百日咳博德特氏菌中,毒力因子的表达由细菌双组分信号转导家族成员BvgS和BvgA蛋白协同调控,BvgS为跨膜传感器,BvgA为调节因子。毒力基因表达的激活需要BvgA的磷酸化。基于观察到的各个基因调控的差异,推测存在辅助调节因子。它们被认为是编码腺苷酸环化酶毒素(cya)和百日咳毒素(ptx)的基因表达所必需的,但对于编码丝状血凝素的fha的表达不是必需的。为了阐明这个问题,我们通过进行体外连续转录实验研究了BvgAS控制基因的激活机制。我们使用纯化的百日咳博德特氏菌RNA聚合酶表明,磷酸化的BvgA足以对主要毒力基因进行转录激活,从而提供了充分的证据表明BvgA调控直接在毒力基因启动子处与转录起始机制协同作用,而不需要辅助激活剂。此外,我们的结果表明不同启动子的激活可能涉及不同的机制。我们认为先前观察到的各个毒力相关基因调控的差异反映了BvgA磷酸化状态的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db2c/449922/f660123b0a13/emboj00001-0105-a.jpg

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