...
首页> 外文期刊>PLoS Pathogens >Multiple weak interactions between BvgA~P and ptx ?promoter DNA strongly activate transcription of pertussis toxin genes in Bordetella pertussis
【24h】

Multiple weak interactions between BvgA~P and ptx ?promoter DNA strongly activate transcription of pertussis toxin genes in Bordetella pertussis

机译:BVGA〜P和PTX之间的多重相互作用?启动子DNA强烈激活Bordetella Pertussis的Pertussis毒素基因的转录

获取原文
           

摘要

Pertussis toxin is the preeminent virulence factor and major protective antigen produced by Bordetella pertussis , the human respiratory pathogen and etiologic agent of whooping cough. Genes for its synthesis and export are encoded by the 12 kb ptx-ptl operon, which is under the control of the pertussis promoter, P ptx . Expression of this operon, like that of all other known protein virulence factors, is regulated by the BvgAS two-component global regulatory system. Although P ptx has been studied for years, characterization of its promoter architecture vis-à-vis BvgA-binding has lagged behind that of other promoters, mainly due to its lower affinity for BvgA~P. Here we take advantage of a mutant BvgA protein (Δ127–129), which enhances ptx transcription in B . pertussis and also demonstrates enhanced binding affinity to P ptx . By using this mutant protein labeled with FeBABE, binding of six head-to-head dimers of BvgA~P was observed, with a spacing of 22 bp, revealing a binding geometry similar to that of other BvgA-activated promoters carrying at least one strong binding site. All of these six BvgA-binding sites lack sequence features associated with strong binding. A genetic analysis indicated the degree to which each contributes to P ptx activity. Thus the weak/medium binding affinity of P ptx revealed in this study explains its lower responsiveness to phosphorylated BvgA, relative to other promoters containing a high affinity binding site, such as that of the fha operon.
机译:Pertussis Toxin是Bordetella Pertussis,人类呼吸病原体和呼吸咳嗽的主要防毒抗原。其合成和出口的基因由12 kB PTX-PTL操纵子编码,其在Pertussis启动子P PTX的控制下。这种操纵子的表达,就像所有其他已知的蛋白质毒力因子一样,由BVGA双组分全球监管系统调节。尽管多年来已经研究了P PTX,但其启动子建筑的表征Vis-is-Vis BVGA结合的落后于其他启动子的背后,主要是由于其对BVGA〜P的亲和力较低。在这里,我们利用突变体BVGA蛋白(δ127-129),其增强了B中的PTX转录。百日咳并还证明了对P PTX的增强的结合亲和力。通过使用与FeBabe标记的该突变蛋白,观察到BVGA〜P的六个头部二聚体的结合,其间距为22bp,揭示了与携带至少一个强度的其他BVGA活化的启动子的结合几何形状结合位点。所有这六个BVGA结合位点缺乏与强绑定相关的序列特征。遗传分析表明了各自促进P PTX活性的程度。因此,本研究中揭示的P PTX的弱/中等结合亲和力解释了其与含有高亲和力结合位点的其他启动子的磷酸化BVGA的较低反应性,例如FHA操纵子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号