首页> 美国卫生研究院文献>Journal of Bacteriology >Interplay among Cyclic Diguanylate HapR and the General Stress Response Regulator (RpoS) in the Regulation of Vibrio cholerae Hemagglutinin/Protease
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Interplay among Cyclic Diguanylate HapR and the General Stress Response Regulator (RpoS) in the Regulation of Vibrio cholerae Hemagglutinin/Protease

机译:环状双鸟苷酸HapR和一般应激反应调节剂(RpoS)在霍乱弧菌血凝素/蛋白酶调节中的相互作用

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摘要

Vibrio cholerae secretes the Zn-dependent metalloprotease hemagglutinin (HA)/protease (mucinase), which is encoded by hapA and displays a broad range of potential pathogenic activities. Expression of HA/protease has a stringent requirement for the quorum-sensing regulator HapR and the general stress response regulator RpoS. Here we report that the second messenger cyclic diguanylic acid (c-di-GMP) regulates the production of HA/protease in a negative manner. Overexpression of a diguanylate cyclase to increase the cellular c-di-GMP pool resulted in diminished expression of HA/protease and its positive regulator, HapR. The effect of c-di-GMP on HapR was independent of LuxO but was abolished by deletion of the c-di-GMP binding protein VpsT, the LuxR-type regulator VqmA, or a single-base mutation in the hapR promoter that prevents autorepression. Though expression of HapR had a positive effect on RpoS biosynthesis, direct manipulation of the c-di-GMP pool at a high cell density did not significantly impact RpoS expression in the wild-type genetic background. In contrast, increasing the c-di-GMP pool severely inhibited RpoS expression in a ΔhapR mutant that is locked in a regulatory state mimicking low cell density. Based on the above findings, we propose a model for the interplay between HapR, RpoS, and c-di-GMP in the regulation of HA/protease expression.
机译:霍乱弧菌分泌锌依赖性金属蛋白酶血凝素(HA)/蛋白酶(粘蛋白酶),由hapA编码并显示出广泛的潜在致病活性。 HA /蛋白酶的表达对群体感应调节剂HapR和一般应激反应调节剂RpoS都有严格的要求。在这里,我们报告第二信使环二鸟苷酸(c-di-GMP)以负面的方式调节HA /蛋白酶的产生。双鸟苷酸环化酶的过表达增加了细胞c-di-GMP池,导致HA /蛋白酶及其阳性调节子HapR的表达减少。 c-di-GMP对HapR的作用独立于LuxO,但由于删除c-di-GMP结合蛋白VpsT,LuxR型调节剂VqmA或hapR启动子中的单碱基突变而阻止了其自动阻遏,从而消除了作用。 。尽管HapR的表达对RpoS的生物合成具有积极作用,但在高细胞密度下直接操作c-di-GMP库并不会显着影响野生型遗传背景中的RpoS的表达。相反,增加c-di-GMP库会严重抑制ΔhapR突变体中RpoS的表达,该突变体被锁定在模仿低细胞密度的调节状态。基于上述发现,我们提出了一个模型,用于HapR,RpoS和c-di-GMP在HA /蛋白酶表达调控中的相互作用。

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