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Activation of hilA expression at low pH requires the signal sensor CpxA, but not the cognate response regulator CpxR, in Salmonella enterica serovar Typhimurium

机译:在低pH下激活HILA表达需要信号传感器CPXA,但不是同源反应调节剂CPXR,在沙门氏菌肠道血吸虫伤寒伤前度

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A two-component regulatory system, cpxR–cpxA, plays an important role in the pH-dependent regulation of virF, a global activator for virulence determinants including invasion genes, in Shigella sonnei. The authors examined whether the cpxR–cpxA homologues have some function in the expression of Salmonella enterica serovar Typhimurium invasion genes via the regulation of hilA, an activator for these genes. In a Salmonella cpxA mutant, the hilA expression level was reduced to less than 10?% of that in the parent strain at pH?6·0. This mutant strain also showed undetectable synthesis of an invasion gene product, SipC, at pH?6·0 and reduced cell invasion capacity – as low as 20?% of that of the parent. In this mutant, the reduction in hilA expression was much less marked at pH?8·0 than at pH?6·0 – no less than 50?% of that in the parent, and no significant reduction was observed in either SipC synthesis or cell invasion rate, compared to the parent. Unexpectedly, a Salmonella cpxR mutant strain and the parent showed no apparent difference in all three characteristics described above at either pH. These results indicate that in Salmonella, the sensor kinase CpxA activates hilA, and consequently, invasion genes and cell invasion capacity at pH?6·0. At pH?8·0, however, CpxA does not seem to have a large role in activation of these factors. Further, the results show that this CpxA-mediated activation does not require its putative cognate response regulator, CpxR. This suggests that CpxA may interact with regulator(s) other than CpxR to achieve activation at low pH.
机译:双组分调节系统CPXR-CPXA在令人毒力决定簇的pH依赖性调节中起重要作用,该激活因子包括入侵基因,在志贺岛Sonnei。作者检查了CPXR-CPXA同源物是否在通过对这些基因的激活剂的调节中表达Salmonella肠道血硫核侵袭基因的一些功能。在Salmonella cpxA突变体中,HILA表达水平在pHα6·0的母体菌株中降低至小于10μl%。该突变菌株还显示出不可检测的侵袭基因产物SIPC,在pH?6·0和降低的细胞侵袭能力 - 低至父母的20倍。在该突变体中,HILA表达的还原在pH·8·0时显着少于pH?6·0 - 在父母中,在父母中不少于50μl%,并且在SIPC合成中没有显着减少与父母相比细胞入侵率。出乎意料地,沙门氏菌CPXR突变菌株和母体在任何一种pH下描述的所有三个特征都没有表现出明显的差异。这些结果表明,在沙门氏菌中,传感器激酶CPXA激活HILA,因此,在pHα6·0时侵入基因和细胞侵袭能力。然而,在pH?8·0处,CPXA似乎在激活这些因素时似乎没有大的作用。此外,结果表明,该CPXA介导的活化不需要其推定的同源反应调节器CPXR。这表明CPXA可以与CPXR以外的调节器相互作用以在低pH下实现激活。

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