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New Roles for Two-Component System Response Regulators of Salmonella enterica Serovar Typhi during Host Cell Interactions

机译:肠沙门氏菌血清型伤寒两组分系统响应调节剂在宿主细胞相互作用中的新作用。

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摘要

In order to survive external stresses, bacteria need to adapt quickly to changes in their environment. One adaptive mechanism is to coordinate and alter their gene expression by using two-component systems (TCS). TCS are composed of a sensor kinase that activates a transcriptional response regulator by phosphorylation. TCS are involved in motility, virulence, nutrient acquisition, and envelope stress in many bacteria. The pathogenic bacteria serovar Typhi ( Typhi) possess 30 TCSs, is specific to humans, and causes typhoid fever. Here, we have individually deleted each of the 30 response regulators. We have determined their role during interaction with host cells (epithelial cells and macrophages). Deletion of most of the systems (24 out of 30) resulted in a significant change during infection. We have identified 32 new phenotypes associated with TCS of Typhi. Some previously known phenotypes associated with TCSs in were also confirmed. We have also uncovered phenotypic divergence between serovars, as distinct phenotypes between Typhi and Typhimurium were identified for . This finding highlights the importance of specifically studying Typhi to understand its pathogenesis mechanisms and to develop strategies to potentially reduce typhoid infections.
机译:为了抵抗外部压力,细菌需要迅速适应环境的变化。一种适应性机制是通过使用两成分系统(TCS)来协调和改变其基因表达。 TCS由传感器激酶组成,该传感器激酶通过磷酸化激活转录反应调节因子。 TCS与许多细菌的活力,毒力,营养获取和包膜应力有关。致病菌血清型伤寒(Typho)具有30种TCS,是人类特有的,会引起伤寒。在这里,我们分别删除了30个响应调节器。我们已经确定了它们在与宿主细胞(上皮细胞和巨噬细胞)相互作用期间的作用。删除大多数系统(30个系统中的24个)会导致感染期间发生重大变化。我们已经确定了32种与Typhi TCS相关的新表型。还证实了一些先前与TCS相关的表型。我们还发现了血清型之间的表型差异,因为鉴定到的伤寒型和伤寒型之间有明显的表型。这一发现凸显了专门研究Typhi的重要性,以了解其发病机理并制定可能减少伤寒感染的策略。

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