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A novel anti-anti-activator mechanism regulates expression of the Pseudomonas aeruginosa type III secretion system.

机译:一种新型的抗激活剂机制可调节铜绿假单胞菌III型分泌系统的表达。

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Expression of the Pseudomonas aeruginosa type III secretion system (TTSS) is coupled to the secretion status of the cells. Environmental signals such as calcium depletion activate the type III secretion channel and, as a consequence, type III gene transcription is derepressed. Two proteins, ExsA and ExsD, were shown previously to play a role in coupling transcription to secretion. ExsA is an activator of TTSS gene transcription, and ExsD is an anti-activator of ExsA. In the absence of environmental secretion cues, ExsD binds ExsA and inhibits transcription. Here, we describe the characterization of ExsC as an anti-anti-activator of TTSS expression. Transcription of the TTSS is repressed in an exsC mutant and is derepressed upon ExsC overexpression. The dependence on exsC for transcription is relieved in the absence of exsD, suggesting that ExsC and ExsD function together to regulate transcription. Consistent with this idea, ExsC interacts with ExsD in bacterial two-hybrid and co-purification assays. Wepropose a model in which the anti-anti-activator (ExsC) binds to and sequesters the anti-activator (ExsD) under low Ca(2+) conditions, freeing ExsA and allowing for transcription of the TTSS. The P. aeruginosa system represents the first example of an anti-activator/anti-anti-activator pair controlling transcription of a TTSS.
机译:铜绿假单胞菌III型分泌系统(TTSS)的表达与细胞的分泌状态相关。诸如钙耗竭之类的环境信号激活了III型分泌通道,因此,III型基因转录被抑制。先前显示两种蛋白质,ExsA和ExsD在将转录与分泌耦合中发挥作用。 ExsA是TTSS基因转录的激活剂,而ExsD是ExsA的抗激活剂。在没有环境分泌提示的情况下,ExsD结合ExsA并抑制转录。在这里,我们描述了ExsC作为TTSS表达的抗激活剂的特征。 TTSS的转录在exsC突变体中被阻遏,并在ExsC过表达时被阻遏。在没有exsD的情况下,对exsC转录的依赖性得以缓解,这表明ExsC和ExsD共同发挥功能来调节转录。与这个想法一致,ExsC在细菌双杂交和共纯化测定中与ExsD相互作用。我们提出了一个模型,其中抗-抗激活剂(ExsC)在低Ca(2+)条件下结合并隔离抗-激活剂(ExsD),从而释放ExsA并允许TTSS转录。铜绿假单胞菌系统代表控制TTSS转录的抗激活剂/抗抗激活剂对的第一个例子。

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