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Essential Role of the SycP Chaperone in Type III Secretion of the YspP Effector

机译:SycP伴侣在YspP效应子的III型分泌中的重要作用。

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The Ysa type III secretion (T3S) system enhances gastrointestinal infection by Yersinia enterocolitica bv. 1B. One effector protein targeted into host cells is YspP, a protein tyrosine phosphatase. It was determined in this study that the secretion of YspP requires a chaperone, SycP. Genetic analysis showed that deletion of sycP completely abolished the secretion of YspP without affecting the secretion of other Ysps by the Ysa T3S system. Analysis of the secretion and translocation signals of YspP defined the first 73 amino acids to form the minimal region of YspP necessary to promote secretion and translocation by the Ysa T3S system. Function of the YspP secretion/translocation signals was dependent on SycP. Curiously, when YspP was constitutively expressed in Y. enterocolitica bv. 1B, it was recognized and secreted by the Ysc T3S system and the flagellar T3S system. In these cases, the first 21 amino acids were sufficient to promote secretion, and while SycP did enhance secretion, it was not essential. However, neither the Ysc T3S system nor the flagellar T3S system translocated YspP into mammalian cells. This supports a model where SycP confers secretion/translocation specificities for YspP by the Ysa T3S system. A series of biochemical approaches further established that SycP specifically interacts with YspP and protected YspP degradation in the cell prior to secretion. Collectively, the evidence suggests that YspP secretion by the Ysa T3S system is a posttranslational event.
机译:Ysa III型分泌(T3S)系统增强了小肠结肠炎耶尔森氏菌bv的胃肠道感染。 1B。靶向宿主细胞的一种效应蛋白是YspP,一种蛋白质酪氨酸磷酸酶。在这项研究中确定,YspP的分泌需要伴侣SycP。遗传分析表明, sycP 的缺失完全消除了YspP的分泌,而没有影响Ysa T3S系统分泌其他Ysps。 YspP分泌和转运信号的分析确定了前73个氨基酸,形成了YspP促进Ysa T3S系统分泌和转运所需的最小区域。 YspP分泌/转运信号的功能取决于SycP。奇怪的是,当YspP在Y中组成性表达时。肠结肠炎 bv。在图1B中,Ysc T3S系统和鞭毛T3S系统对其进行了识别和分泌。在这些情况下,前21个氨基酸足以促进分泌,而SycP确实能增强分泌,但这不是必需的。但是,Ysc T3S系统和鞭毛T3S系统都没有将YspP转移到哺乳动物细胞中。这支持SycP通过Ysa T3S系统为YspP赋予分泌/转运特异性的模型。一系列生化方法进一步确定SycP与YspP特异性相互作用,并在分泌前保护细胞中的YspP降解。总体而言,证据表明Ysa T3S系统分泌的YspP是翻译后事件。

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