首页> 外文期刊>Journal of bacteriology >Phosphorylation and Dephosphorylation among Dif Chemosensory Proteins Essential for Exopolysaccharide Regulation in Myxococcus xanthus
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Phosphorylation and Dephosphorylation among Dif Chemosensory Proteins Essential for Exopolysaccharide Regulation in Myxococcus xanthus

机译:Dix化学感测蛋白之间的磷酸化和去磷酸化对黄色粘球菌胞外多糖调节至关重要。

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Myxococcus xanthus social gliding motility, which is powered by type IV pili, requires the presence of exopolysaccharides (EPS) on the cell surface. The Dif chemosensory system is essential for the regulation of EPS production. It was demonstrated previously that DifA (methyl-accepting chemotaxis protein [MCP]-like), DifC (CheW-like), and DifE (CheA-like) stimulate whereas DifD (CheY-like) and DifG (CheC-like) inhibit EPS production. DifD was found not to function downstream of DifE in EPS regulation, as a difD difE double mutant phenocopied the difE single mutant. It has been proposed that DifA, DifC, and DifE form a ternary signaling complex that positively regulates EPS production through the kinase activity of DifE. DifD was proposed as a phosphate sink of phosphorylated DifE (DifE~P), while DifG would augment the function of DifD as a phosphatase of phosphorylated DifD (DifD~P). Here we report in vitro phosphorylation studies with all the Dif chemosensory proteins that were expressed and purified from Escherichia coli. DifE was demonstrated to be an autokinase. Consistent with the formation of a DifA-DifC-DifE complex, DifA and DifC together, but not individually, were found to influence DifE autophosphorylation. DifD, which did not inhibit DifE autophosphorylation directly, was found to accept phosphate from autophosphorylated DifE. While DifD~P has an unusually long half-life for dephosphorylation in vitro, DifG efficiently dephosphorylated DifD~P as a phosphatase. These results support a model where DifE complexes with DifA and DifC to regulate EPS production through phosphorylation of a downstream target, while DifD and DifG function synergistically to divert phosphates away from DifE~P.
机译:由IV型菌毛提供动力的粘球菌社交滑行运动要求细胞表面存在胞外多糖(EPS)。 Dif化学感测系统对于调节EPS产量至关重要。先前已证明,DifA(甲基化趋化蛋白[MCP]样),DifC(CheW样)和DifE(CheA样)刺激,而DifD(CheY样)和DifG(CheC样)抑制EPS。生产。发现DifD在EPS调节中不在DifE的下游起作用,因为 difD difE 双突变体表型化了 difE 单突变体。已经提出,DifA,DifC和DifE形成三元信号复合物,其通过DifE的激酶活性积极地调节EPS的产生。 DifD被认为是磷酸化的DifE(DifE〜P)的磷酸沉,而DifG可以增强DifD作为磷酸化的DifD(DifD〜P)的磷酸酶的功能。在这里,我们报道了体外磷酸化研究,研究了所有从大肠杆菌表达和纯化的Dif化学感应蛋白。 DifE被证明是一种自身激酶。与DifA-DifC-DifE复合物的形成一致,发现DifA和DifC一起但不是单独地影响DifE自磷酸化。发现没有直接抑制DifE自磷酸化的DifD可以接受来自自磷酸化DifE的磷酸盐。虽然DifD〜P在体外的 中具有异常长的半衰期,但DifG有效地将DifD〜P磷酸化为磷酸酶。这些结果为DifE与DifA和DifC形成复合物以通过下游靶的磷酸化调节EPS产生提供了一种模型,而DifD和DifG协同发挥了将磷酸盐从DifE〜P转移的作用。

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