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Fha Interaction with Phosphothreonine of TssL Activates Type VI Secretion in Agrobacterium tumefaciens

机译:Fha与TssL的磷酸苏氨酸相互作用可激活根癌农杆菌中的VI型分泌。

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摘要

The type VI secretion system (T6SS) is a widespread protein secretion system found in many Gram-negative bacteria. T6SSs are highly regulated by various regulatory systems at multiple levels, including post-translational regulation via threonine (Thr) phosphorylation. The Ser/Thr protein kinase PpkA is responsible for this Thr phosphorylation regulation, and the forkhead-associated (FHA) domain-containing Fha-family protein is the sole T6SS phosphorylation substrate identified to date. Here we discovered that TssL, the T6SS inner-membrane core component, is phosphorylated and the phosphorylated TssL (p-TssL) activates type VI subassembly and secretion in a plant pathogenic bacterium, Agrobacterium tumefaciens. Combining genetic and biochemical approaches, we demonstrate that TssL is phosphorylated at Thr 14 in a PpkA-dependent manner. Further analysis revealed that the PpkA kinase activity is responsible for the Thr 14 phosphorylation, which is critical for the secretion of the T6SS hallmark protein Hcp and the putative toxin effector Atu4347. TssL phosphorylation is not required for the formation of the TssM-TssL inner-membrane complex but is critical for TssM conformational change and binding to Hcp and Atu4347. Importantly, Fha specifically interacts with phosphothreonine of TssL via its pThr-binding motif in vivo and in vitro and this interaction is crucial for TssL interaction with Hcp and Atu4347 and activation of type VI secretion. In contrast, pThr-binding ability of Fha is dispensable for TssM structural transition. In conclusion, we discover a novel Thr phosphorylation event, in which PpkA phosphorylates TssL to activate type VI secretion via its direct binding to Fha in A. tumefaciens. A model depicting an ordered TssL phosphorylation-induced T6SS assembly pathway is proposed.
机译:VI型分泌系统(T6SS)是在许多革兰氏阴性细菌中发现的广泛的蛋白质分泌系统。 T6SS受多种调控系统的高度调控,包括通过苏氨酸(Thr)磷酸化的翻译后调控。 Ser / Thr蛋白激酶PpkA负责此Thr的磷酸化调节,而迄今为止,含有叉头相关(FHA)域的Fha家族蛋白是唯一的T6SS磷酸化底物。在这里,我们发现TssL(T6SS内膜核心组件)被磷酸化了,磷酸化的TssL(p-TssL)激活了植物病原细菌根癌农杆菌中的VI型装配和分泌。结合遗传和生化方法,我们证明TssL在Thr 14处以PpkA依赖性方式被磷酸化。进一步的分析表明,PpkA激酶活性负责Thr 14的磷酸化,这对T6SS标志蛋白Hcp和推定的毒素效应因子Atu4347的分泌至关重要。 TssM-TssL内膜复合物的形成不需要TssL磷酸化,但对于TssM构象变化以及与Hcp和Atu4347的结合至关重要。重要的是,Fha在体内和体外都通过其pThr结合基序与TssL的磷酸苏氨酸特异性相互作用,这种相互作用对于TssL与Hcp和Atu4347的相互作用以及VI型分泌的激活至关重要。相反,Fha的pThr结合能力对于TssM结构转变是必不可少的。总之,我们发现了一个新的Thr磷酸化事件,其中PpkA磷酸化TssL以通过直接结合至根癌农杆菌中的Fha来激活VI型分泌。提出了描述有序的TssL磷酸化诱导的T6SS组装途径的模型。

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