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Structural Insights into a Unique Legionella pneumophila Effector LidA Recognizing Both GDP and GTP Bound Rab1 in Their Active State

机译:独特的军团菌肺炎效应子LidA的结构解析,可识别活跃状态下的GDP和GTP结合的Rab1

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The intracellular pathogen Legionella pneumophila hijacks the endoplasmic reticulum (ER)-derived vesicles to create an organelle designated Legionella-containing vacuole (LCV) required for bacterial replication. Maturation of the LCV involved acquisition of Rab1, which is mediated by the bacterial effector protein SidM/DrrA. SidM/DrrA is a bifunctional enzyme having the activity of both Rab1-specific GDP dissociation inhibitor (GDI) displacement factor (GDF) and guanine nucleotide exchange factor (GEF). LidA, another Rab1-interacting bacterial effector protein, was reported to promote SidM/DrrA-mediated recruitment of Rab1 to the LCV as well. Here we report the crystal structures of LidA complexes with GDP- and GTP-bound Rab1 respectively. Structural comparison revealed that GDP-Rab1 bound by LidA exhibits an active and nearly identical conformation with that of GTP-Rab1, suggesting that LidA can disrupt the switch function of Rab1 and render it persistently active. As with GTP, LidA maintains GDP-Rab1 in the active conformation through interaction with its two conserved switch regions. Consistent with the structural observations, biochemical assays showed that LidA binds to GDP- and GTP-Rab1 equally well with an affinity approximately 7.5 nM. We propose that the tight interaction with Rab1 allows LidA to facilitate SidM/DrrA-catalyzed release of Rab1 from GDIs. Taken together, our results support a unique mechanism by which a bacterial effector protein regulates Rab1 recycling.
机译:细胞内病原体嗜肺军团菌劫持了内质网(ER)的囊泡,从而形成了细菌复制所需的指定为含军团菌的液泡(LCV)的细胞器。 LCV的成熟涉及Rab1的获得,Rab1是由细菌效应蛋白SidM / DrrA介导的。 SidM / DrrA是一种双功能酶,同时具有Rab1特异性GDP解离抑制剂(GDI)置换因子(GDF)和鸟嘌呤核苷酸交换因子(GEF)的活性。据报道,另一种与Rab1相互作用的细菌效应蛋白LidA也会促进SidM / DrrA介导的Rab1向LCV的募集。在这里,我们报告LidA配合物分别与GDP和GTP绑定的Rab1的晶体结构。结构比较表明,受LidA约束的GDP-Rab1与GTP-Rab1呈现出活性且几乎相同的构象,这表明LidA可以破坏Rab1的开关功能并使其具有持久活性。与GTP一样,LidA通过与其两个保守的开关区域相互作用,将GDP-Rab1维持在活性构象中。与结构观察结果一致,生化分析表明LidA与GDP-和GTP-Rab1的结合程度相同,亲和力约为7.5 nM。我们建议与Rab1的紧密相互作用允许LidA促进SidM / DrrA催化的Rab1从GDIs释放。综上所述,我们的结果支持细菌效应蛋白调节Rab1循环的独特机制。

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