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Legionella effector AnkX displaces the switch II region for Rab1b phosphocholination

机译:Legionella效应器ANKX使RAB1B磷化物的开关II区域取代

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The causative agent of Legionnaires disease, Legionella pneumophila , translocates the phosphocholine transferase AnkX during infection and thereby posttranslationally modifies the small guanosine triphosphatase (GTPase) Rab1 with a phosphocholine moiety at S76 using cytidine diphosphate (CDP)–choline as a cosubstrate. The molecular basis for Rab1 binding and enzymatic modification have remained elusive because of lack of structural information of the low-affinity complex with AnkX. We combined thiol-reactive CDP-choline derivatives with recombinantly introduced cysteines in the AnkX active site to covalently capture the heterocomplex. The resulting crystal structure revealed that AnkX induces displacement of important regulatory elements of Rab1 by placing a β sheet into a conserved hydrophobic pocket, thereby permitting phosphocholine transfer to the active and inactive states of the GTPase. Together, the combination of chemical biology and structural analysis reveals the enzymatic mechanism of AnkX and the family of filamentation induced by cyclic adenosine monophosphate (FIC) proteins.
机译:军团疾病的致病因子,军团菌,军团菌,在感染期间易于磷光胆碱转移酶Ankx,从而使用胞苷二磷酸(CDP)作为囊螯合物,在S76下用磷光胆碱部分用磷光啉部分改变小鸟苷三磷酸酶(GTP酶)Rab1。由于缺乏ANKX的低亲和力络合物缺乏结构信息,RAB1结合和酶改性的分子基础仍然难以捉摸。我们将硫醇反应性CDP-胆碱衍生物与重组引入的半胱氨酸组合在ANKX活性位点中,以共价捕获杂蛋白。所得晶体结构显示Ankx通过将β片放入保守的疏水袋中诱导RAB1的重要调节元件的位移,从而允许磷光啉转移到GTP酶的活性和无活性状态。化学生物学和结构分析的组合揭示了环状腺苷(FIC)蛋白诱导的ANKX和细丝族的酶促机制。

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