首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >The quorum-quenching N-acyl homoserine lactone acylase PvdQ is an Ntn-hydrolase with an unusual substrate-binding pocket
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The quorum-quenching N-acyl homoserine lactone acylase PvdQ is an Ntn-hydrolase with an unusual substrate-binding pocket

机译:群体猝灭的N-酰基高丝氨酸内酯酰化酶PvdQ是一种Ntn水解酶具有异常的底物结合口袋

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摘要

In many Gram-negative pathogens, their virulent behavior is regulated by quorum sensing, in which diffusible signals such as N-acyl homoserine lactones (AHLs) act as chemical messaging compounds. Enzymatic degradation of these diffusible signals by, e.g., lactonases or amidohydrolases abolishes AHL regulated virulence, a process known as quorum quenching. Here we report the first crystal structure of an AHL amidohydrolase, the AHL acylase PvdQ from Pseudomonas aeruginosa. PvdQ has a typical α/β heterodimeric Ntn-hydrolase fold, similar to penicillin G acylase and cephalosporin acylase. However, it has a distinct, unusually large, hydrophobic binding pocket, ideally suited to recognize C12 fatty acid-like chains of AHLs. Binding of a C12 fatty acid or a 3-oxo-C12 fatty acid induces subtle conformational changes to accommodate the aliphatic chain. Furthermore, the structure of a covalent ester intermediate identifies Serβ1 as the nucleophile and Asnβ269 and Valβ70 as the oxyanion hole residues in the AHL degradation process. Our structures show the versatility of the Ntn-hydrolase scaffold and can serve as a structural paradigm for Ntn-hydrolases with similar substrate preference. Finally, the quorum-quenching capabilities of PvdQ may be utilized to suppress the quorum-sensing machinery of pathogens.
机译:在许多革兰氏阴性病原体中,它们的强毒行为受到群体感应的调节,其中诸如N-酰基高丝氨酸内酯(AHL)的可扩散信号充当化学信息传递化合物。这些可扩散信号的酶降解作用,例如,内酯酶或酰胺水解酶可消除AHL调节的毒力,这一过程称为群体猝灭。在这里,我们报告AHL酰胺水解酶的第一晶体结构,铜绿假单胞菌的AHL酰化酶PvdQ。 PvdQ具有典型的α/β异二聚Ntn水解酶折叠,类似于青霉素G酰基转移酶和头孢菌素酰基转移酶。但是,它具有独特的,异常大的疏水结合袋,非常适合识别AHL的C12脂肪酸样链。 C12脂肪酸或3-oxo-C12脂肪酸的结合引起微妙的构象变化,以适应脂肪族链。此外,在AHL降解过程中,共价酯中间体的结构将Serβ1鉴定为亲核试剂,将Asnβ269和Valβ70鉴定为氧阴离子孔残基。我们的结构显示了Ntn水解酶支架的多功能性,并可以作为具有相似底物偏好的Ntn水解酶的结构范例。最后,可以利用PvdQ的群体仲裁功能来抑制病原体的群体感知机制。

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