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铜绿假单胞菌群体感应信号受体LasR对结构不同的自诱导物模拟物识别的分子基础。

Molecular basis for the recognition of structurally distinct autoinducer mimics by the Pseudomonas aeruginosa LasR quorum-sensing signaling receptor.

作者信息

Zou Yaozhong, Nair Satish K

机构信息

Department of Biochemistry, University of Illinois at Urbana-Champaign, 600 S. Mathews Avenue, Urbana, IL 61801, USA.

出版信息

Chem Biol. 2009 Sep 25;16(9):961-70. doi: 10.1016/j.chembiol.2009.09.001.

Abstract

The human pathogen Pseudomonas aeruginosa coordinates the expression of virulence factors using quorum sensing, a signaling cascade triggered by the activation of signal receptors by small-molecule autoinducers. These homoserine lactone autoinducers stabilize their cognate receptors and activate their functions as transcription factors. Because quorum sensing regulates the progression of infection and host immune resistance, significant efforts have been devoted toward the identification of small molecules that disrupt this process. Screening efforts have identified a class of triphenyl compounds that are structurally distinct from the homoserine lactone autoinducer, yet interact specifically and potently with LasR receptor to modulate quorum sensing (Muh et al., 2006a). Here we present the high-resolution crystal structures of the ligand binding domain of LasR in complex with the autoinducer N-3-oxo-dodecanoyl homoserine lactone (1.4 A resolution), and with the triphenyl mimics TP-1, TP-3, and TP-4 (to between 1.8 A and 2.3 A resolution). These crystal structures provide a molecular rationale for understanding how chemically distinct compounds can be accommodated by a highly selective receptor, and provide the framework for the development of novel quorum-sensing regulators, utilizing the triphenyl scaffold.

摘要

人类病原体铜绿假单胞菌利用群体感应来协调毒力因子的表达,群体感应是一种由小分子自诱导物激活信号受体触发的信号级联反应。这些高丝氨酸内酯自诱导物稳定其同源受体,并激活其作为转录因子的功能。由于群体感应调节感染进程和宿主免疫抵抗,人们投入了大量精力来鉴定破坏这一过程的小分子。筛选工作确定了一类三苯基化合物,它们在结构上与高丝氨酸内酯自诱导物不同,但能与LasR受体特异性且强效地相互作用以调节群体感应(穆赫等人,2006年a)。在此,我们展示了LasR配体结合结构域与自诱导物N - 3 - 氧代 - 十二烷酰高丝氨酸内酯(分辨率为1.4埃)以及三苯基模拟物TP - 1、TP - 3和TP - 4(分辨率在1.8埃至2.3埃之间)形成复合物的高分辨率晶体结构。这些晶体结构为理解化学性质不同的化合物如何被高选择性受体容纳提供了分子依据,并为利用三苯基支架开发新型群体感应调节剂提供了框架。

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