首页> 外文期刊>Chembiochem: A European journal of chemical biology >Potent and Selective Synthetic Modulators of a Quorum Sensing Repressor in Pseudomonas aeruginosa Identified from Second-Generation Libraries of N-Acylated L-Homoserine Lactones
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Potent and Selective Synthetic Modulators of a Quorum Sensing Repressor in Pseudomonas aeruginosa Identified from Second-Generation Libraries of N-Acylated L-Homoserine Lactones

机译:从N-酰化的L-高丝氨酸内酯的第二代文库中鉴定出的铜绿假单胞菌群体感应阻遏物的有效和选择性合成调节剂

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Bacteria can coordinate group behavior using chemical signals in a process called quorum sensing (QS). The QS system in the opportunistic pathogen Pseudomonas aeruginosa is largely governed by the LasR receptor and its cognate chemical signal, N-(3-oxo)-dodecanoyl L-homoserine lactone (OdDHL). LasR also appears to share this signal with an orphan LuxR-type receptor in P. aeruginosa, termed QscR, which represses LasR activity. Non-native molecules that modulate QscR would represent valuable tools to study the role of this novel QS repressor protein in P. aeruginosa. We performed a critical analysis of previously identified, non-native N-acylated L-homoserine lactone (AHL) activators and inhibitors of QscR to determine a set of structure-activity relationships (SARs). Based on these SAR data, we designed, synthesized, and screened several second-generation libraries of AHLs for new ligands that could target QscR. These studies revealed the most active AHL agonists and antagonists of QscR reported to date, with activities ranging from nanomolar to low micromolar in a QscR bacterial reporter strain. Several of these AHLs were highly selective for QscR over LasR and other LuxR-type receptors. A small subset of the new QscR activators, however, were also found to inhibit LasR; this demonstrates the exciting potential for the synergistic modulation of these integral P. aeruginosa QS receptors by using a single synthetic compound.
机译:细菌可以在称为群体感应(QS)的过程中使用化学信号协调群体行为。机会病原体铜绿假单胞菌的QS系统主要受LasR受体及其同源化学信号N-(3-氧代)-十二烷酰基L-高丝氨酸内酯(OdDHL)支配。 LasR似乎也与铜绿假单胞菌中的孤儿LuxR型受体(称为QscR)共享该信号,该受体抑制LasR活性。调节QscR的非天然分子将代表有价值的工具来研究这种新型QS阻遏蛋白在铜绿假单胞菌中的作用。我们对先前确定的非天然N-酰化L-高丝氨酸内酯(AHL)激活剂和QscR抑制剂进行了严格的分析,以确定一组结构-活性关系(SAR)。基于这些SAR数据,我们设计,合成并筛选了一些第二代AHL库,以寻找可靶向QscR的新配体。这些研究揭示了迄今为止报道的最活跃的QscR的AHL激动剂和拮抗剂,在QscR细菌报告株中具有从纳摩尔到低微摩尔的活性。这些AHL中有几个相对于LasR和其他LuxR型受体对QscR具有高度选择性。然而,也发现了一小部分新的QscR激活剂抑制LasR;这证明了通过使用单一合成化合物协同调节这些铜绿假单胞菌QS受体的令人兴奋的潜力。

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