Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706-1322, USA.
Chembiochem. 2011 Jan 3;12(1):138-47. doi: 10.1002/cbic.201000551.
Many bacteria use quorum sensing (QS) to regulate cell-density dependent phenotypes that play critical roles in the maintenance of their associations with eukaryotic hosts. In Gram-negative bacteria, QS is primarily controlled by N-acylated L-homoserine lactone (AHL) signals and their cognate LuxR-type receptors. AHL-LuxR-type receptor binding regulates the expression of target genes necessary for QS phenotypes. We recently identified a series of non-native AHLs capable of intercepting AHL-LuxR binding in the marine symbiont Vibrio fischeri, and thereby strongly promoting or inhibiting QS in this organism. V. fischeri utilizes N-(3-oxo)-hexanoyl L-HL (OHHL) as its primary QS signal, and OHHL is also used by several other bacterial species for QS. Such signal degeneracy is common among bacteria, and we sought to determine if our non-native LuxR agonists and antagonists, which are active in V. fischeri, would also modulate QS phenotypes in other bacteria that use OHHL. Herein, we report investigations into the activity of a set of synthetic LuxR modulators in the plant pathogen Pectobacterium carotovora subsp. carotovora Ecc71. This pathogen uses OHHL and two closely related LuxR-type receptors, ExpR1 and ExpR2, to control virulence, and we evaluated their responses to synthetic ligands by quantifying virulence factor production. Our results suggest an overall conservation in the activity trends of the ligands between the ExpR receptors in P. carotovora Ecc71 and LuxR in V. fischeri, and indicate that these compounds could be used as tools to study QS in an expanded set of bacteria. Notable differences in activity were apparent for certain compounds, however, and suggest that it might be possible to selectively regulate QS in bacteria that utilize degenerate AHLs.
许多细菌利用群体感应 (QS) 来调节细胞密度依赖性表型,这些表型在维持它们与真核宿主的联系中起着关键作用。在革兰氏阴性菌中,QS 主要受 N-酰化 L-高丝氨酸内酯 (AHL) 信号及其同源 LuxR 型受体控制。AHL-LuxR 型受体结合调节 QS 表型所需的靶基因的表达。我们最近在海洋共生菌 Vibrio fischeri 中鉴定了一系列能够截获 AHL-LuxR 结合的非天然 AHL,从而强烈促进或抑制该生物体内的 QS。V. fischeri 利用 N-(3-氧代)-己酰基 L-HL (OHHL) 作为其主要的 QS 信号,而其他几种细菌也使用 OHHL 进行 QS。这种信号简并性在细菌中很常见,我们试图确定我们的非天然 LuxR 激动剂和拮抗剂,它们在 V. fischeri 中是有效的,是否也会调节其他使用 OHHL 的细菌的 QS 表型。在此,我们报告了一组合成 LuxR 调节剂在植物病原体 Pectobacterium carotovora subsp. carotovora Ecc71 中的活性研究。这种病原体使用 OHHL 和两个密切相关的 LuxR 型受体 ExpR1 和 ExpR2 来控制毒性,我们通过定量测定毒性因子的产生来评估它们对合成配体的反应。我们的结果表明,在 P. carotovora Ecc71 中的 ExpR 受体和 V. fischeri 中的 LuxR 之间,配体的活性趋势总体上是保守的,并表明这些化合物可以用作研究扩展细菌中 QS 的工具。然而,某些化合物的活性差异明显,这表明有可能选择性地调节利用简并 AHL 的细菌中的 QS。