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对LuxR型群体感应受体的化学研究揭示了受体选择性和种间细菌信号传导潜力的新见解。

Chemical Interrogation of LuxR-type Quorum Sensing Receptors Reveals New Insights into Receptor Selectivity and the Potential for Interspecies Bacterial Signaling.

作者信息

Gerdt Joseph P, Wittenwyler Danielle M, Combs Joshua B, Boursier Michelle E, Brummond Jacob W, Xu He, Blackwell Helen E

机构信息

Department of Chemistry, University of Wisconsin-Madison , 1101 University Ave., Madison, Wisconsin 53706, United States.

出版信息

ACS Chem Biol. 2017 Sep 15;12(9):2457-2464. doi: 10.1021/acschembio.7b00458. Epub 2017 Aug 31.

Abstract

Cell-cell signaling between bacteria, including quorum-sensing (QS) communication systems, may play a role in the establishment and maintenance of polymicrobial communities. To better understand and model these interactions, we must uncover the degree to which neighboring species recognize each another's signals. In the current study, we tested the likelihood of whether the QS systems of two opportunistic pathogens (Acinetobacter baumannii and Pseudomonas aeruginosa) that frequently arise in polymicrobial infections would be affected by the QS signals of neighboring species. Through the synthesis and screening of a library of native and non-native N-acyl l-homoserine lactones (AHLs), we found that the AbaR LuxR-type receptor protein of A. baumannii is highly selective for its native AHL signal. However, a homologous LuxR-type receptor in P. aeruginosa, LasR, is far more promiscuously activated by AHLs relative to AbaR, suggesting that LasR-regulated QS could be more susceptible to activation by neighboring species. To explain the observed difference in signal selectivity between AbaR and LasR, we developed a model based on (i) the activity profiles of these proteins and (ii) previously reported structural data and activity profiles for related LuxR-type receptors. This model may facilitate the study of signal selectivities for hundreds of LuxR-type QS receptors from bacteria, many of which grow in polymicrobial communities and may sense each other's signals. In addition, we discovered a set of AHLs that could be used to selectively activate LasR and selectively inhibit AbaR in polymicrobial experiments.

摘要

细菌之间的细胞间信号传导,包括群体感应(QS)通讯系统,可能在多微生物群落的建立和维持中发挥作用。为了更好地理解和模拟这些相互作用,我们必须揭示相邻物种相互识别彼此信号的程度。在当前的研究中,我们测试了两种经常出现在多微生物感染中的机会性病原体(鲍曼不动杆菌和铜绿假单胞菌)的QS系统是否会受到相邻物种QS信号的影响。通过合成和筛选天然和非天然的N-酰基-L-高丝氨酸内酯(AHLs)文库,我们发现鲍曼不动杆菌的AbaR LuxR型受体蛋白对其天然AHL信号具有高度选择性。然而,铜绿假单胞菌中的同源LuxR型受体LasR相对于AbaR更容易被AHLs激活,这表明LasR调控的QS可能更容易受到相邻物种的激活。为了解释观察到的AbaR和LasR之间信号选择性的差异,我们基于(i)这些蛋白质的活性谱以及(ii)先前报道的相关LuxR型受体的结构数据和活性谱,开发了一个模型。该模型可能有助于研究来自细菌的数百种LuxR型QS受体的信号选择性,其中许多在多微生物群落中生长并且可能感知彼此的信号。此外,我们发现了一组AHLs,可用于在多微生物实验中选择性激活LasR并选择性抑制AbaR。

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