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采用全面手性 LC-MS/MS 和 GC-MS/MS 方法分析洋葱伯克霍尔德氏菌和费氏弧菌中的群体感应来研究手性。

Investigating chirality in quorum sensing by analysis of Burkholderia cepacia and Vibrio fischeri with comprehensive chiral LC-MS/MS and GC-MS/MS methods.

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Arlington, Arlington, TX 76019, United States.

Department of Pharmaceutical Chemistry and Pharmaceutical Analysis, Faculty of Pharmacy, Charles University, Hradec Kralove, Czech Republic.

出版信息

FEMS Microbiol Lett. 2023 Jan 17;370. doi: 10.1093/femsle/fnad011.

DOI:10.1093/femsle/fnad011
PMID:36764667
Abstract

N-acyl homoserine lactones (N-HLs) are signaling molecules used by Gram-negative bacteria in a phenomenon called quorum sensing. Bacteria will detect N-HLs as a way of monitoring their population which, upon reaching a critical level, will express a specific phenotype. An example is the expression of bioluminescence by Vibrio fischeri. Most studies have not considered the chirality of these molecules nor have they used highly sensitive detection methods. Here, the production of d,l-N-HLs are monitored for V. fischeri, Burkholderia cepacia, Pseudomonas fluorescens, and P. putida, using highly sensitive tandem mass spectrometry analysis. Novel N-HLs are reported for both V. fischeri and B. cepacia, including a plethora of previously unknown d-N-HLs, including the first d-N-HLs containing oxo and hydroxy functionalities. Anomalously, N-HLs were not detected in any cultures of P. fluorescens and P. putida, which are species that previously were reported to produce N-HLs. However, it is apparent that differences in the reported occurrence and levels of N-HLs can result from (a) different strains of bacteria, (b) different growth media and environmental conditions, and (c) sometimes false-positive results from detection methodologies. Time studies of V. fischeri suggest the possibility that separate synthetic and elimination pathways exist between d- and l-N-HLs. Possible biological processes that could be the source of d-N-HL production are considered.

摘要

N-酰基高丝氨酸内酯(N-HLs)是革兰氏阴性细菌在群体感应现象中使用的信号分子。细菌将 N-HLs 作为监测其种群数量的一种方式,当种群数量达到临界水平时,细菌将表现出特定的表型。例如,发光弧菌(Vibrio fischeri)表达生物发光。大多数研究尚未考虑这些分子的手性,也未使用高灵敏度的检测方法。在这里,使用高灵敏度串联质谱分析监测了 V. fischeri、洋葱伯克霍尔德氏菌(Burkholderia cepacia)、荧光假单胞菌(Pseudomonas fluorescens)和恶臭假单胞菌(P. putida)的 d,l-N-HLs 的产生。报道了 V. fischeri 和 B. cepacia 产生的新型 N-HLs,包括大量以前未知的 d-N-HLs,包括第一个含有氧和羟基官能团的 d-N-HLs。异常的是,在荧光假单胞菌和恶臭假单胞菌的任何培养物中都没有检测到 N-HLs,而这些物种以前被报道会产生 N-HLs。然而,显然,N-HLs 的报道出现和水平的差异可能是由于(a)不同的细菌菌株,(b)不同的生长培养基和环境条件,以及(c)有时检测方法的假阳性结果。V. fischeri 的时间研究表明,d-N-HLs 和 l-N-HLs 之间可能存在单独的合成和消除途径。考虑了可能是 d-N-HL 产生来源的生物过程。

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