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假交替单胞菌520P1中N-酰基高丝氨酸内酯依赖性群体感应系统的LuxI和LuxR蛋白同源物的表征

Characterization of LuxI and LuxR Protein Homologs of N-Acylhomoserine Lactone-Dependent Quorum Sensing System in Pseudoalteromonas sp. 520P1.

作者信息

Dang Hoang Tran, Komatsu Shinya, Masuda Hideyuki, Enomoto Keiichi

机构信息

School of Environmental Science and Engineering, Kochi University of Technology, 185 Miyanokuchi, Tosayamada, Kami, Kochi, 782-8502, Japan.

出版信息

Mar Biotechnol (NY). 2017 Feb;19(1):1-10. doi: 10.1007/s10126-016-9726-4. Epub 2017 Jan 12.

Abstract

Pseudoalteromonas sp. 520P1 (hereafter referred to as strain 520P1) produces N-acylhomoserine lactones (AHLs), which serve as signaling molecules in Gram-negative bacterial quorum sensing. In a previous genomic analysis of the 5.25-Mb genome of strain 520P1, we detected the presence of at least one homolog of the AHL synthase gene (luxI) and five homologs of the transcriptional regulator protein gene (luxR). The LuxI homolog of strain 520P1 (PalI) contained the conserved amino acid motifs shared by all the LuxI family proteins of the different species examined here. The palI gene expressed in Escherichia coli produced two types of AHLs. In the thin-layer chromatography analysis, these AHLs showed identical mobility to the AHLs produced by strain 520P1. The five LuxR homologs of strain 520P1 (PalR1-PalR5) shared only 17-34% amino acid sequence identity, although higher identities were observed in the C-terminal DNA-binding domain. Among the five PalRs, only PalR5 displayed close homology with LuxR family proteins from other Pseudoalteromonas strains. Notably, the palR3 and palI genes were located close together and only 1021 bases apart in the genome. No cognate luxI homolog associated with the four other palR genes was detected. These characteristics of PalI and the PalRs suggest that AHL autoinducers generated by the PalI enzyme might regulate cellular metabolism in cooperation with five transcriptional regulator PalRs, each of which is presumed to play a distinctive role in bacterial signaling.

摘要

假交替单胞菌属菌株520P1(以下简称520P1菌株)产生N-酰基高丝氨酸内酯(AHLs),其作为革兰氏阴性细菌群体感应中的信号分子。在之前对520P1菌株5.25 Mb基因组的基因组分析中,我们检测到至少一个AHL合酶基因(luxI)的同源物和五个转录调节蛋白基因(luxR)的同源物。520P1菌株的LuxI同源物(PalI)包含在此处检测的不同物种的所有LuxI家族蛋白共有的保守氨基酸基序。在大肠杆菌中表达的palI基因产生两种类型的AHLs。在薄层色谱分析中,这些AHLs与520P1菌株产生的AHLs显示出相同的迁移率。520P1菌株的五个LuxR同源物(PalR1 - PalR5)仅具有17 - 34%的氨基酸序列同一性,尽管在C端DNA结合结构域中观察到更高的同一性。在这五个PalRs中,只有PalR5与来自其他假交替单胞菌菌株的LuxR家族蛋白显示出密切的同源性。值得注意的是,palR3和palI基因在基因组中靠得很近,仅相隔1021个碱基。未检测到与其他四个palR基因相关的同源luxI。PalI和PalRs的这些特征表明,由PalI酶产生的AHL自诱导物可能与五个转录调节因子PalRs协同调节细胞代谢,其中每个转录调节因子可能在细菌信号传导中发挥独特作用。

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