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费氏弧菌对斯氏真宽水蚤进行正常共生定殖所需的双组分传感器。

Two-component sensor required for normal symbiotic colonization of euprymna scolopes by Vibrio fischeri.

作者信息

Visick K L, Skoufos L M

机构信息

Department of Microbiology and Immunology, Loyola University Chicago, Maywood, Illinois 60153, USA.

出版信息

J Bacteriol. 2001 Feb;183(3):835-42. doi: 10.1128/JB.183.3.835-842.2001.

Abstract

The light organ of the squid Euprymna scolopes is specifically colonized to a high density by the marine bacterium Vibrio fischeri. To date, only a few factors contributing to the specificity of this symbiosis have been identified. Using a genetic screen for random transposon mutants defective in initiating the symbiotic association or in colonizing the light organ to high density, we identified a mutant of V. fischeri that exhibited an apparent defect in symbiosis initiation. This mutant was not defective in motility, luminescence, or growth in minimal medium, suggesting that it lacks an essential, previously unidentified symbiotic function. By sequence analysis, we showed that the locus inactivated in this mutant encodes a predicted 927-amino-acid protein with a high degree of similarity to the sensor component of hybrid two-component regulatory systems. We have therefore designated this locus rscS, for regulator of symbiotic colonization-sensor. Sequence analysis revealed two hydrophobic regions which may result in the formation of a periplasmic loop involved in signal recognition; PhoA fusion data supported this proposed membrane topology. We have investigated the start site of rscS transcription by primer extension and identified a putative promoter region. We hypothesize that RscS recognizes a signal associated with the light organ environment and responds by stimulating a putative response regulator that controls protein function or gene expression to coordinate early colonization events. Further studies on RscS, its cognate response regulator, and the signaling conditions will provide important insight into the interaction between V. fischeri and E. scolopes.

摘要

费氏弧菌会以高密度特异性定殖在加州双斑鱿鱼的发光器官中。迄今为止,仅鉴定出了少数几个促成这种共生特异性的因素。我们通过对在启动共生关联或在发光器官中高密度定殖方面存在缺陷的随机转座子突变体进行遗传筛选,鉴定出了一株费氏弧菌突变体,该突变体在共生启动方面表现出明显缺陷。此突变体在运动性、发光或在基本培养基中的生长方面并无缺陷,这表明它缺乏一种必需的、此前未被鉴定的共生功能。通过序列分析,我们发现该突变体中失活的基因座编码一种预测的927个氨基酸的蛋白质,与杂合双组分调节系统的传感组分具有高度相似性。因此,我们将这个基因座命名为rscS,即共生定殖调节因子-传感器。序列分析揭示了两个疏水区域,这可能导致形成一个参与信号识别的周质环;PhoA融合数据支持了这种推测的膜拓扑结构。我们通过引物延伸研究了rscS转录的起始位点,并鉴定出了一个假定的启动子区域。我们推测,RscS识别与发光器官环境相关的信号,并通过刺激一个假定的反应调节因子做出反应,该调节因子控制蛋白质功能或基因表达以协调早期定殖事件。对RscS、其同源反应调节因子以及信号传导条件的进一步研究将为费氏弧菌与加州双斑鱿鱼之间的相互作用提供重要见解。

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