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牙龈卟啉单胞菌中LuxS介导的信号传导及其在生物膜形成中的作用。 需注意,你提供的原文中“Streptococcus anginosus”翻译有误,正确的是“牙龈卟啉单胞菌”,而不是“咽峡炎链球菌”。按照正确内容翻译后的译文如上。

LuxS-mediated signalling in Streptococcus anginosus and its role in biofilm formation.

作者信息

Petersen Fernanda C, Ahmed Nibras A A M, Naemi Alioddin, Scheie Anne Aamdal

机构信息

Department of Oral Biology, Faculty of Dentistry, University of Oslo, PK1 Gaustad, Oslo, N0316, Norway.

出版信息

Antonie Van Leeuwenhoek. 2006 Aug;90(2):109-21. doi: 10.1007/s10482-006-9065-y. Epub 2006 Aug 2.

Abstract

The autoinducer-2 signal (AI-2) produced by several Gram-positive and Gram-negative bacteria mediates interspecies communication. In this study we were able to identify an orthologue of luxS, required for the synthesis of AI-2 signals, in Streptococcus anginosus. Comparative analyses revealed conserved sequences in the predicted S. anginosus LuxS. Expression of luxS was highest during early exponential growth phase. Compared to other oral streptococci, conditioned media from growth of members of the anginosus group were the most efficient in inducing bioluminescence in Vibrio harveyi, indicative of AI-2 signalling. Disruption of luxS in S. anginosus resulted in a mutant deficient in biofilm formation, whereas no effect on planktonic growth rate was observed under various growth conditions. S. anginosus is part of the human flora found in biofilms of the oral cavity, as well as of the upper respiratory, gastrointestinal and urogenital tracts. Such habitats harbour large varieties of bacterial species, among which cell-cell communication may play an important role. S. anginosus has also been associated with purulent infections and cancer in the upper digestive tract. Knowledge about the molecular mechanisms involved in S. anginosus communication is important for understanding its commensalism and its pathogenic transition.

摘要

几种革兰氏阳性菌和革兰氏阴性菌产生的自诱导物-2信号(AI-2)介导种间通讯。在本研究中,我们在咽峡炎链球菌中鉴定出了合成AI-2信号所需的luxS同源物。比较分析揭示了预测的咽峡炎链球菌LuxS中的保守序列。luxS在指数生长早期阶段的表达最高。与其他口腔链球菌相比,咽峡炎菌群成员生长的条件培养基在诱导哈维弧菌生物发光方面效率最高,表明存在AI-2信号传导。咽峡炎链球菌中luxS的破坏导致生物膜形成缺陷的突变体,而在各种生长条件下未观察到对浮游生长速率的影响。咽峡炎链球菌是口腔以及上呼吸道、胃肠道和泌尿生殖道生物膜中发现的人类菌群的一部分。这些栖息地含有大量细菌物种,其中细胞间通讯可能起重要作用。咽峡炎链球菌还与上消化道的化脓性感染和癌症有关。了解咽峡炎链球菌通讯所涉及的分子机制对于理解其共生关系及其致病转变很重要。

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