Park Hyunjoon, Lee Kyuyeon, Yeo Soyoung, Shin Heuynkil, Holzapfel Wilhelm H
Department of Advanced Green Energy and Environment, Handong Global UniversityPohang, South Korea.
Research Institute of Eco-friendly Livestock Science, Institute of Green-Bio Science and Technology, Seoul National UniversityPyeongchang, South Korea.
Front Microbiol. 2017 Jun 13;8:1077. doi: 10.3389/fmicb.2017.01077. eCollection 2017.
Bacteria use autoinducer molecules to communicate both at intra-species and inter-species levels by quorum sensing. One such cell density-dependent signaling system is the -mediated universal quorum sensing using autoinducer-2 (AI-2). Virulence of several pathogens is determined by an AI-2 system and is related to colonization and infection of the host. From this concept, numerous papers have suggested that AI-2 inhibition is an important strategy toward designing of new antimicrobial agents. However, recent studies indicate that the AI-2 system is also involved in adaptation and survival under environmental stress conditions. Therefore, we hypothesized that interaction between quorum sensing and environmental conditions may be critical in influencing predicted results in a control and when combating of target pathogens. We investigated the growth of enterohemorrhagic O157:H7 (EHEC) and its -deficient (non AI-2 producing) mutant strain under various stress conditions, and found significant differences in the growth rate under osmotic stress. Moreover, we could also show the impact of the AI-2 molecule on viability in the gastrointestinal tract model representing a complex environmental condition. Differences in vital responses of the strains suggest that AI-2 quorum sensing has a significant influence on the viability of EHEC under environmental stress conditions.
细菌通过群体感应利用自诱导分子在种内和种间水平进行通讯。一种这样的细胞密度依赖性信号系统是利用自诱导物-2(AI-2)的介导的通用群体感应。几种病原体的毒力由AI-2系统决定,并且与宿主的定殖和感染有关。基于这一概念,许多论文表明抑制AI-2是设计新型抗菌剂的重要策略。然而,最近的研究表明,AI-2系统也参与环境应激条件下的适应和存活。因此,我们假设群体感应与环境条件之间的相互作用可能对影响对照中的预测结果以及对抗目标病原体时至关重要。我们研究了肠出血性大肠杆菌O157:H7(EHEC)及其缺陷型(不产生AI-2)突变株在各种应激条件下的生长情况,发现在渗透应激下生长速率存在显著差异。此外,我们还可以证明AI-2分子对代表复杂环境条件的胃肠道模型中生存能力的影响。菌株生命反应的差异表明,AI-2群体感应在环境应激条件下对EHEC的生存能力有显著影响。