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一种调节生物膜形成和表面多糖产生的群体感应系统。

A Quorum-Sensing System That Regulates Biofilm Formation and Surface Polysaccharide Production.

作者信息

Junges Roger, Salvadori Gabriela, Shekhar Sudhanshu, Åmdal Heidi A, Periselneris Jimstan N, Chen Tsute, Brown Jeremy S, Petersen Fernanda C

机构信息

Department of Oral Biology, Faculty of Dentistry, University of Oslo, Oslo, Norway.

Centre for Inflammation and Tissue Repair, Division of Medicine, University College Medical School, Rayne Institute, London, United Kingdom.

出版信息

mSphere. 2017 Sep 13;2(5). doi: 10.1128/mSphere.00324-17. eCollection 2017 Sep-Oct.

Abstract

Despite vaccines, kills more than a million people yearly. Thus, understanding how pneumococci transition from commensals to pathogens is particularly relevant. Quorum sensing regulates collective behaviors and thus represents a potential driver of commensal-to-pathogen transitions. Rgg/small hydrophobic peptide (SHP) quorum-sensing systems are widespread in streptococci, yet they remain largely uncharacterized in . Using directional transcriptome sequencing, we show that the D39 Rgg0939/SHP system induces the transcription of a single gene cluster including and capsule gene homologs. Capsule size measurements determined by fluorescein isothiocyanate-dextran exclusion allowed assignment of the system to the regulation of surface polysaccharide expression. We found that the SHP pheromone induced exopolysaccharide expression in R36A, an unencapsulated derivative of D39. In the encapsulated parent strain, overexpression of the Rgg system resulted in a mutant with increased capsule size. In line with previous studies showing that capsule expression is inversely associated with biofilm formation, we found that biofilm formed on lung epithelial cells was decreased in the overexpression strain and increased in an deletion mutant. Although no significant differences were observed between D39 and the deletion mutant in a mouse model of lung infection, in competitive assays, overexpression reduced fitness. This is the first study to reveal a quorum-sensing system in streptococci that regulates exopolysaccharide synthesis from a site distinct from the original capsule locus. Quorum sensing regulates bacterial social behaviors by production, secretion, and sensing of pheromones. In this study, we characterized a new quorum-sensing system of the Rgg/SHP class in D39. The system was found to directly induce the expression of a single gene cluster comprising the gene for the SHP pheromone and genes with putative functions in capsule synthesis. Capsule size, as measured by dextran exclusion, was increased by SHP exposure in R36A, an unencapsulated derivative of D39. In the encapsulated parent strain, overexpression of the gene cluster increased capsule size, supporting the role of Rgg/SHP in the synthesis of surface polysaccharides. Further, we found that biofilm formation on epithelial cells was reduced by overexpression of the system and increased in a mutant with an deletion. Placing surface polysaccharide expression under quorum-sensing regulation may enable to tune interactions with the host and other bacteria in accordance with environmental and cell density conditions.

摘要

尽管有疫苗,(肺炎链球菌)每年仍导致超过100万人死亡。因此,了解肺炎球菌如何从共生菌转变为病原体尤为重要。群体感应调节群体行为,因此是共生菌向病原体转变的潜在驱动因素。Rgg/小疏水肽(SHP)群体感应系统在链球菌中广泛存在,但在(肺炎链球菌中)它们在很大程度上仍未被表征。使用定向转录组测序,我们表明肺炎链球菌D39的Rgg0939/SHP系统诱导了一个单一基因簇的转录,该基因簇包括(相关基因)和荚膜基因同源物。通过异硫氰酸荧光素 - 葡聚糖排除法测定的荚膜大小测量结果使我们能够将该系统归为对表面多糖表达的调节。我们发现SHP信息素在D39的无荚膜衍生物R36A中诱导了胞外多糖的表达。在有荚膜的亲本菌株中,Rgg系统的过表达导致了一个荚膜尺寸增加的突变体。与先前表明荚膜表达与生物膜形成呈负相关的研究一致,我们发现过表达菌株在肺上皮细胞上形成的生物膜减少,而在(相关基因)缺失突变体中生物膜增加。尽管在肺部感染小鼠模型中D39与(相关基因)缺失突变体之间未观察到显著差异,但在竞争试验中,过表达降低了(菌株的)适应性。这是第一项揭示链球菌中一个群体感应系统的研究,该系统从一个与原始荚膜位点不同的位点调节胞外多糖合成。群体感应通过信息素的产生、分泌和感应来调节细菌的社会行为。在本研究中,我们表征了肺炎链球菌D39中一种新的Rgg/SHP类群体感应系统。发现该系统直接诱导了一个单一基因簇的表达,该基因簇包括SHP信息素基因和在荚膜合成中具有推定功能的基因。通过葡聚糖排除法测量,SHP暴露使D39的无荚膜衍生物R36A中的荚膜尺寸增加。在有荚膜的亲本菌株中,基因簇的过表达增加了荚膜大小,支持了Rgg/SHP在表面多糖合成中的作用。此外,我们发现该系统的过表达减少了上皮细胞上的生物膜形成,而在(相关基因)缺失的突变体中生物膜增加。将表面多糖表达置于群体感应调节之下可能使肺炎链球菌能够根据环境和细胞密度条件调整与宿主和其他细菌的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2947/5597970/080d2ca6e4dc/sph0051723550001.jpg

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