Identification of a novel RhlI/R-PrrH-LasI/Phzc/PhzD signalling cascade and its implication in P. aeruginosa virulence

被引:19
作者
Lu, Yang [1 ]
Li, Honglin [1 ,2 ]
Pu, Jieying [1 ]
Xiao, Qian [1 ]
Zhao, Chanjing [1 ]
Cai, Yimei [3 ]
Liu, Yuyang [3 ]
Wang, Lina [1 ]
Li, Youqiang [1 ]
Huang, Bin [3 ]
Zeng, Jianming [1 ]
Chen, Cha [1 ]
机构
[1] Guangzhou Univ Chinese Med, Dept Lab Med, Affiliated Hosp 2, Guangzhou, Guangdong, Peoples R China
[2] Guangzhou Univ Chinese Med, Clin Coll 2, Guangzhou, Guangdong, Peoples R China
[3] Sun Yat Sen Univ, Dept Lab Med, Affiliated Hosp 1, Guangzhou, Guangdong, Peoples R China
基金
中国国家自然科学基金;
关键词
PrrH; sRNA; quorum sensing; P; aeruginosa; virulence; SMALL REGULATORY RNAS; PSEUDOMONAS-AERUGINOSA; VIBRIO-HARVEYI; ROLES; IRON; BIOSYNTHESIS; EXPRESSION; PYOCYANIN; BACTERIA; REVEALS;
D O I
10.1080/22221751.2019.1687262
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Small regulatory RNAs (sRNAs) act as key regulators in many bacterial signalling cascades. However, in P. aeruginosa, the sRNAs involved in quorum sensing (QS) regulation and their function are still largely unknown. Here, we explored how the prrH locus sRNA influences P. aeruginosa virulence in the context of the QS regulatory network. First, gain- and loss-of-function studies showed that PrrH affects pyocyanin, elastase and rhamnolipid production; biofilm formation; and swimming and swarming motility and impaired the viability of P. aeruginosa in human whole blood. Next, our investigation disclosed that LasI and PhzC/D were directly repressed by PrrH. In addition, RhlI, the key member of the rhl QS system, diminished the expression of PrrH and enhanced the expression of downstream genes. Bioinformatics analysis found two binding sites of RhlR, the transcription factor of the rhl system, on the promoter region of prrH. Further beta-galactosidase reporter and qPCR assays confirmed that PrrH was transcriptionally repressed by RhlR. Collectively, our data identified a novel RhlI/R-PrrH-LasI/PhzC/PhzD regulatory circuitry that may contribute to P. aeruginosa pathogenesis. Our findings indicate that PrrH is a quorum regulatory RNA (Qrr) in P. aeruginosa and provide new insight into PrrH's function.
引用
收藏
页码:1658 / 1667
页数:10
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