Hou Bo, Meng Xian-Rong, Zhang Li-Yuan, Tan Chen, Jin Hui, Zhou Rui, Gao Jian-Feng, Wu Bin, Li Zi-Li, Liu Mei, Chen Huan-Chun, Bi Ding-Ren, Li Shao-Wen
State Key Laboratory of Agricultural Microbiology, College of Veterinary Medicine, Huazhong Agricultural University, No. 1 Shizishan Street, Wuhan, Hubei 430070, China.
Biomed Res Int. 2014;2014:574274. doi: 10.1155/2014/574274. Epub 2014 Aug 27.
While a high osmolarity medium activates Cpx signaling and causes CpxR to repress csgD expression, and efflux protein TolC protein plays an important role in biofilm formation in Escherichia coli, whether TolC also responds to an osmolarity change to regulate biofilm formation in extraintestinal pathogenic E. coli (ExPEC) remains unknown. In this study, we constructed ΔtolC mutant and complement ExPEC strains to investigate the role of TolC in the retention of biofilm formation and curli production capability under different osmotic conditions. The ΔtolC mutant showed significantly decreased biofilm formation and lost the ability to produce curli fimbriae compared to its parent ExPEC strain PPECC42 when cultured in M9 medium or 1/2 M9 medium of increased osmolarity with NaCl or sucrose at 28°C. However, biofilm formation and curli production levels were restored to wild-type levels in the ΔtolC mutant in 1/2 M9 medium. We propose for the first time that TolC protein is able to form biofilm even under high osmotic stress. Our findings reveal an interplay between the role of TolC in ExPEC biofilm formation and the osmolarity of the surrounding environment, thus providing guidance for the development of a treatment for ExPEC biofilm formation.
虽然高渗透压培养基会激活Cpx信号传导并导致CpxR抑制csgD表达,且外排蛋白TolC蛋白在大肠杆菌生物膜形成中起重要作用,但TolC是否也会响应渗透压变化来调节肠道外致病性大肠杆菌(ExPEC)的生物膜形成仍不清楚。在本研究中,我们构建了ΔtolC突变体和互补ExPEC菌株,以研究TolC在不同渗透条件下对生物膜形成和卷曲菌毛产生能力的维持作用。与亲本ExPEC菌株PPECC42相比,当在28°C下于添加NaCl或蔗糖的M9培养基或渗透压增加的1/2 M9培养基中培养时,ΔtolC突变体的生物膜形成显著减少,且失去了产生卷曲菌毛的能力。然而,在1/2 M9培养基中,ΔtolC突变体的生物膜形成和卷曲菌毛产生水平恢复到了野生型水平。我们首次提出,即使在高渗透压胁迫下,TolC蛋白也能够形成生物膜。我们的研究结果揭示了TolC在ExPEC生物膜形成中的作用与周围环境渗透压之间的相互作用,从而为开发针对ExPEC生物膜形成的治疗方法提供了指导。