Department of Biology, Villanova University, Villanova, Pennsylvania, United States of America.
PLoS One. 2012;7(3):e33080. doi: 10.1371/journal.pone.0033080. Epub 2012 Mar 8.
We have previously reported the cloning of the Salmonella enterica serovar Typhimurium SPI-1 secretion system and the use of this clone to functionally complement a ΔSPI-1 strain for type III secretion activity. In the current study, we discovered that S. Typhimurium cultures containing cloned SPI-1 display an adherent biofilm and cell clumps in the media. This phenotype was associated with hyper-expression of SPI-1 type III secretion functions. The biofilm and cell clumps were associated with copious amounts of secreted SPI-1 protein substrates SipA, SipB, SipC, SopB, SopE, and SptP. We used a C-terminally FLAG-tagged SipA protein to further demonstrate SPI-1 substrate association with the cell aggregates using fluorescence microscopy and immunogold electron microscopy. Different S. Typhimurium backgrounds and both flagellated and nonflagellated strains displayed the biofilm phenotype. Mutations in genes essential for known bacterial biofilm pathways (bcsA, csgBA, bapA) did not affect the biofilms formed here indicating that this phenomenon is independent of established biofilm mechanisms. The SPI-1-mediated biofilm was able to massively recruit heterologous non-biofilm forming bacteria into the adherent cell community. The results indicate a bacterial aggregation phenotype mediated by elevated SPI-1 type III secretion activity with applications for engineered biofilm formation, protein purification strategies, and antigen display.
我们之前已经报道过克隆鼠伤寒沙门氏菌血清型 Typhimurium SPI-1 分泌系统,并利用该克隆对 SPI-1 缺失菌株进行功能性互补,以实现 III 型分泌活性。在本研究中,我们发现含有克隆 SPI-1 的鼠伤寒沙门氏菌培养物在培养基中表现出黏附生物膜和细胞团。这种表型与 SPI-1 III 型分泌功能的过度表达有关。生物膜和细胞团与大量分泌的 SPI-1 蛋白底物 SipA、SipB、SipC、SopB、SopE 和 SptP 有关。我们使用 C 末端 FLAG 标记的 SipA 蛋白,通过荧光显微镜和免疫金电子显微镜进一步证明 SPI-1 底物与细胞聚集物的关联。不同的鼠伤寒沙门氏菌背景和有鞭毛和无鞭毛的菌株都表现出生物膜表型。在已知细菌生物膜途径(bcsA、csgBA、bapA)的必需基因发生突变的情况下,生物膜的形成不受影响,这表明这种现象不依赖于已建立的生物膜机制。SPI-1 介导的生物膜能够大量招募非生物膜形成的异源细菌进入黏附细胞群。结果表明,高表达 SPI-1 III 型分泌活性介导的细菌聚集表型可应用于工程生物膜形成、蛋白质纯化策略和抗原展示。