Lybarger Suzanne R, Johnson Tanya L, Gray Miranda D, Sikora Aleksandra E, Sandkvist Maria
Dept. of Microbiology and Immunology, University of Michigan Medical School, 1150 West Medical Center Drive, Ann Arbor, MI 48109, USA.
J Bacteriol. 2009 May;191(9):3149-61. doi: 10.1128/JB.01701-08. Epub 2009 Feb 27.
Secretion of cholera toxin and other virulence factors from Vibrio cholerae is mediated by the type II secretion (T2S) apparatus, a multiprotein complex composed of both inner and outer membrane proteins. To better understand the mechanism by which the T2S complex coordinates translocation of its substrates, we are examining the protein-protein interactions of its components, encoded by the extracellular protein secretion (eps) genes. In this study, we took a cell biological approach, observing the dynamics of fluorescently tagged EpsC and EpsM proteins in vivo. We report that the level and context of fluorescent protein fusion expression can have a bold effect on subcellular location and that chromosomal, intraoperon expression conditions are optimal for determining the intracellular locations of fusion proteins. Fluorescently tagged, chromosomally expressed EpsC and EpsM form discrete foci along the lengths of the cells, different from the polar localization for green fluorescent protein (GFP)-EpsM previously described, as the fusions are balanced with all their interacting partner proteins within the T2S complex. Additionally, we observed that fluorescent foci in both chromosomal GFP-EpsC- and GFP-EpsM-expressing strains disperse upon deletion of epsD, suggesting that EpsD is critical to the localization of EpsC and EpsM and perhaps their assembly into the T2S complex.
霍乱弧菌分泌霍乱毒素和其他毒力因子是由II型分泌(T2S)装置介导的,T2S装置是一种由内膜和外膜蛋白组成的多蛋白复合物。为了更好地理解T2S复合物协调其底物转运的机制,我们正在研究由细胞外蛋白分泌(eps)基因编码的其组分之间的蛋白质-蛋白质相互作用。在本研究中,我们采用细胞生物学方法,在体内观察荧光标记的EpsC和EpsM蛋白的动态变化。我们报道荧光蛋白融合表达的水平和背景对亚细胞定位有显著影响,并且染色体上的操纵子内表达条件对于确定融合蛋白的细胞内定位是最佳的。荧光标记的、染色体表达的EpsC和EpsM沿细胞长度形成离散的焦点,这与先前描述的绿色荧光蛋白(GFP)-EpsM的极性定位不同,因为这些融合蛋白与T2S复合物内所有相互作用的伴侣蛋白保持平衡。此外,我们观察到在表达染色体GFP-EpsC和GFP-EpsM的菌株中,荧光焦点在epsD缺失后会分散,这表明EpsD对于EpsC和EpsM的定位以及它们可能组装到T2S复合物中至关重要。