Sharma Onkar, Datsenko Kirill A, Ess Sara C, Zhalnina Mariya V, Wanner Barry L, Cramer William A
Department of Biological Sciences, Lilly Hall of Life Sciences, Purdue University, West Lafayette, IN 47907, USA.
Mol Microbiol. 2009 Aug;73(4):571-85. doi: 10.1111/j.1365-2958.2009.06788.x. Epub 2009 Jul 22.
Only two new genes (fkpA and lepB) have been identified to be required for colicin cytotoxicity in the last 25 years. Genome-wide screening using the 'Keio collection' to test sensitivity to colicins (col) A, B, D, E1, E2, E3, E7 and N from groups A and B, allowed identification of novel genes affecting cytotoxicity and provided new information on mechanisms of action. The requirement of lipopolysaccharide for colN cytotoxicity resides specifically in the lipopolysaccharide inner-core and first glucose. ColA cytotoxicity is dependent on gmhB and rffT genes, which function in the biosynthesis of lipopolysaccharide and enterobacterial common antigen. Of the tol genes that function in the cytoplasmic membrane translocon, colE1 requires tolA and tolR but not tolQ for activity. Peptidoglycan-associated lipoprotein, which interacts with the Tol network, is not required for cytotoxicity of group A colicins. Except for TolQRA, no cytoplasmic membrane protein is essential for cytotoxicity of group A colicins, implying that TolQRA provides the sole pathway for their insertion into/through the cytoplasmic membrane. The periplasmic protease that cleaves between the receptor and catalytic domains of colE7 was not identified, implying either that the responsible gene is essential for cell viability, or that more than one gene product has the necessary proteolysis function.
在过去25年里,仅鉴定出两个新基因(fkpA和lepB)是大肠杆菌素细胞毒性所必需的。利用“Keio文库”进行全基因组筛选,以测试对A组和B组的大肠杆菌素A、B、D、E1、E2、E3、E7和N的敏感性,从而鉴定出影响细胞毒性的新基因,并提供了有关作用机制的新信息。脂多糖对大肠杆菌素N细胞毒性的需求具体存在于脂多糖内核心和第一个葡萄糖中。大肠杆菌素A的细胞毒性依赖于gmhB和rffT基因,它们在脂多糖和肠杆菌共同抗原的生物合成中发挥作用。在细胞膜转运体中起作用的tol基因中,大肠杆菌素E1的活性需要tolA和tolR,但不需要tolQ。与Tol网络相互作用的肽聚糖相关脂蛋白对A组大肠杆菌素的细胞毒性不是必需的。除了TolQRA外,没有细胞质膜蛋白对A组大肠杆菌素的细胞毒性是必需的,这意味着TolQRA为它们插入/穿过细胞质膜提供了唯一途径。尚未鉴定出在大肠杆菌素E7的受体和催化结构域之间切割的周质蛋白酶,这意味着要么负责的基因对细胞活力至关重要,要么不止一种基因产物具有必要的蛋白水解功能。