Charlson Emily S, Werner John N, Misra Rajeev
School of Life Sciences, Arizona State University, Tempe, AZ 85287-4501, USA.
J Bacteriol. 2006 Oct;188(20):7186-94. doi: 10.1128/JB.00571-06.
YfgL together with NlpB, YfiO, and YaeT form a protein complex to facilitate the insertion of proteins into the outer membrane of Escherichia coli. Without YfgL, the levels of OmpA, OmpF, and LamB are significantly reduced, while OmpC levels are slightly reduced. In contrast, the level of TolC significantly increases in a yfgL mutant. When cells are depleted of YaeT or YfiO, levels of all outer membrane proteins examined, including OmpC and TolC, are severely reduced. Thus, while the assembly pathways of various nonlipoprotein outer membrane proteins may vary through the step involving YfgL, all assembly pathways in Escherichia coli converge at the step involving the YaeT/YfiO complex. The negative effect of yfgL mutation on outer membrane proteins may in part be due to elevated sigma E activity, which has been shown to downregulate the synthesis of various outer membrane proteins while upregulating the synthesis of periplasmic chaperones, foldases, and lipopolysaccharide. The data presented here suggest that the yfgL effect on outer membrane proteins also stems from a defective assembly apparatus, leading to aberrant outer membrane protein assembly, except for TolC, which assembles independent of YfgL. Consistent with this view, the simultaneous absence of YfgL and the major periplasmic protease DegP confers a synthetic lethal phenotype, presumably due to the toxic accumulation of unfolded outer membrane proteins. The results support the hypothesis that TolC and major outer membrane proteins compete for the YaeT/YfiO complex, since mutations that adversely affect synthesis or assembly of major outer membrane proteins lead to elevated TolC levels.
YfgL与NlpB、YfiO和YaeT形成一种蛋白质复合物,以促进蛋白质插入大肠杆菌的外膜。没有YfgL时,OmpA、OmpF和LamB的水平会显著降低,而OmpC水平略有降低。相反,在yfgL突变体中TolC的水平显著增加。当细胞中缺乏YaeT或YfiO时,所有检测的外膜蛋白水平,包括OmpC和TolC,都会严重降低。因此,虽然各种非脂蛋白外膜蛋白的组装途径可能在涉及YfgL的步骤中有所不同,但大肠杆菌中的所有组装途径都在涉及YaeT/YfiO复合物的步骤中汇聚。yfgL突变对外膜蛋白的负面影响可能部分归因于σE活性的升高,已表明σE活性会下调各种外膜蛋白的合成,同时上调周质伴侣蛋白、折叠酶和脂多糖的合成。此处呈现的数据表明,yfgL对外膜蛋白的影响也源于组装装置的缺陷,导致外膜蛋白组装异常,但TolC除外,它的组装不依赖于YfgL。与此观点一致的是,同时缺失YfgL和主要的周质蛋白酶DegP会导致合成致死表型,可能是由于未折叠外膜蛋白的毒性积累。这些结果支持了TolC和主要外膜蛋白竞争YaeT/YfiO复合物的假说,因为对主要外膜蛋白的合成或组装产生不利影响的突变会导致TolC水平升高。