Tokunaga M, Tokunaga H, Wu H C
Proc Natl Acad Sci U S A. 1982 Apr;79(7):2255-9. doi: 10.1073/pnas.79.7.2255.
Escherichia coli strain MM18 cells containing malE-lacZ hybrid protein was reported to accumulate prolipoprotein when they were induced with maltose [Ito, K., Bassford, P. J. & Beckwith, J. (1981) Cell 24, 707-717]. We have shown that the prolipoprotein accumulated in maltose-induced MM18 cells is not modified, lacking covalently linked glyceride. When the cell envelope of MM18 containing unmodified prolipoprotein was incubated in the presence of detergent with [2-3H]glycerol-labeled cell envelope of strain JE5505 lacking murein lipoprotein, incorporation of [2-3H]glycerol radioactivity into both prolipoprotein and processed mature lipoprotein was observed. Likewise, when [3H]-palmitate-labeled JE5505 cell envelope was incubated with the MM18 cell envelope containing unmodified prolipoprotein in the presence of detergent, [3H]palmitate radioactivity was incorporated into prolipoprotein by ester linkage and into mature lipoprotein by both ester and amide linkages. These results indicate that our in vitro system contains activities of prolipoprotein modification and processing enzymes, including glyceryltransferase, O-acyltransferase, signal peptidase, and N-acyltransferase. The signal peptidase activity in our in vitro system was completely inhibited by globomycin. At pH 5.0, glyceryltransferase was inactive. Signal peptidase was active at pH 5.0, provided that prolipoprotein had been modified by glyceryltransferase (O-acyl-transferase) during a prior incubation at pH 9.1. These results strongly suggest that the modification of prolipoprotein by glyceryltransferase (and O-acyltransferase) precedes, and may in fact be a prerequisite for, the processing of prolipoprotein by signal peptidase.
据报道,含有麦芽糖结合蛋白 - 乳糖操纵子融合蛋白的大肠杆菌MM18菌株细胞在用麦芽糖诱导时会积累前脂蛋白[伊藤,K.,巴斯福德,P. J.和贝克威斯,J.(1981年)《细胞》24卷,707 - 717页]。我们已经表明,在麦芽糖诱导的MM18细胞中积累的前脂蛋白没有被修饰,缺乏共价连接的甘油酯。当含有未修饰前脂蛋白的MM18细胞包膜在去污剂存在的情况下与缺乏胞壁质脂蛋白的JE5505菌株的[2 - 3H]甘油标记的细胞包膜一起孵育时,观察到[2 - 3H]甘油放射性掺入到前脂蛋白和加工后的成熟脂蛋白中。同样,当[3H] - 棕榈酸酯标记的JE5505细胞包膜在去污剂存在的情况下与含有未修饰前脂蛋白的MM18细胞包膜一起孵育时,[3H]棕榈酸酯放射性通过酯键掺入到前脂蛋白中,并通过酯键和酰胺键掺入到成熟脂蛋白中。这些结果表明,我们的体外系统含有前脂蛋白修饰和加工酶的活性,包括甘油基转移酶、O - 酰基转移酶、信号肽酶和N - 酰基转移酶。我们体外系统中的信号肽酶活性被球霉素完全抑制。在pH 5.0时,甘油基转移酶无活性。信号肽酶在pH 5.0时有活性,前提是前脂蛋白在pH 9.1的先前孵育过程中已被甘油基转移酶(O - 酰基转移酶)修饰。这些结果强烈表明,甘油基转移酶(和O - 酰基转移酶)对前脂蛋白的修饰先于信号肽酶对前脂蛋白的加工,实际上可能是其加工的先决条件。