Weissborn A C, Rumley M K, Kennedy E P
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115.
J Biol Chem. 1991 May 5;266(13):8062-7.
The periplasmic glucans of Gram-negative bacteria, including the membrane-derived oligosaccharides (MDO) of Escherichia coli and the cyclic glucans of the Rhizobiaceae, are now recognized to be a family of closely related substances with important functions in osmotic adaptation and cell signaling. The synthesis of the beta-1,2-glucan backbone of MDO is catalyzed by a membrane-bound glucosyltransferase system previously shown to require UDP-glucose and (surprisingly) acyl carrier protein (Therisod, H., Weissborn, A. C., and Kennedy, E. P. (1986) Proc. Natl. Acad. Sci. U. S. A. 83, 7236-7240). In the present study, no glucan intermediates bound to acyl carrier protein or to UDP could detected. The enzyme system, however, was found to be strongly inhibited by bacitracin and by amphomycin. Because the two antibiotics function by forming specific complexes with polyprenyl phosphates, their inhibitory effect suggests a prenol requirement for MDO biosynthesis. Furthermore, the activity of the glucosyltransferase was greatly stimulated by the addition of polyprenyl phosphates such as decaprenyl-P and dihydroheptaprenyl-P, but not by farnesyl-P. The same membrane preparations carry out the synthesis of polyprenyl-P-glucose, which is also stimulated by added polyprenyl-P, including farnesyl-P, the most active of those tested. Pulse chase experiments, however, indicate that the endogenous pool of polyprenyl-P-glucose cannot be an obligate intermediate in the MDO glucosyltransferase system.
革兰氏阴性菌的周质葡聚糖,包括大肠杆菌的膜衍生寡糖(MDO)和根瘤菌科的环状葡聚糖,现在被认为是一类密切相关的物质,在渗透适应和细胞信号传导中具有重要功能。MDO的β-1,2-葡聚糖主链的合成由一种膜结合葡糖基转移酶系统催化,该系统先前已证明需要UDP-葡萄糖和(令人惊讶的是)酰基载体蛋白(Therisod, H., Weissborn, A. C., and Kennedy, E. P. (1986) Proc. Natl. Acad. Sci. U. S. A. 83, 7236 - 7240)。在本研究中,未检测到与酰基载体蛋白或UDP结合的葡聚糖中间体。然而,该酶系统被杆菌肽和两性霉素强烈抑制。由于这两种抗生素通过与聚异戊二烯磷酸形成特定复合物发挥作用,它们的抑制作用表明MDO生物合成需要异戊二烯醇。此外,添加聚异戊二烯磷酸如癸异戊二烯基-P和二氢庚异戊二烯基-P可极大地刺激葡糖基转移酶的活性,但法尼基-P则无此作用。相同的膜制剂可进行聚异戊二烯基-P-葡萄糖的合成,添加的聚异戊二烯基-P(包括法尼基-P,在所测试的物质中活性最高)也可刺激该合成过程。然而,脉冲追踪实验表明,聚异戊二烯基-P-葡萄糖的内源性池不可能是MDO葡糖基转移酶系统中的必需中间体。