Belard M, Cacan R, Verbert A
Laboratoire de Chimie Biologique (Unité Associée au C.N.R.S. No 217), Université des Sciences et Techniques de Lille Flandres-Artois, Villeneuve d'Ascq, France.
Biochem J. 1988 Oct 1;255(1):235-42.
Use of Triton X-114 allowed us to develop a new method to separate hydrophilic oligosaccharidic material from hydrophobic oligosaccharide pyrophosphodolichols (oligosaccharide-PP-Dol). Taking advantage of this procedure we characterize, in yeast microsomal membranes, an enzymic activity that hydrolyses oligosaccharide-PP-Dol into oligosaccharidic material. H.p.l.c. analysis together with alkaline-phosphatase- and endo-N-acetyl-beta-D-glucosaminidase-susceptibility demonstrate that the oligosaccharidic released material is mainly composed of oligomannosides containing a chitobiose phosphate at the reducing end. The enzymic activity requires bivalent cations and is inhibited by pyrophosphate, NAD+ and bacitracin. As other, commercially available, pyrophosphatases have no action on lipid intermediates, the described pyrophosphatase activity appears to be the specific enzyme for oligosaccharide-PP-Dol. This enzymic splitting of the pyrophosphate bond might be the primary event in the catabolism of lipid intermediates.
使用Triton X-114使我们能够开发一种新方法,用于从疏水性寡糖焦磷酸多萜醇(寡糖-PP-Dol)中分离亲水性寡糖物质。利用这一程序,我们在酵母微粒体膜中鉴定出一种酶活性,该酶可将寡糖-PP-Dol水解为寡糖物质。高效液相色谱分析以及碱性磷酸酶和内切N-乙酰-β-D-氨基葡萄糖苷酶敏感性表明,释放的寡糖物质主要由还原端含有磷酸壳二糖的寡甘露糖苷组成。该酶活性需要二价阳离子,并受到焦磷酸、NAD+和杆菌肽的抑制。由于其他市售的焦磷酸酶对脂质中间体无作用,所述的焦磷酸酶活性似乎是寡糖-PP-Dol的特异性酶。焦磷酸键的这种酶促裂解可能是脂质中间体分解代谢的主要事件。