Wilson I B, Webberley M C, Revers L, Flitsch S L
Dyson Perrins Laboratory, University of Oxford, U.K.
Biochem J. 1995 Sep 15;310 ( Pt 3)(Pt 3):909-16. doi: 10.1042/bj3100909.
Dolichol is utilized in vivo as an unusually large anchor on which the precursor for N-linked oligosaccharides is assembled by a series of glycosyltransferases. The role of dolichol in enzyme substrate recognition is investigated. Thus the biosynthetic intermediate NN'-diacetylchitobiose was chemically linked to either dolichol or the much shorter fully saturated tetraisoprenoid phytanol. Both lipids were used as substrates by a recombinant, soluble beta-1,4-mannosyltransferase. beta-[3H]Mannosylated lipids from this reaction were then used as substrates for the subsequent mannosyltransferases from yeast or rat liver microsomes. It was found that both the dolichyl- and phytanyl-linked substrates were easily mannosylated to form Man5GlcNAc2, with some further mannosylation to Man7GlcNAc2 and Man9GlcNAc2 at low concentrations of lipid-linked substrate. It is concluded that dolichol is not necessary in vitro as part of the substrate for the mannosyltransferases in the biosynthetic pathway for N-glycosylation.
多萜醇在体内用作一种异常大的锚定物,通过一系列糖基转移酶在其上组装N - 连接寡糖的前体。研究了多萜醇在酶底物识别中的作用。因此,生物合成中间体N,N'-二乙酰壳二糖被化学连接到多萜醇或更短的完全饱和的四异戊二烯植醇上。两种脂质都被一种重组可溶性β-1,4-甘露糖基转移酶用作底物。然后将该反应产生的β-[3H]甘露糖基化脂质用作酵母或大鼠肝微粒体后续甘露糖基转移酶的底物。发现与多萜醇和植烷基连接的底物都很容易被甘露糖基化形成Man5GlcNAc2,在低浓度的脂质连接底物下会进一步被甘露糖基化形成Man7GlcNAc2和Man9GlcNAc2。得出的结论是,在体外,多萜醇对于N - 糖基化生物合成途径中甘露糖基转移酶的底物来说并非必需。