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植物和动物膜中脂连接寡糖的组装。

The assembly of lipid-linked oligosaccharides in plant and animal membranes.

作者信息

Bailey D S, Dürr M, Burke J, Maclachlan G

出版信息

J Supramol Struct. 1979;11(2):123-38. doi: 10.1002/jss.400110203.

Abstract

Membrane preparations from growing regions of pea stems and actively-dividing mouse L-cells form lipid-linked saccharides from GDP-mannose and UDP-N-acetylglucosamine. These lipids have properties which are consistent with those of mono- and di-phosphoryl polyisoprenyl derivatives. In experiments using plant membranes, the monophosphoryl derivative labeled with GDP-(14C) mannose contains mannose only, while the diphosphoryl derivative labeled with the same nucleotide sugar is heterogeneous, containing oligosaccharides corresponding to mannosaccharides of 5, 7, and 9--12 residues. Only the diphosphoryl polyisoprenyl derivatives are labeled with UDP-(14C)glucosamine and these contain predominantly chitobiose and N-acetylglucosamine itself. Unlabeled GDP-mannose added after UDP-N-acetyl-(14C)glucosamine results in the formation of higher lipid-linked oligosaccharides which are apparently the same as those which are labeled with GDP-(14C)mannose alone. Incubation of the membranes with GDP-(14C)mannose in the presence of Mn2+, unlabeled UDP-glucose or unlabeled UDP-N-acetylglucosamine results in marked changes in the accumulation of both the polyisoprenyl monophosphoryl mannose and polyisoprenyl diphosphoryl oligosaccharides. Animal cell membranes synthesise lipid-linked oligosaccharides when incubated with UDP-N-acetylglucosamine and GDP-mannose. These oligosaccharides are similar in size to those synthesised by the plant membranes but their formation is more efficient. The potential roles of these compounds in glycoprotein biosynthesis in both plant and animal tissues is discussed.

摘要

豌豆茎生长区域和活跃分裂的小鼠L细胞的膜制剂可利用GDP-甘露糖和UDP-N-乙酰葡糖胺形成脂质连接的糖。这些脂质的特性与单磷酸和二磷酸多异戊二烯衍生物的特性一致。在使用植物膜的实验中,用GDP-(14C)甘露糖标记的单磷酸衍生物仅含甘露糖,而用相同核苷酸糖标记的二磷酸衍生物是异质的,含有对应于5、7和9 - 12个残基的甘露糖的寡糖。只有二磷酸多异戊二烯衍生物能用UDP-(14C)葡糖胺标记,且这些主要含有壳二糖和N-乙酰葡糖胺本身。在UDP-N-乙酰-(14C)葡糖胺之后加入未标记的GDP-甘露糖会导致形成更高的脂质连接寡糖,这些寡糖显然与仅用GDP-(14C)甘露糖标记的寡糖相同。在Mn2+、未标记的UDP-葡萄糖或未标记的UDP-N-乙酰葡糖胺存在下,用GDP-(14C)甘露糖孵育膜会导致多异戊二烯单磷酸甘露糖和多异戊二烯二磷酸寡糖的积累发生显著变化。动物细胞膜在与UDP-N-乙酰葡糖胺和GDP-甘露糖一起孵育时会合成脂质连接寡糖。这些寡糖在大小上与植物膜合成的寡糖相似,但它们的形成效率更高。讨论了这些化合物在植物和动物组织糖蛋白生物合成中的潜在作用。

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