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Biosynthesis of the Fucose-Containing Xyloglucan Nonasaccharide by Pea Microsomal Membranes

机译:豌豆微粒体膜生物合成含岩藻糖的木葡聚糖九糖

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摘要

Pea microsomal membranes catalyze the transfer of [14C]fucose (Fuc) from GDP-[U-14C]fucose, with or without added unlabeled UDP-glucose (Glc), UDP-xylose (Xyl) or UDP-galactose (Gal), to an insoluble product with properties characteristic of xyloglucan. After digestion of the ethanol-insoluble pellet with Streptomyces griseus endocellulase, [14C] fucose residues occur exclusively in a fragment corresponding in size to the xyloglucan nonasaccharide, Glc4 Xyl3 Gal Fuc. This fragment contains a single labeled fucose residue per oligomer, α-linked in a terminal nonreducing position. By comparison, in incubations where GDP-[14C] fucose is absent and replaced by UDP-[3H]xylose, the maximum size of labeled oligosaccharide found following cellulase digestion of products is an octasaccharide. In the presence of both GDP-[14C]fucose and UDP-[3H]xylose, a nonasaccharide containing the two labels is produced. Fucose and xylose residues are transferred within a few minutes to acceptor molecules of molecular weight up to 300,000. Such products do not elongate detectably over 60 minutes of incubation. The data support the conclusion that the nonasaccharide subunit of xyloglucan may be generated in vitro by transfucosylation to preformed acceptor chains, and that its synthesis is dependent on the inclusion of exogenous GDP-fucose.
机译:豌豆微粒体膜催化[ 14 C]岩藻糖(Fuc)从GDP- [U- 14 C]岩藻糖的转移,无论是否添加未标记的UDP-葡萄糖(Glc ),UDP-木糖(Xyl)或UDP-半乳糖(Gal)制成具有木葡聚糖特性的不溶性产物。用灰色链霉菌内切酶消化不溶于乙醇的沉淀后,[ 14 C]岩藻糖残基仅存在于大小相当于木葡聚糖九糖Glc4 Xyl3 Gal Fuc的片段中。该片段每个寡聚体包含单个标记的岩藻糖残基,在末端非还原位置α连接。相比之下,在不存在GDP-[ 14 C]岩藻糖且被UDP-[ 3 H]木糖替代的培养中,纤维素酶消化后发现的标记寡糖的最大大小产品是八糖。在同时存在GDP-[ 14 C]岩藻糖和UDP-[ 3 H]木糖的情况下,会产生包含两个标记的九糖。岩藻糖和木糖残基在几分钟之内转移到分子量高达300,000的受体分子上。在温育60分钟后,此类产品无法检测到伸长。数据支持这样的结论:木葡聚糖的九糖亚单位可能是通过转岩藻糖基化成预先形成的受体链在体外产生的,其合成取决于外源GDP-岩藻糖的掺入。

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