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拟南芥种皮黏液 GDP-甘露糖合成缺陷突变体中的半乳葡甘露聚糖结构。

Galactoglucomannan structure of Arabidopsis seed-coat mucilage in GDP-mannose synthesis impaired mutants.

机构信息

Graduate School of Science and Engineering, Saitama, Japan.

Department of Biochemistry, University of Cambridge, Cambridge, UK.

出版信息

Physiol Plant. 2021 Nov;173(3):1244-1252. doi: 10.1111/ppl.13519. Epub 2021 Aug 22.

Abstract

Cell-wall polysaccharides are synthesized from nucleotide sugars by glycosyltransferases. However, in what way the level of nucleotide sugars affects the structure of the polysaccharides is not entirely clear. guanosine diphosphate (GDP)-mannose (GDP-Man) is one of the major nucleotide sugars in plants and serves as a substrate in the synthesis of mannan polysaccharides. GDP-Man is synthesized from mannose 1-phosphate and GTP by a GDP-Man pyrophosphorylase, VITAMIN C DEFECTIVE1 (VTC1), which is positively regulated by the interacting protein KONJAC1 (KJC1) in Arabidopsis. Since seed-coat mucilage can serve as a model of the plant cell wall, we examined the influence of vtc1 and kjc1 mutations on the synthesis of mucilage galactoglucomannan. Sugar composition analysis showed that mannose content in adherent mucilage of kjc1 and vtc1 mutants was only 42% and 11% of the wild-type, respectively, indicating a drastic decrease of galactoglucomannan. On the other hand, structural analysis based on specific oligosaccharides released by endo-β-1,4-mannanase indicated that galactoglucomannan had a patterned glucomannan backbone consisting of alternating residues of glucose and mannose and the frequency of α-galactosyl branches was also similar to the wild type structure. These results suggest that the structure of mucilage galactoglucomannan is mainly determined by properties of glycosyltransferases rather than the availability of nucleotide sugars.

摘要

细胞壁多糖由糖基转移酶从核苷酸糖合成。然而,核苷酸糖的水平如何影响多糖的结构尚不完全清楚。鸟苷二磷酸 (GDP)-甘露糖 (GDP-Man) 是植物中主要的核苷酸糖之一,是甘露聚糖多糖合成的底物。GDP-Man 由磷酸甘露糖 1-磷酸盐和 GTP 通过 GDP-Man 焦磷酸化酶 VITAMIN C DEFECTIVE1 (VTC1) 合成,VTC1 在拟南芥中受相互作用蛋白 KONJAC1 (KJC1) 的正向调节。由于种皮粘液可以作为植物细胞壁的模型,我们研究了 vtc1 和 kjc1 突变对粘液半乳葡甘露聚糖合成的影响。糖组成分析表明,kjc1 和 vtc1 突变体附着粘液中的甘露糖含量分别仅为野生型的 42%和 11%,表明半乳葡甘露聚糖含量急剧下降。另一方面,基于内切-β-1,4-甘露聚糖酶释放的特定低聚糖的结构分析表明,半乳葡甘露聚糖具有交替葡萄糖和甘露糖残基的模式化葡甘露聚糖主链,并且α-半乳糖基支链的频率也与野生型结构相似。这些结果表明,粘液半乳葡甘露聚糖的结构主要由糖基转移酶的性质决定,而不是核苷酸糖的可用性。

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