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THE STRUCTURES OF ARABINOXYLOGLUCANS PRODUCED BY SOLANACEOUS PLANTS

机译:茄子植物产生的阿拉伯木聚糖的结构

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Several structural features, most notably the presence of alpha-L-Ara f-(1 --> 2)-alpha-D-Xyl p side chains, distinguish the arabinoxyloglucans (AXGs) produced by solanaceous plants from the xyloglucans produced by other dicotyledonous plants, However, previous studies did not establish the exact order of attachment of the various side chains along the backbone of these AXGs. Therefore, oligosaccharide subunits of the AXGs secreted by suspension-cultured tobacco and tomato cells were generated by treatment of the isolated AXCs with a fungal endo-beta-(1 --> 4)-D-glucanase (EG). The oligosaccharides were reduced with sodium borohydride to the corresponding oligoglycosyl alditol derivatives and purified by a combination of gel-permeation chromatography, reversed-phase HPLC, and HPAE chromatography. The isolated oligoglycosyl alditols were chemically characterized by NMR spectroscopy, matrix-assisted laser-desorption/ionization time-of-flight mass spectrometry (MALDITOFMS), fast-atom bombardment mass spectrometry (FABMS), FABMS/MS, and glycosyl-linkage analysis, The results confirmed that the AXGs from these species are composed of a (1 --> 4)-linked beta-D-Glc p backbone substituted at O-6 with various side chains. Both tobacco and tomato AXG contain alpha-D-Xyl p and alpha-L-Ara f-(1 --> 2)-alpha-D-Xyl p side chains, However, oligosaccharide fragments of tomato AXG were also shown to contain beta-D-Gal p-(1 --> 2)-alpha-D-Xyl p and beta-Ara f-(1 --> 3)-alpha-L-Ara f-(1 --> 2)-alpha-D-Xyl p side chains that are not present in the tobacco AXG. This is the first report of beta-Ara f residues in a xyloglucan. The primary structures of 20 oligosaccharides generated by EG-treatment of tobacco AXG were determined. The generation of such a large number of oligosaccharides is due in part to the presence of O-acetyl substituents at O-6 of many of the backbone beta-D-Glc p residues of tobacco AXG. The presence of either an O-acetyl or a glycosidic substituent at O-6 of a beta-D-Glc p residue in the AXG backbone protects the glycosidic bond of this residue from cleavage by the EG. Removal of the O-acetyl substituents prior to EG-treatment of the AXG results in oligosaccharide fragments that are smaller than those produced by EG-treatment of the O-acetylated AXG. Therefore, analysis of the complex mixture of oligosaccharides obtained by EG-treatment of native tobacco AXGs provides information regarding the distribution of AXG side chains that would be lost if the AXG is de-O-acetylated prior to EG-treatment. Furthermore, thr large library of oligosaccharide fragments generated by this approach revealed additional correlations between the structural features of AXGs and diagnostic chemical shift effects in their H-1 NMR spectra. (C) 1996 Elsevier Science Ltd. [References: 39]
机译:几个结构特征,最显着的是存在α-L-Araf-(1-> 2)-α-D-Xylp侧链,将茄科植物产生的阿拉伯木糖葡聚糖(AXG)与其他双子叶植物产生的木葡聚糖区分开来。然而,先前的研究并未建立沿这些AXG骨架的各个侧链的确切连接顺序。因此,通过用真菌内切-β-(1-4)-D-葡聚糖酶(EG)处理分离的AXC来产生悬浮培养的烟草和番茄细胞分泌的AXG的寡糖亚基。用硼氢化钠将寡糖还原为相应的寡糖基醛糖醇衍生物,并通过凝胶渗透色谱法,反相HPLC和HPAE色谱法组合纯化。通过NMR光谱,基质辅助激光解吸/电离飞行时间质谱(MALDITOFMS),快速原子轰击质谱(FABMS),FABMS / MS和糖基链接分析对分离的寡糖基糖醇进行化学表征,结果证实,这些物种的AXG由(1-> 4)连接的β-D-Glcp骨架组成,骨架在O-6处被各种侧链取代。烟草和番茄AXG均包含α-D-Xylp和α-L-Araf-(1-> 2)-alpha-D-Xyl p侧链,但是,番茄AXG的寡糖片段也显示含有β -D-Gal p-(1-> 2)-alpha-D-Xyl p和beta-Ara f-(1-> 3)-α-L-Araf-(1-> 2)-alpha烟草AXG中不存在的-D-Xyl p侧链。这是木葡聚糖中β-Araf残基的首次报道。确定了通过EG-处理烟草AXG产生的20种寡糖的一级结构。如此大量的寡糖的产生部分归因于烟草AXG的许多主链β-D-Glcp残基的O-6处都存在O-乙酰基取代基。 AXG主链中β-D-Glcp残基的O-6处存在O-乙酰基或糖苷取代基可保护该残基的糖苷键不被EG切割。在AXG的EG处理之前,去除O-乙酰基取代基会产生寡糖片段,该片段小于通过EG-处理的O-乙酰化AXG产生的寡糖片段。因此,对通过天然烟草AXG的EG处理获得的寡糖复杂混合物的分析提供了有关AXG侧链分布的信息,如果AXG在EG处理之前被脱O-乙酰化,则会丢失。此外,通过这种方法生成的庞大的寡糖片段文库揭示了AXGs的结构特征与其H-1 NMR光谱中诊断化学位移效应之间的其他相关性。 (C)1996 Elsevier Science Ltd. [参考:39]

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