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来自发芽旱金莲种子子叶的一种纯木葡聚糖内切转糖基酶(以前称为木葡聚糖特异性内切-(1→4)-β-D-葡聚糖酶)的作用

Action of a pure xyloglucan endo-transglycosylase (formerly called xyloglucan-specific endo-(1-->4)-beta-D-glucanase) from the cotyledons of germinated nasturtium seeds.

作者信息

Fanutti C, Gidley M J, Reid J S

机构信息

Department of Biological and Molecular Sciences, School of Natural Sciences, University of Stirling, UK.

出版信息

Plant J. 1993 May;3(5):691-700. doi: 10.1046/j.1365-313x.1993.03050691.x.

Abstract

The action on tamarind seed xyloglucan of the pure, xyloglucan-specific endo-(1-->4)-beta-D-glucanase from nasturtium (Tropaeolum majus L.) cotyledons has been compared with that of a pure endo-(1-->)-beta-D-glucanase ('cellulase') of fungal origin. The fungal enzyme hydrolysed the polysaccharide almost completely to a mixture of the four xyloglucan oligosaccharides: [formula: see text] Exhaustive digestion with the nasturtium enzyme gave the same four oligosaccharides plus large amounts of higher oligosaccharides and higher-polymeric material. Five of the product oligosaccharides (D, E, F, G, H) were purified and shown to be dimers of oligosaccharides A to C. D (glc8xyl6) had the structure A-->A, H (glc8xyl6 gal4) was C-->C, whereas E (glc8xyl6gal), F (glc8xyl6gal2) and G (glc8xyl6gal3) were mixtures of structural isomers with the appropriate composition. For example, F contained B2-->B2 (30%), A-->C (30%), C-->A (20%), B2-->B1 (15%) and others (about 5%). At moderate concentration (about 3 mM) oligosaccharides D to H were not further hydrolysed by the nasturtium enzyme, but underwent transglycosylation to give oligosaccharides from the group A, B, C, plus higher oligomeric structures. At lower substrate concentrations, hydrolysis was observed. Similarly, tamarind seed xyloglucan was hydrolysed to a greater extent at lower concentrations. It is concluded that the xyloglucan-specific nasturtium-seed endo-(1-->4)-beta-D-glucanase has a powerful xyloglucan-xyloglucan endo-transglycosylase activity in addition to its known xyloglucan-specific hydrolytic action. It would be more appropriately classified as a xyloglucan endo-transglycosylase. The action and specificity of the nasturtium enzyme are discussed in the context of xyloglucan metabolism in the cell walls of seeds and in other plant tissues.

摘要

已将来自旱金莲(Tropaeolum majus L.)子叶的纯的、木葡聚糖特异性内切-(1→4)-β-D-葡聚糖酶对罗望子种子木葡聚糖的作用与一种来自真菌的纯内切-(1→)-β-D-葡聚糖酶(“纤维素酶”)的作用进行了比较。真菌酶几乎将多糖完全水解为四种木葡聚糖寡糖的混合物:[化学式:见原文]。用旱金莲酶进行彻底消化得到相同的四种寡糖以及大量更高的寡糖和更高聚合度的物质。对五种产物寡糖(D、E、F、G、H)进行了纯化,结果表明它们是寡糖A至C的二聚体。D(glc8xyl6)的结构为A→A,H(glc8xyl6 gal4)为C→C,而E(glc8xyl6gal)、F(glc8xyl6gal2)和G(glc8xyl6gal3)是具有适当组成的结构异构体混合物。例如,F含有B2→B2(30%)、A→C(30%)、C→A(20%)、B2→B1(15%)以及其他(约5%)。在中等浓度(约3 mM)下,寡糖D至H不会被旱金莲酶进一步水解,但会发生转糖基化反应,生成A、B、C组的寡糖以及更高的寡聚结构。在较低底物浓度下,观察到了水解现象。同样,罗望子种子木葡聚糖在较低浓度下被水解的程度更大。得出的结论是,木葡聚糖特异性旱金莲种子内切-(1→4)-β-D-葡聚糖酶除了其已知的木葡聚糖特异性水解作用外,还具有强大的木葡聚糖-木葡聚糖内切转糖基酶活性。它更适合归类为木葡聚糖内切转糖基酶。在种子和其他植物组织细胞壁中的木葡聚糖代谢背景下,讨论了旱金莲酶的作用和特异性。

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