首页> 外文期刊>Plant Physiology and Biochemistry >Purification of a beta -galactosidase from cotyledons of Hymenaea courbaril L. (Leguminosae). Enzyme properties and biological function.
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Purification of a beta -galactosidase from cotyledons of Hymenaea courbaril L. (Leguminosae). Enzyme properties and biological function.

机译:从Hymenaea courbaril L.(豆科)的子叶中纯化β-半乳糖苷酶。酶的性质和生物学功能。

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Beta-galactosidases are enzymes that can be found in most living beings and in the plant kingdom its activity and genes have been detected in several tissues such as ripening fruits, developing leaves and flowers and storage tissues such as cotyledons. In plants, their activities are usually associated with the secondary metabolism or with oligosaccharide or polysaccharide degradation. Polysaccharide specific beta -galactosidases include beta -galactanases, which attack pectic polymers and beta -galactosidases that attack xyloglucans (XG). In the present work we purified an XG-specific beta -galactosidase (named hcbetagal) from cotyledons of developing seedlings of Hymenaea courbaril, a legume tree from the Neotropical region of the world. The enzyme has a molecular weight of 52-62 kDa and was shown to attack specifically xyloglucan oligosaccharides (XGOs) but not the polymer. It has a pH optimum between 3 and 4 and at this pH range the enzyme increases activity linearly up to 50 degrees C. Kinetic studies showed that hcbetagal is inhibited competitively by free galactose (Ki=3.7). The biochemical properties of hcbetagal as a whole suggest that it is involved in storage xyloglucan mobilisation during seedling development. Its high specificity towards XGOs, the low pH optimum and the fact that it is inhibited by its product (galactose) suggest that hcbetagal might be one of the biochemical control points in xyloglucan catabolism in vivo. A possible relationship with functional stability of the wall during cell death as cotyledons undergo senescence is discussed..
机译:β-半乳糖苷酶是一种在大多数生物中都可以发现的酶,在植物界中它的活性和基因已经在几种组织中检测到,例如成熟的果实,发育中的叶子和花朵以及子叶等存储组织。在植物中,它们的活性通常与次级代谢或寡糖或多糖降解有关。多糖特异性β-半乳糖苷酶包括攻击果胶聚合物的β-半乳糖苷酶和攻击木葡聚糖(XG)的β-半乳糖苷酶。在目前的工作中,我们从Hymenaea courbaril(世界新热带地区的一种豆科植物)的幼苗的子叶中纯化了XG特异性β-半乳糖苷酶(称为hcbetagal)。该酶的分子量为52-62 kDa,显示出可特异性攻击木葡聚糖寡糖(XGO),但不攻击聚合物。它的最佳pH在3-4之间,在此pH范围内,酶线性增加活性,直至50摄氏度。动力学研究表明,hcbetagal被游离半乳糖竞争性抑制(Ki = 3.7)。总体而言,hcbetagal的生化特性表明,其参与幼苗发育过程中的存储木葡聚糖动员。它对XGOs的高特异性,最适pH值低以及被其产物(半乳糖)抑制的事实表明,hcbetagal可能是体内木葡聚糖分解代谢的生化控制点之一。讨论了子叶经历衰老过程中细胞死亡过程中壁功能稳定性的可能关系。

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