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橡胶树胶乳类脂体组分中的几丁质酶和β-1,3-葡聚糖酶

Chitinase and beta-1,3-glucanase in the lutoid-body fraction of Hevea latex.

作者信息

Subroto T, van Koningsveld G A, Schreuder H A, Soedjanaatmadja U M, Beintema J J

机构信息

Laboratorium Biokimia, FMIPA, Universitas Padjadjaran, Bandung, Indonesia.

出版信息

Phytochemistry. 1996 Sep;43(1):29-37. doi: 10.1016/0031-9422(96)00196-3.

Abstract

The lutoid-body (bottom) fraction of latex from the rubber tree (Hevea brasiliensis) contains a limited number of major proteins. These are, besides the chitin-binding protein hevein, its precursor and the C-terminal fragment of this precursor, proteins with enzymic activities: three hevamine components, which are basic, vacuolar, chitinases with lysozyme activity, and a beta-1,3-glucanase. Lutoid-body fractions from three rubber-tree clones differed in their contents of these enzyme proteins. The hevamine components and glucanase were isolated and several enzymic and structural properties were investigated. These enzymes are basic proteins and cause coagulation of the negatively charged rubber particles. The coagulation occurs in a rather narrow range of ratios of added protein to rubber particles, which indicates that charg neutralization is the determining factor. Differences in coagulation of rubber particles by lutoid-body fractions from various rubber clones can be explained by their content of hevamine and glucanase. Glucanase from the lutoid-body fraction may dissolve callus tissue and this may explain the observation that rubber-tree clones with a high glucanase content in this fraction produce more latex than clones with little glucanase. Sequence studies of two CNBr peptides of the glucanase indicate that this protein is homologous with glucanases from other plants, and that a C-terminal peptide, possibly involved in vacuolar targeting, may have been cleaved off.

摘要

橡胶树(巴西橡胶树)乳胶的类液泡体(底部)部分含有数量有限的主要蛋白质。除了几丁质结合蛋白橡胶素、其前体以及该前体的C末端片段外,这些蛋白质还具有酶活性:三种橡胶胺成分,它们是碱性的、存在于液泡中的、具有溶菌酶活性的几丁质酶,以及一种β-1,3-葡聚糖酶。来自三个橡胶树克隆的类液泡体部分在这些酶蛋白的含量上有所不同。对橡胶胺成分和葡聚糖酶进行了分离,并研究了它们的一些酶学和结构特性。这些酶是碱性蛋白质,会导致带负电荷的橡胶颗粒凝聚。凝聚发生在添加的蛋白质与橡胶颗粒的比例相当窄的范围内,这表明电荷中和是决定因素。不同橡胶克隆的类液泡体部分对橡胶颗粒凝聚的差异可以用它们所含的橡胶胺和葡聚糖酶来解释。来自类液泡体部分的葡聚糖酶可能会溶解愈伤组织,这或许可以解释为什么该部分葡聚糖酶含量高的橡胶树克隆比葡聚糖酶含量低的克隆产生更多的乳胶。对葡聚糖酶的两个溴化氰肽段进行的序列研究表明,该蛋白质与其他植物的葡聚糖酶同源,并且一个可能参与液泡靶向的C末端肽段可能已被切除。

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