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使用固定化苯硼酸上的配体介导色谱法对酵母α-葡萄糖苷酶进行亲和色谱分析。

Affinity chromatography of yeast alpha-glucosidase using ligand-mediated chromatography on immobilized phenylboronic acids.

作者信息

Myöhänen T A, Bouriotis V, Dean P D

出版信息

Biochem J. 1981 Sep 1;197(3):683-8. doi: 10.1042/bj1970683.

Abstract

The synthesis of 3-nitro-4-(6-aminohexylamido)phenylboronic acid is described. The properties of two novel forms of immobilized phenylboronate agarose adsorbents [m-aminophenylboronic acid-Matrex Gel and 3-nitro-4-(6-aminohexylamido)phenylboronic acid-Sepharose CL-6B] were investigated. Both gels bind and selectively retard the glycoprotein alpha-glucosidase from yeast. The retardation is affected by following parameters: (i) pH, (ii) presence of sugar, (iii) concentration of sugar and (iv) buffer species (especially triethanolamine). Five sugars were studied, namely sorbitol, fructose, ribose, glucose and maltose. The concentration of sugar required to produce significant retardation increased in the above order, whereas the ability of sugar to form a complex with boron decreases in the same order. These effects were observed with crude as well as pure enzyme. Since alpha-glucosidase is a glycoprotein, it is proposed that this protein is mainly bound to these immobilized phenylboronates via sugar (glyco) residues. Displacement of the enzyme from the column is effected by the sugar in the buffer (or in a preincubation mixture). However, the marked pH-dependence (this retardation effect could only be observed at pH 7.4) suggests that these results are not due solely to hydrophobic or ionic mechanisms and are more complex than simple sugar-phenylboronic acid interactions.

摘要

描述了3-硝基-4-(6-氨基己基酰胺基)苯硼酸的合成。研究了两种新型固定化苯硼酸琼脂糖吸附剂[m-氨基苯硼酸-Matrex凝胶和3-硝基-4-(6-氨基己基酰胺基)苯硼酸-Sepharose CL-6B]的性质。两种凝胶都能结合并选择性地阻滞来自酵母的糖蛋白α-葡萄糖苷酶。阻滞作用受以下参数影响:(i)pH值,(ii)糖的存在,(iii)糖的浓度和(iv)缓冲液种类(尤其是三乙醇胺)。研究了五种糖,即山梨醇、果糖、核糖、葡萄糖和麦芽糖。产生显著阻滞作用所需的糖浓度按上述顺序增加,而糖与硼形成络合物的能力按相同顺序降低。在粗酶和纯酶中均观察到这些效应。由于α-葡萄糖苷酶是一种糖蛋白,因此推测该蛋白主要通过糖(糖基)残基与这些固定化苯硼酸盐结合。缓冲液(或预孵育混合物)中的糖会使酶从柱上被置换下来。然而,明显的pH依赖性(这种阻滞作用仅在pH 7.4时才能观察到)表明,这些结果并非仅由于疏水或离子机制,且比简单的糖-苯硼酸相互作用更为复杂。

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