α -淀粉酶活性位点探针的研究。

Journal of applied biochemistry Pub Date : 1983-12-01
P J Stankiewicz, D Cascio, A McPherson
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引用次数: 0

摘要

合成了一系列取代的1-硫代- β - d -麦芽糖吡喃苷,并通过元素分析、旋光分析、核磁共振和液相色谱进行了证实。这些化合物通过几种生化技术被证明与α -淀粉酶的活性位点结合。稳态动力学研究表明,化合物是竞争性抑制剂,其亲和在天然配体麦芽糖和麦芽糖的范围内。亲和层析采用连接到Sepharose的对氨基苯基-1-硫- β - d -麦芽吡喃苷为α -淀粉酶纯化提供了一个相对简单的程序。用x射线晶体学观察了对溴苯基-1-硫- β - d -麦芽糖苷在α -淀粉酶晶体中的结合,并通过差分傅立叶分析在5.0-A分辨率下观察了对溴苯基-1-硫- β - d -麦芽糖苷与酶活性位点的相互作用。抑制剂结合在一个长而深的裂缝中,将酶的两个主要结构域分开。这些研究为通过调节α -淀粉酶活性来合理设计淀粉分解和利用的生理调节配体提供了第一步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Beta-thiomaltosides as active site probes for alpha-amylase.

A series of substituted 1-thio-beta-D-maltopyranosides was synthesized and confirmed by elemental analysis, optical rotation, NMR, and liquid chromatography. These compounds were shown by several biochemical techniques to bind to the active site of alpha-amylase. Steady-state kinetic studies showed the compounds to be competitive inhibitors, with affinities lying within the range of the natural ligands, maltose and maltotriose. Affinity chromatography employing p-aminophenyl-1-thio-beta-D-maltopyranoside linked to Sepharose provides a relatively simple procedure for alpha-amylase purification. The binding of p-bromphenyl-1-thio-beta-D-maltoside was observed in crystals of alpha-amylase using X-ray crystallography, and through the use of difference Fourier analysis its interaction at 5.0-A resolution with the active site of the enzyme has been visualized. The inhibitor binds in a long, deep cleft that divides the two major domains of the enzyme. These studies are believed to provide a first step toward the rational design of ligands for the physiological regulation of starch breakdown and utilization through modulation of alpha-amylase activity.

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