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原花青素与蛋白质相互作用的特异性。

The specificity of proanthocyanidin-protein interactions.

作者信息

Hagerman A E, Butler L G

出版信息

J Biol Chem. 1981 May 10;256(9):4494-7.

PMID:7217094
Abstract

The proanthocyanidins or condensed tannins, phenolic polymers which are synthesized by many plants, characteristically bind and precipitate proteins. The specificity of the interaction was investigated using a competitive binding assay to compare directly the affinities of various proteins and synthetic polymers for the tannin obtained from Sorghum bicolor (Lin.) Moench. At pH 4.9, the relative affinities range over more than 4 orders of magnitude, indicating that this proanthocyanidin interacts quite selectively with protein and protein-like polymers. The affinity for tannins is an inverse function of the size of the polymer, and peptides with less than six residues interact very weakly with tannin. Proteins are precipitated by proanthocyanidins most efficiently at pH values near their isoelectric points. Proline-rich proteins and polymers have very high affinities for tannin. Tightly coiled globular proteins have much lower affinities for tannin than conformationally loose proteins.

摘要

原花青素或缩合单宁是由许多植物合成的酚类聚合物,其特性是能结合并沉淀蛋白质。利用竞争性结合试验研究了这种相互作用的特异性,以直接比较各种蛋白质和合成聚合物对从高粱(双色高粱)中获得的单宁的亲和力。在pH 4.9时,相对亲和力范围超过4个数量级,这表明这种原花青素与蛋白质和类蛋白质聚合物的相互作用具有相当的选择性。对单宁的亲和力是聚合物大小的反函数,少于六个残基的肽与单宁的相互作用非常弱。在接近其等电点的pH值下,原花青素能最有效地沉淀蛋白质。富含脯氨酸的蛋白质和聚合物对单宁具有非常高的亲和力。紧密盘绕的球状蛋白质对单宁的亲和力远低于构象松散的蛋白质。

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