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豆科植物凝集素——一类同源蛋白的大家族。

Legume lectins--a large family of homologous proteins.

作者信息

Sharon N, Lis H

机构信息

Department of Biophysics, Weizmann Institute of Science, Rehovot, Israel.

出版信息

FASEB J. 1990 Nov;4(14):3198-208. doi: 10.1096/fasebj.4.14.2227211.

Abstract

More than 70 lectins from leguminous plants belonging to different suborders and tribes have been isolated, mostly from seeds, and characterized to varying degrees. Although they differ in their carbohydrate specificities, they resemble each other in their physicochemical properties. They usually consist of two or four subunits (25-30 kDa), each with one carbohydrate binding site. Interaction with carbohydrates requires tightly bound Ca2+ and Mn2+ (or another transition metal). The primary sequences of more than 15 legume lectins have been established by chemical or molecular genetic techniques. They exhibit remarkable homologies, with a significant number of invariant amino acid residues, among them most of those involved in metal binding. The 3-dimensional structures of the legume lectins are similar, too, and are characterized by a high content of beta-sheets and a lack of alpha-helix. The location of the metal and carbohydrate binding sites, established unequivocally in concanavalin A by high resolution X-ray crystallography, appears to be the same in the other legume lectins. Several of the lectin genes have been cloned and expressed in heterologous systems. This opens the way for the application of molecular genetics to the investigation of the atomic structure of the carbohydrate binding sites of the lectins, and of the relationship between their structure and biological activity. The new approaches may also provide information on the mechanisms that control gene expression in plants and on the role of lectins in nature.

摘要

已从属于不同亚目和族的豆科植物中分离出70多种凝集素,大部分来自种子,并在不同程度上进行了表征。尽管它们的碳水化合物特异性不同,但它们的物理化学性质彼此相似。它们通常由两个或四个亚基(25 - 30 kDa)组成,每个亚基有一个碳水化合物结合位点。与碳水化合物的相互作用需要紧密结合的Ca2+和Mn2+(或另一种过渡金属)。通过化学或分子遗传学技术已确定了15种以上豆科凝集素的一级序列。它们表现出显著的同源性,有大量不变的氨基酸残基,其中大多数参与金属结合。豆科凝集素的三维结构也相似,其特征是β-折叠含量高且缺乏α-螺旋。通过高分辨率X射线晶体学在伴刀豆球蛋白A中明确确定的金属和碳水化合物结合位点,在其他豆科凝集素中似乎也是相同的。一些凝集素基因已被克隆并在异源系统中表达。这为应用分子遗传学研究凝集素碳水化合物结合位点的原子结构以及它们的结构与生物活性之间的关系开辟了道路。这些新方法还可能提供有关植物中控制基因表达的机制以及凝集素在自然界中的作用的信息。

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