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番红花(鸢尾科)中一种单子叶甘露糖结合凝集素的克隆与特性分析

Cloning and characterization of a monocot mannose-binding lectin from Crocus vernus (family Iridaceae).

作者信息

Van Damme E J, Astoul C H, Barre A, Rougé P, Peumans W J

机构信息

Laboratory of Phytopathology and Plant Protection, Katholieke Universiteit Leuven, Belgium; Institut de Pharmacologie et Biologie Structurale, Toulouse, France.

出版信息

Eur J Biochem. 2000 Aug;267(16):5067-77. doi: 10.1046/j.1432-1327.2000.01563.x.

Abstract

The molecular structure and carbohydrate-binding activity of the lectin from bulbs of spring crocus (Crocus vernus) has been determined unambiguously using a combination of protein analysis and cDNA cloning. Molecular cloning revealed that the lectin called C. vernus agglutinin (CVA) is encoded by a precursor consisting of two tandemly arrayed lectin domains with a reasonable sequence similarity to the monocot mannose-binding lectins. Post-translational cleavage of the precursor yields two equally sized polypeptides. Mature CVA consists of two pairs of polypeptides and hence is a heterotetrameric protein. Surface plasmon resonance studies of the interaction of the crocus lectin with high mannose-type glycans showed that the lectin interacts specifically with exposed alpha-1,3-dimannosyl motifs. Molecular modelling studies confirmed further the close relationships in overall fold and three-dimensional structure of the mannose-binding sites of the crocus lectin and other monocot mannose-binding lectins. However, docking experiments indicate that only one of the six putative mannose-binding sites of the CVA protomer is active. These results can explain the weak carbohydrate-binding activity and low specific agglutination activity of the lectin. As the cloning and characterization of the spring crocus lectin demonstrate that the monocot mannose-binding lectins occur also within the family Iridaceae a refined model of the molecular evolution of this lectin family is proposed.

摘要

通过蛋白质分析和cDNA克隆相结合的方法,已明确确定了春番红花(番红花)鳞茎凝集素的分子结构和碳水化合物结合活性。分子克隆显示,名为番红花凝集素(CVA)的凝集素由一个前体编码,该前体由两个串联排列的凝集素结构域组成,与单子叶植物甘露糖结合凝集素具有合理的序列相似性。前体的翻译后切割产生两个大小相等的多肽。成熟的CVA由两对多肽组成,因此是一种异源四聚体蛋白。番红花凝集素与高甘露糖型聚糖相互作用的表面等离子体共振研究表明,该凝集素与暴露的α-1,3-二甘露糖基基序特异性相互作用。分子建模研究进一步证实了番红花凝集素和其他单子叶植物甘露糖结合凝集素在整体折叠和甘露糖结合位点三维结构上的密切关系。然而,对接实验表明,CVA原体六个假定的甘露糖结合位点中只有一个是有活性的。这些结果可以解释该凝集素较弱的碳水化合物结合活性和较低的特异性凝集活性。由于春番红花凝集素的克隆和表征表明单子叶植物甘露糖结合凝集素也存在于鸢尾科中,因此提出了该凝集素家族分子进化的精细模型。

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