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[关于植物凝集素可能功能的当前知识]

[Current knowledge about presumable functions of plant lectins].

作者信息

Shakirova F M, Bezrukova M V

出版信息

Zh Obshch Biol. 2007 Mar-Apr;68(2):109-25.

Abstract

Current data on the diversity of plant lectins and their functional importance for plants, caused primarily by their capacity to link carbohydrate ligands specifically and convertibly, are reviewed. For instance, the role of plant lectins in the recognition of alien organisms and in the adaptation of plants to various stress-induced effects is discussed. In addition to centres of specific affinity to carbohydrates, plant lectins are characterized by the presence of sites responsible for hydrophobic interactions with non-carbohydrate molecules. These sites link to plant hormones, proteins, and other metabolites, thus participating in the regulation of metabolic processes controlling growth, development, and differentiation in plants. The structure and biological properties of ribosome-inactivating proteins having and not having lectin activity are discussed, as well as their role in plant protection from pests and pathogens. Current data on the assumed functions of the independent groups of plant lectins with specific endogenic role are given. These include chitin-specific lectins synthesized in phloem, which are capable of forming protein-protein and RNA-protein complexes and translocating via vessels, which thus play their specific intra- or intercellular interactions, processes of growth, development, and protection of plants. Other groups of plant lectins, induced by jasmonate, such as Nictaba (Nicotiana tabaccum agglutinin), and cereal lectins related to jacalin, which are localised in the cytoplasm and nucleus, probably play regulatory role in the formation of stress response in plants. The structure and currently discussed functions of wheat germ agglutinin, a typical representative of cereal lectins, are analysed in detail.

摘要

本文综述了目前关于植物凝集素多样性及其对植物功能重要性的数据,这些数据主要源于其特异性和可逆性连接碳水化合物配体的能力。例如,文中讨论了植物凝集素在识别外来生物以及植物适应各种胁迫诱导效应中的作用。除了对碳水化合物的特异性亲和力中心外,植物凝集素的特征还在于存在负责与非碳水化合物分子进行疏水相互作用的位点。这些位点与植物激素、蛋白质和其他代谢物相连,从而参与调控控制植物生长、发育和分化的代谢过程。文中讨论了具有和不具有凝集素活性的核糖体失活蛋白的结构和生物学特性,以及它们在植物抵御害虫和病原体中的作用。还给出了关于具有特定内源作用的独立植物凝集素组假定功能的当前数据。这些包括在韧皮部合成的几丁质特异性凝集素,它们能够形成蛋白质 - 蛋白质和RNA - 蛋白质复合物并通过导管运输,从而在植物的生长、发育和保护过程中发挥其特定的细胞内或细胞间相互作用。其他由茉莉酸诱导的植物凝集素组,如烟草凝集素(Nictaba,烟草凝集素),以及与jacalin相关的谷物凝集素,它们定位于细胞质和细胞核中,可能在植物应激反应的形成中起调节作用。本文详细分析了谷物凝集素的典型代表——麦胚凝集素的结构和目前讨论的功能。

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