STRUCTURE AND FUNCTION OF PLANT TOXINS (WITH EMPHASIS ON CYSTINE KNOT TOXINS)

D. Craik, N. Daly, Manuel Plan, A. Salim, L. Sando
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引用次数: 12

Abstract

Plant toxins are substances produced and secreted by plants to defend themselves against predators. In a broad sense, this includes all substances that have a toxic effect on targeted organisms, whether they are microbes, other plants, insects, or higher animals. Plant toxins have a diverse range of structures, from small organic molecules through to proteins. This review gives an overview of the various classes of plant toxins but focuses on an interesting class of protein-based plant toxins containing a cystine knot motif. This structural motif confers exceptional stability on proteins containing it and is associated with a wide range of biological activities. The biological activities and structural stability offer many potential applications in the pharmaceutical and agricultural fields. One particularly exciting prospect is in the use of protein-based plant toxins as molecular scaffolds for displaying pharmaceutically important bioactivities. Future applications of plant toxins are likely to involve genetic engineering techniques and “molecular pharming” approaches.
植物毒素的结构与功能(以胱氨酸结毒素为重点)
植物毒素是植物为抵御天敌而产生和分泌的物质。从广义上讲,这包括所有对目标生物有毒性作用的物质,无论是微生物、其他植物、昆虫还是高等动物。植物毒素具有多种结构,从小的有机分子到蛋白质。本文综述了各种类型的植物毒素,但重点关注一类有趣的含有胱氨酸结基序的基于蛋白质的植物毒素。这种结构基序赋予含有它的蛋白质特殊的稳定性,并与广泛的生物活性相关。其生物活性和结构稳定性在医药和农业领域具有广阔的应用前景。一个特别令人兴奋的前景是利用基于蛋白质的植物毒素作为分子支架来显示重要的药用生物活性。植物毒素的未来应用可能涉及基因工程技术和“分子法”方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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