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Classification of plant lectins in families of structurally and evolutionary related proteins.

机译:植物凝集素在结构和进化相关蛋白家族中的分类。

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摘要

The majority of plant lectins can be classified in seven families of structurally and evolutionary related proteins. Within a given lectin family most but not necessarily all members are built up of protomers with a similar primary structure and overall 3-D fold. The overall structure of the native lectins is not only determined by the structure of the protomers but depends also on the degree of oligomerization and in some cases on the post-translational processing of the lectin precursors. In general, lectin families are fairly homogeneous for what concerns the overall specificity of the individual lectins, which illustrates that the 3-D structure of the binding site has been conserved during evolution. In the case of the jacalin-related lectins the occurrence of a mannose- and galactose-binding subfamily can be explained by the fact that a post-translational cleavage of the protomers (of the galactose-binding subfamily) yields a slightly altered binding site. Unlike the other families, the legume lectins display a wide range of specificites, which is clearly reflected in the occurrence of sugar-binding sites with a different 3-D structure.
机译:大多数植物凝集素可分为七个结构和进化相关蛋白家族。在给定的凝集素家族中,大多数(但不一定是)所有成员都是由具有相似基本结构和整体3-D折叠的启动子组成。天然凝集素的整体结构不仅由启动子的结构决定,而且还取决于寡聚化的程度,在某些情况下还取决于凝集素前体的翻译后加工。通常,关于各个凝集素的整体特异性,凝集素家族是相当均一的,这说明结合位点的3-D结构在进化过程中一直是保守的。在贾卡林相关的凝集素的情况下,甘露糖和半乳糖结合的亚家族的发生可以通过以下事实来解释:(半乳糖结合的亚家族的)前体的翻译后裂解产生稍微改变的结合位点。与其他家族不同,豆科植物凝集素显示出广泛的特异性,这清楚地反映在具有不同3-D结构的糖结合位点的发生上。

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