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Genomic analysis of C-type lectins

机译:C型凝集素的基因组分析

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Many biological effects of complex carbohydrates are mediated by lectins that contain discrete carbohydrate-recognition domains. At least seven structurally distinct families of carbohydrate-recognition domains are found in lectins that are involved in intracellular trafficking, cell adhesion, cell-cell signalling, glycoprotein turnover and innate immunity. Genome-wide analysis of potential carbohydrate-binding domains is now possible. Two classes of intracellular lectins involved in glycoprotein trafficking are present in yeast, model invertebrates and vertebrates, and two other classes are present in vertebrates only. At the cell surface, calcium-dependent (C-type) lectins and galectins are found in model invertebrates and vertebrates, but not inyeast; immunoglobulin super-family (I-type) lectins are only found in vertebrates. The evolutionary appearance of different classes of sugar-binding protein modules parallels a development towards more complex oHgosaccharides that provide increased opportunities for specific recognition phenomena. An overall picture of the lectins present in humans can now be proposed. Based on our knowledge of the structures of several of the C-type carbohydrate-recognition domains, it is possible to suggest ligand-binding activity that may be associated with novel C-type lectin-like domains identified in a systematic screen of the human genome. Further analysis of the sequences of proteins containing these domains can be used as a basis for proposing potential biological functions.
机译:复合碳水化合物的许多生物学效果由含有离散碳水化合物识别结构域的凝集素介导。在参与细胞内运输,细胞粘附,细胞 - 细胞信号传导,糖蛋白周转和先天免疫的凝集素中,至少存在七个结构上不同的碳水化合物识别结构域系列。现在可以实现潜在的碳水化合物结合结构域的基因组分析。两类参与糖蛋白行为的细胞内凝集素存在于酵母中,模型无脊椎动物和脊椎动物,并且仅在脊椎动物中存在另外两类。在细胞表面,依赖于钙依赖性(C型)凝集素和半乳酸胶在模型无脊椎动物和脊椎动物中发现,但不属于玉米;免疫球蛋白超级家庭(I型)凝集素仅在脊椎动物中发现。不同类别糖结合蛋白模块的进化外观使发育更复杂的高辛糖,为特定识别现象提供增加的机会。现在可以提出在人类中存在的凝集素的整体情况。基于我们对几种C型碳水化合物识别结构域的结构的知识,可以提示配体结合活性,该活性可以与在人类基因组的系统筛选中鉴定的新型C型凝集素状结构域相关联。进一步分析含有这些结构域的蛋白质序列可以用作提出潜在的生物功能的基础。

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