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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Identification of common structural features of binding sites in galactose-specific proteins.
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Identification of common structural features of binding sites in galactose-specific proteins.

机译:鉴定半乳糖特异性蛋白结合位点的常见结构特征。

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Galactose-binding proteins characterize an important subgroup of sugar-binding proteins that are involved in a variety of biological processes. Structural studies have shown that the Gal-specific proteins encompass a diverse range of primary and tertiary structures. The binding sites for galactose also seem to vary in different protein-galactose complexes. No common binding site features that are shared by the Gal-specific proteins to achieve ligand specificity are so far known. With the assumption that common recognition principles will exist for common substrate recognition, the present study was undertaken to identify and characterize any unique galactose-binding site signature by analyzing the three-dimensional (3D) structures of 18 protein-galactose complexes. These proteins belong to 7 nonhomologous families; thus, there is no sequence or structural similarity across the families. Within each family, the binding site residues and their relative distances were well conserved, but there were no similarities across families. A novel, yet simple, approach was adopted to characterize the binding site residues by representing their relative spatial dispositions in polar coordinates. A combination of the deduced geometrical features with the structural characteristics, such as solvent accessibility and secondary structure type, furnished a potential galactose-binding site signature. The signature was evaluated by incorporation into the program COTRAN to search for potential galactose-binding sites in proteins that share the same fold as the known galactose-binding proteins. COTRAN is able to detect galactose-binding sites with a very high specificity and sensitivity. The deduced galactose-binding site signature is strongly validated and can be used to search for galactose-binding sites in proteins. PROSITE-type signature sequences have also been inferred for galectin and C-type animal lectin-like fold families of Gal-binding proteins.
机译:半乳糖结合蛋白是糖结合蛋白重要的亚组,其参与多种生物过程。结构研究表明,Gal特异性蛋白涵盖了广泛的一级和三级结构。半乳糖的结合位点在不同的蛋白质-半乳糖复合物中似乎也有所不同。迄今为止,还没有已知由Gal特异性蛋白共有的常见结合位点特征,以实现配体特异性。假设通用的识别原理将存在于通用的底物识别中,本研究旨在通过分析18种蛋白质-半乳糖复合物的三维(3D)结构来识别和表征任何独特的半乳糖结合位点签名。这些蛋白质属于7个非同源家族。因此,各家族之间没有序列或结构相似性。在每个家族中,结合位点残基及其相对距离都得到了很好的保守,但是家族之间没有相似之处。采用新颖但简单的方法,通过在极坐标中表示它们的相对空间位置来表征结合位点残基。推论的几何特征与结构特征(例如溶剂可及性和二级结构类型)的组合提供了潜在的半乳糖结合位点标记。通过并入程序COTRAN中以搜索与已知半乳糖结合蛋白具有相同折叠倍数的蛋白质中潜在的半乳糖结合位点来评估签名。 COTRAN能够以非常高的特异性和灵敏度检测半乳糖结合位点。推定的半乳糖结合位点签名得到了有效验证,可用于搜索蛋白质中的半乳糖结合位点。还已经推断出Gal-结合蛋白和Gal结合蛋白的C型动物凝集素样折叠家族的PROSITE型特征序列。

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