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首页> 外文期刊>Journal of Molecular Modeling >Structural analysis of natural killer cell receptor protein 1 (NKR-P1) extracellular domains suggests a conserved long loop region involved in ligand specificity
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Structural analysis of natural killer cell receptor protein 1 (NKR-P1) extracellular domains suggests a conserved long loop region involved in ligand specificity

机译:天然杀伤细胞受体蛋白1(NKR-P1)细胞外域的结构分析表明,保守的长环区域参与配体特异性

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Receptor proteins at the cell surface regulate the ability of natural killer cells to recognize and kill a variety of aberrant target cells. The structural features determining the function of natural killer receptor proteins 1 (NKR-P1s) are largely unknown. In the present work, refined homology models are generated for the C-type lectin-like extracellular domains of rat NKR-P1A and NKR-P1B, mouse NKR-P1A, NKR-P1C, NKR-P1F, and NKR-P1G, and human NKR-P1 receptors. Experimental data on secondary structure, tertiary interactions, and thermal transitions are acquired for four of the proteins using Raman and infrared spectroscopy. The experimental and modeling results are in agreement with respect to the overall structures of the NKR-P1 receptor domains, while suggesting functionally significant local differences among species and isoforms. Two sequence regions that are conserved in all analyzed NKR-P1 receptors do not correspond to conserved structural elements as might be expected, but are represented by loop regions, one of which is arranged differently in the constructed models. This region displays high flexibility but is anchored by conserved sequences, suggesting that its position relative to the rest of the domain might be variable. This loop may contribute to ligand-binding specificity via a coupled conformational transition.
机译:细胞表面的受体蛋白调节天然杀伤细胞识别和杀死各种异常靶细胞的能力。确定自然杀伤受体蛋白1(NKR-P1s)的功能的结构特征是很大程度上未知。在目前的工作中,为大鼠NKR-P1A和NKR-P1B,小鼠NKR-P1A,NKR-P1C,NKR-P1F和NKR-P1G和人的C型凝集素样细胞外结构域生成了完善的同源性模型NKR-P1受体。使用拉曼光谱和红外光谱法获得了四种蛋白质的二级结构,三级相互作用和热转变的实验数据。实验和建模结果在NKR-P1受体域的整体结构上是一致的,同时表明物种和同工型之间在功能上存在显着的局部差异。在所有已分析的NKR-P1受体中保守的两个序列区域与预期的保守结构元件并不对应,而是由环区域表示,其中一个环区在构建的模型中的排列方式不同。该区域显示出较高的灵活性,但由保守序列锚定,表明其相对于结构域其余部分的位置可能是可变的。该环可通过偶联的构象转变促进配体结合特异性。

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