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Selective Ligand Recognition by a Diversity-Generating Retroelement Variable Protein

机译:产生多样性的逆向可变蛋白的选择性配体识别

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Diversity-generating retroelements (DGRs) recognize novel ligands through massive protein sequence variation, a property shared uniquely with the adaptive immune response. Little is known about how recognition is achieved by DGR variable proteins. Here, we present the structure of the Bordetella bacteriophage DGR variable protein major tropism determinant (Mtd) bound to the receptor pertactin, revealing remarkable adaptability in the static binding sites of Mtd. Despite large dissimilarities in ligand binding mode, principles underlying selective recognition were strikingly conserved between Mtd and immunoreceptors. Central to this was the differential amplification of binding strengths by avidity (i.e., multivalency), which not only relaxed the demand for optimal complementarity between Mtd and pertactin but also enhanced distinctions among binding events to provide selectivity. A quantitatively similar balance between complementarity and avidity was observed for Bordetella bacteriophage DGR as occurs in the immune system, suggesting that variable repertoires operate under a narrow set of conditions to recognize novel ligands.
机译:产生多样性的逆向元件(DGR)通过大量的蛋白质序列变异识别新的配体,而这种特性与适应性免疫反应具有独特的共性。关于DGR可变蛋白如何实现识别知之甚少。在这里,我们介绍绑定到受体pertactin的博德特氏菌噬菌体DGR可变蛋白主要趋向性决定簇(Mtd)的结构,揭示了在Mtd的静态结合位点的显着适应性。尽管在配体结合方式上有很大的不同,但是在Mtd和免疫受体之间保留了选择性识别的基本原理。其中心是通过亲合力(即多价)对结合强度的差异放大,这不仅放宽了对Mtd和百日咳杆菌粘附素之间最佳互补性的需求,而且增强了结合事件之间的区别以提供选择性。博德特氏菌噬菌体DGR在免疫系统中观察到互补和亲和力之间存在定量相似的平衡,这表明可变库在狭窄条件下可识别新的配体。

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