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利用工程化配体鉴定高亲和力糖蛋白-受体相互作用的新贡献。

Identification of novel contributions to high-affinity glycoprotein-receptor interactions using engineered ligands.

机构信息

Division of Molecular Biosciences, Department of Life Sciences, Imperial College, London SW7 2AZ, UK.

出版信息

J Mol Biol. 2010 Feb 26;396(3):685-96. doi: 10.1016/j.jmb.2009.11.073. Epub 2009 Dec 7.

Abstract

Engineered receptor fragments and glycoprotein ligands employed in different assay formats have been used to dissect the basis for the dramatic enhancement of binding of two model membrane receptors, dendritic cell-specific intercellular adhesion molecule 3-grabbing nonintegrin (DC-SIGN) and the macrophage galactose lectin, to glycoprotein ligands compared to simple sugars. These approaches make it possible to quantify the importance of two major factors that combine to enhance the affinity of single carbohydrate-recognition domains (CRDs) for glycoprotein ligands by 100-to 300-fold. First, the presence of extended binding sites within a single CRD can enhance interaction with branched glycans, resulting in increases of fivefold to 20-fold in affinity. Second, presentation of glycans on a glycoprotein surface increases affinity by 15-to 20-fold, possibly due to low-specificity interactions with the surface of the protein or restriction in the conformation of the glycans. In contrast, when solution-phase networking is avoided, enhancement due to binding of multiple branches of a glycan to multiple CRDs in the oligomeric forms of these receptors is minimal and binding of a receptor oligomer to multiple glycans on a single glycoprotein makes only a twofold contribution to overall affinity. Thus, in these cases, multivalent interactions of individual glycoproteins with individual receptor oligomers have a limited role in achieving high affinity. These findings, combined with considerations of membrane receptor geometry, are consistent with the idea that further enhancement of the binding to multivalent glycoprotein ligands requires interaction of multiple receptor oligomers with the ligands.

摘要

已采用工程化受体片段和糖蛋白配体,通过不同的测定方法来剖析两个模型膜受体(树突细胞特异性细胞间黏附分子 3 抓取非整合素(DC-SIGN)和巨噬细胞半乳糖凝集素)与糖蛋白配体结合的显著增强的基础。与简单糖相比,这些方法使定量分析两个主要因素的重要性成为可能,这两个因素共同将单个碳水化合物识别结构域(CRD)与糖蛋白配体的亲和力提高 100 至 300 倍。首先,单个 CRD 内存在扩展的结合位点可以增强与支链聚糖的相互作用,从而使亲和力增加 5 至 20 倍。其次,糖蛋白表面上的糖呈现增加了 15 至 20 倍的亲和力,可能是由于与蛋白质表面的低特异性相互作用或糖的构象受限所致。相比之下,当避免溶液相网络形成时,由于糖的多个分支与这些受体的寡聚形式中的多个 CRD 结合而导致的增强作用最小,并且受体寡聚物与单个糖蛋白上的多个糖结合仅对整体亲和力有两倍的贡献。因此,在这些情况下,单个糖蛋白与单个受体寡聚物的多价相互作用在实现高亲和力方面的作用有限。这些发现与膜受体几何形状的考虑相结合,与这样的观点一致,即进一步增强与多价糖蛋白配体的结合需要多个受体寡聚物与配体相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/313f/2824085/fffc8b166c12/gr1.jpg

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