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一个远程二级结合口袋促进了 DC-SIGN 的异价靶向。

A Remote Secondary Binding Pocket Promotes Heteromultivalent Targeting of DC-SIGN.

机构信息

Department of Biomolecular Systems, Max Planck Institute of Colloids and Interfaces, 14424 Potsdam, Germany.

Department of Chemistry and Biochemistry, Freie University of Berlin, 14195 Berlin, Germany.

出版信息

J Am Chem Soc. 2021 Nov 17;143(45):18977-18988. doi: 10.1021/jacs.1c07235. Epub 2021 Nov 8.

Abstract

Dendritic cells (DC) are antigen-presenting cells coordinating the interplay of the innate and the adaptive immune response. The endocytic C-type lectin receptors DC-SIGN and Langerin display expression profiles restricted to distinct DC subtypes and have emerged as prime targets for next-generation immunotherapies and anti-infectives. Using heteromultivalent liposomes copresenting mannosides bearing aromatic aglycones with natural glycan ligands, we serendipitously discovered striking cooperativity effects for DC-SIGN but not for Langerin cell lines. Mechanistic investigations combining NMR spectroscopy with molecular docking and molecular dynamics simulations led to the identification of a secondary binding pocket for the glycomimetics. This pocket, located remotely of DC-SIGN's carbohydrate bindings site, can be leveraged by heteromultivalent avidity enhancement. We further present preliminary evidence that the aglycone allosterically activates glycan recognition and thereby contributes to DC-SIGN-specific cell targeting. Our findings have important implications for both translational and basic glycoscience, showcasing heteromultivalent targeting of DCs to improve specificity and supporting potential allosteric regulation of DC-SIGN and CLRs in general.

摘要

树突状细胞(DC)是呈递抗原的细胞,协调先天免疫和适应性免疫反应的相互作用。内吞 C 型凝集素受体 DC-SIGN 和 Langerin 的表达谱仅限于特定的 DC 亚型,它们已成为下一代免疫疗法和抗感染药物的主要靶标。我们使用共呈现带有芳香糖缀合物的甘露糖基的异多价脂质体和天然糖配体的方法,意外地发现了 DC-SIGN 而非 Langerin 细胞系的惊人协同作用。结合 NMR 光谱学、分子对接和分子动力学模拟的机制研究,确定了糖模拟物的第二个结合口袋。该口袋位于 DC-SIGN 的碳水化合物结合位点的远程位置,可以通过异多价亲和力增强来利用。我们进一步提供了初步证据表明,糖缀合物变构激活糖识别,从而有助于 DC-SIGN 特异性细胞靶向。我们的发现对转化和基础糖科学都具有重要意义,展示了针对 DC 的异多价靶向以提高特异性,并支持 DC-SIGN 和 CLR 的一般变构调节。

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