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使用三功能甘露糖基化抗原对树突状细胞C型凝集素受体DC-SIGN和TLR7进行系统性双靶点作用

Systematic Dual Targeting of Dendritic Cell C-Type Lectin Receptor DC-SIGN and TLR7 Using a Trifunctional Mannosylated Antigen.

作者信息

Li Rui-Jun Eveline, Hogervorst Tim P, Achilli Silvia, Bruijns Sven C, Arnoldus Tim, Vivès Corinne, Wong Chung C, Thépaut Michel, Meeuwenoord Nico J, van den Elst Hans, Overkleeft Herman S, van der Marel Gijs A, Filippov Dmitri V, van Vliet Sandra J, Fieschi Franck, Codée Jeroen D C, van Kooyk Yvette

机构信息

Department of Molecular Cell Biology and Immunology, Cancer Center Amsterdam, Amsterdam Infection and Immunity Institute, Amsterdam Universitair Medische Centra, Vrije Universiteit Amsterdam, Amsterdam, Netherlands.

Department of Bio-organic Synthesis, Faculty of Science, Leiden Institute of Chemistry, Leiden University, Leiden, Netherlands.

出版信息

Front Chem. 2019 Oct 4;7:650. doi: 10.3389/fchem.2019.00650. eCollection 2019.

Abstract

Dendritic cells (DCs) are important initiators of adaptive immunity, and they possess a multitude of Pattern Recognition Receptors (PRR) to generate an adequate T cell mediated immunity against invading pathogens. PRR ligands are frequently conjugated to tumor-associated antigens in a vaccination strategy to enhance the immune response toward such antigens. One of these PPRs, DC-SIGN, a member of the C-type lectin receptor (CLR) family, has been extensively targeted with Lewis structures and mannose glycans, often presented in multivalent fashion. We synthesized a library of well-defined mannosides (mono-, di-, and tri-mannosides), based on known "high mannose" structures, that we presented in a systematically increasing number of copies ( = 1, 2, 3, or 6), allowing us to simultaneously study the effect of mannoside configuration and multivalency on DC-SIGN binding via Surface Plasmon Resonance (SPR) and flow cytometry. Hexavalent presentation of the clusters showed the highest binding affinity, with the hexa-α1,2-di-mannoside being the most potent ligand. The four highest binding hexavalent mannoside structures were conjugated to a model melanoma gp100-peptide antigen and further equipped with a Toll-like receptor 7 (TLR7)-agonist as adjuvant for DC maturation, creating a trifunctional vaccine conjugate. Interestingly, DC-SIGN affinity of the mannoside clusters did not directly correlate with antigen presentation enhancing properties and the α1,2-di-mannoside cluster with the highest binding affinity in our library even hampered T cell activation. Overall, this systematic study has demonstrated that multivalent glycan presentation can improve DC-SIGN binding but enhanced binding cannot be directly translated into enhanced antigen presentation and the sole assessment of binding affinity is thus insufficient to determine further functional biological activity. Furthermore, we show that well-defined antigen conjugates combining two different PRR ligands can be generated in a modular fashion to increase the effectiveness of vaccine constructs.

摘要

树突状细胞(DCs)是适应性免疫的重要启动者,它们拥有多种模式识别受体(PRR),以产生针对入侵病原体的适当的T细胞介导的免疫。在疫苗接种策略中,PRR配体经常与肿瘤相关抗原偶联,以增强针对此类抗原的免疫反应。这些PRR之一,DC-SIGN,是C型凝集素受体(CLR)家族的成员,已被广泛地用Lewis结构和甘露糖聚糖作为靶点,这些结构通常以多价形式呈现。我们基于已知的“高甘露糖”结构合成了一个明确的甘露糖苷文库(单甘露糖苷、二甘露糖苷和三甘露糖苷),并以系统增加的拷贝数(=1、2、3或6)呈现,这使我们能够通过表面等离子体共振(SPR)和流式细胞术同时研究甘露糖苷构型和多价性对DC-SIGN结合的影响。簇的六价呈现显示出最高的结合亲和力,其中六-α1,2-二甘露糖苷是最有效的配体。四种结合亲和力最高的六价甘露糖苷结构与模型黑色素瘤gp100肽抗原偶联,并进一步配备Toll样受体7(TLR7)激动剂作为DC成熟的佐剂,从而创建了一种三功能疫苗偶联物。有趣的是,甘露糖苷簇的DC-SIGN亲和力与抗原呈递增强特性并不直接相关,并且我们文库中结合亲和力最高的α1,2-二甘露糖苷簇甚至阻碍了T细胞活化。总体而言,这项系统研究表明,多价聚糖呈现可以改善DC-SIGN结合,但增强的结合不能直接转化为增强的抗原呈递,因此仅评估结合亲和力不足以确定进一步的功能生物学活性。此外,我们表明,可以以模块化方式生成结合两种不同PRR配体的明确抗原偶联物,以提高疫苗构建体的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a662/6787163/9a430f9820bb/fchem-07-00650-g0006.jpg

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