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精浆簇蛋白是一种新型的树突状细胞 - 特异性细胞间黏附分子 - 3 结合非整合素配体。

Semen clusterin is a novel DC-SIGN ligand.

机构信息

INSERM U653, Immunité et Cancer, Institut Curie Paris, Paris 75248, France.

出版信息

J Immunol. 2011 Nov 15;187(10):5299-309. doi: 10.4049/jimmunol.1101889. Epub 2011 Oct 17.

Abstract

The C-type lectin receptor dendritic cell-specific ICAM-3-grabbing nonintegrin (DC-SIGN) is an important player in the recognition of pathogens by dendritic cells. A plethora of pathogens including viruses, bacteria, parasites, and fungi are recognized by DC-SIGN through both mannose and fucose-containing glycans expressed on the pathogen surface. In this study, we identified semen clusterin as a novel DC-SIGN ligand. Semen clusterin, but not serum clusterin, expresses an extreme abundance of fucose-containing blood-type Ags such as Le(x) and Le(y), which are both excellent DC-SIGN ligands. These motifs enable semen clusterin to bind DC-SIGN with very high affinity (K(d) 76 nM) and abrogate the binding of HIV-1 to DC-SIGN. Depletion of clusterin from semen samples, however, did not completely prevent the ability of semen to inhibit the capture of HIV-1 by DC-SIGN, supporting that besides clusterin, semen contains other DC-SIGN ligands. Further studies are needed to characterize these ligands and define their contribution to the DC-SIGN-blocking activity mediated by semen. Clusterin is an enigmatic protein involved in a variety of physiologic and pathologic processes including inflammation, atherosclerosis, and cancer. Our results uncover an unexpected heterogeneity in the glycosylation pattern of clusterin and suggest that the expression of high concentrations of fucose-containing glycans enables semen clusterin to display a unique set of biological functions that might affect the early course of sexually transmitted infectious diseases.

摘要

C 型凝集素受体树突状细胞特异性 ICAM-3 抓取非整联蛋白(DC-SIGN)是树突状细胞识别病原体的重要参与者。包括病毒、细菌、寄生虫和真菌在内的大量病原体通过病原体表面表达的含甘露糖和岩藻糖的糖基被 DC-SIGN 识别。在这项研究中,我们鉴定了精液凝聚素作为一种新型的 DC-SIGN 配体。与血清凝聚素不同,精液凝聚素表达了丰富的含有岩藻糖的血型抗原,如 Le(x)和 Le(y),它们都是极好的 DC-SIGN 配体。这些基序使精液凝聚素能够与 DC-SIGN 以非常高的亲和力结合(K(d)76 nM),并阻断 HIV-1 与 DC-SIGN 的结合。然而,从精液样本中耗尽凝聚素并不能完全阻止精液抑制 DC-SIGN 捕获 HIV-1 的能力,这表明除了凝聚素之外,精液还含有其他 DC-SIGN 配体。需要进一步研究来表征这些配体并确定它们对精液介导的 DC-SIGN 阻断活性的贡献。凝聚素是一种神秘的蛋白质,参与多种生理和病理过程,包括炎症、动脉粥样硬化和癌症。我们的结果揭示了凝聚素糖基化模式的意外异质性,并表明高浓度含岩藻糖糖基的表达使精液凝聚素能够显示出一组独特的生物学功能,这些功能可能会影响性传播传染病的早期病程。

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