Identification of a new DC-SIGN binding pentamannoside epitope within the complex structure of Candida albicans mannan

Q1 Immunology and Microbiology Cell Surface Pub Date : 2023-07-22 DOI:10.1016/j.tcsw.2023.100109
Vadim B. Krylov , Marcos Gómez-Redondo , Arsenii S. Solovev , Dmitry V. Yashunsky , Alistair J.P. Brown , Mark H.T. Stappers , Neil A.R. Gow , Ana Ardá , Jesús Jiménez-Barbero , Nikolay E. Nifantiev
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引用次数: 1

Abstract

The dendritic cell-specific intercellular adhesion molecule-3-grabbing non-integrin (DC-SIGN) is an innate immune C-type lectin receptor that recognizes carbohydrate-based pathogen associated with molecular patterns of various bacteria, fungi, viruses and protozoa. Although a range of highly mannosylated glycoproteins have been shown to induce signaling via DC-SIGN, precise structure of the recognized oligosaccharide epitope is still unclear. Using the array of oligosaccharides related to selected fragments of main fungal antigenic polysaccharides we revealed a highly specific pentamannoside ligand of DC-SIGN, consisting of α-(1 → 2)-linked mannose chains with one inner α-(1 → 3)-linked unit. This structural motif is present in Candida albicans cell wall mannan and corresponds to its antigenic factors 4 and 13b. This epitope is not ubiquitous in other yeast species and may account for the species-specific nature of fungal recognition via DC-SIGN. The discovered highly specific oligosaccharide ligands of DC-SIGN are tractable tools for interdisciplinary investigations of mechanisms of fungal innate immunity and anti-Candida defense. Ligand- and receptor-based NMR data demonstrated the pentasaccharide-to-DC-SIGN interaction in solution and enabled the deciphering of the interaction topology.

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甘露白色念珠菌复杂结构中一个新的DC-SIGN结合五甘露糖苷表位的鉴定
树突状细胞特异性细胞间粘附分子-3-抓非整联素(DC-SIGN)是一种先天免疫c型凝集素受体,可识别与各种细菌、真菌、病毒和原生动物分子模式相关的碳水化合物为基础的病原体。尽管一系列高甘露糖基化糖蛋白已被证明可通过DC-SIGN诱导信号传导,但被识别的寡糖表位的精确结构仍不清楚。利用与主要真菌抗原性多糖片段相关的低聚糖阵列,我们发现了DC-SIGN的高度特异性五氨基糖苷配体,由α-(1→2)连接的甘露糖链和一个内部α-(1→3)连接的单元组成。该结构基序存在于白色念珠菌细胞壁甘露聚糖中,与其抗原因子4和13b相对应。这个表位在其他酵母物种中并不普遍存在,这可能解释了真菌通过DC-SIGN识别的物种特异性。所发现的DC-SIGN高特异性低聚糖配体为真菌先天免疫和抗念珠菌防御机制的跨学科研究提供了方便的工具。基于配体和受体的核磁共振数据证明了溶液中五糖与dc - sign的相互作用,并能够破译相互作用的拓扑结构。
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来源期刊
Cell Surface
Cell Surface Immunology and Microbiology-Applied Microbiology and Biotechnology
CiteScore
6.10
自引率
0.00%
发文量
18
审稿时长
49 days
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