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A Soluble Fucose-Specific Lectin from Aspergillus fumigatus Conidia - Structure Specificity and Possible Role in Fungal Pathogenicity

机译:烟曲霉分生孢子中一种特定的岩藻糖可溶性凝集素-结构特异性及其在真菌致病性中的可能作用

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摘要

Aspergillus fumigatus is an important allergen and opportunistic pathogen. Similarly to many other pathogens, it is able to produce lectins that may be involved in the host-pathogen interaction. We focused on the lectin AFL, which was prepared in recombinant form and characterized. Its binding properties were studied using hemagglutination and glycan array analysis. We determined the specificity of the lectin towards l-fucose and fucosylated oligosaccharides, including α1-6 linked core-fucose, which is an important marker for cancerogenesis. Other biologically relevant saccharides such as sialic acid, d-mannose or d-galactose were not bound. Blood group epitopes of the ABH and Lewis systems were recognized, LeY being the preferred ligand among others. To provide a correlation between the observed functional characteristics and structural basis, AFL was crystallized in a complex with methyl-α,l-selenofucoside and its structure was solved using the SAD method. Six binding sites, each with different compositions, were identified per monomer and significant differences from the homologous AAL lectin were found. Structure-derived peptides were utilized to prepare anti-AFL polyclonal antibodies, which suggested the presence of AFL on the Aspergillus’ conidia, confirming its expression in vivo. Stimulation of human bronchial cells by AFL led to IL-8 production in a dose-dependent manner. AFL thus probably contributes to the inflammatory response observed upon the exposure of a patient to A. fumigatus. The combination of affinity to human epithelial epitopes, production by conidia and pro-inflammatory activity is remarkable and shows that AFL might be an important virulence factor involved in an early stage of A. fumigatus infection.
机译:烟曲霉是一种重要的过敏原和机会致病菌。与许多其他病原体相似,它能够产生可能与宿主-病原体相互作用有关的凝集素。我们专注于凝集素AFL,它以重组形式制备并进行了表征。使用血凝和聚糖阵列分析研究了其结合特性。我们确定了凝集素对l-岩藻糖和岩藻糖基化寡糖(包括α1-6连接的岩藻糖)的特异性,这是致癌作用的重要标志。未结合其他生物学相关的糖,例如唾液酸,d-甘露糖或d-半乳糖。识别了ABH和Lewis系统的血型表位,其中Le Y 是首选的配体。为了提供所观察到的功能特性和结构基础之间的相关性,将AFL与甲基-α,1-硒代葡糖苷复合形成结晶,并使用SAD方法解析其结构。每个单体鉴定出六个结合位点,每个具有不同的组成,并且发现与同源AAL凝集素有显着差异。利用结构衍生的肽制备抗AFL多克隆抗体,该抗体提示AFL在曲霉分生孢子上存在,从而证实了其在体内的表达。 AFL刺激人支气管细胞导致IL-8的产生呈剂量依赖性。因此,AFL可能有助于患者暴露于烟曲霉后观察到的炎症反应。对人上皮表位的亲和力,分生孢子的产生和促炎活性的结合非常显着,表明AFL可能是参与烟曲霉早期感染的重要毒力因子。

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