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CNL–Clitocybe nebularis Lectin—The Fungal GalNAcβ1-4GlcNAc-Binding Lectin

机译:CNL–星云藻凝集素—真菌GalNAcβ1-4GlcNAc结合凝集素

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摘要

lectin (CNL) is present in fruiting bodies of clouded agaric along with several similar isolectins that are all small and stable proteins. It is a beta-trefoil type lectin forming homodimers that are essential for its functionality. It binds specifically , ′-diacetyllactosediamine (GalNAcβ1-4GlcNAc, LacDiNac) and human blood group A determinant-containing glycan epitopes. Its most probable function is to defend fruiting bodies against predators and parasites. In addition, an endogenous regulatory function is possible for CNL, as indicated by its interaction with fungal protease inhibitors sharing the beta-trefoil fold. CNL is toxic to insects, nematodes and amoebae, as well as to leukemic T-cell lines. Bivalent carbohydrate binding is essential for the toxicity of CNL, against both invertebrates and cancer-derived cell lines. In addition, CNL exhibits potent immunostimulation of human dendritic cells, resulting in a strong T helper cell type 1 response. Based on its unique characteristics, CNL is a promising candidate for applications in human and veterinary medicine as well as in agriculture, for plant protection.
机译:凝集素(CNL)与几种类似的异凝集素一起存在于混浊的木耳子实体中,它们都是小而稳定的蛋白质。它是形成其功能必不可少的β-三叶型凝集素形成同源二聚体。它特异性结合'-二乙酰基乳糖二胺(GalNAcβ1-4GlcNAc,LacDiNac)和人类血液A决定簇的聚糖表位。它最可能的功能是保护子实体免受食肉动物和寄生虫的侵害。另外,如CNL与共享β-三叶折叠的真菌蛋白酶抑制剂的相互作用所表明,CNL可能具有内源性调节功能。 CNL对昆虫,线虫和变形虫以及白血病T细胞系均具有毒性。二价碳水化合物结合对于CNL对无脊椎动物和癌症衍生细胞系的毒性至关重要。此外,CNL对人树突状细胞表现出强力的免疫刺激作用,从而导致强烈的1型T辅助细胞应答。基于其独特的特性,CNL是在人类和兽医学以及农业中用于植物保护的应用的有前途的候选者。

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