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A potent mitogenic lectin from the mycelia of a phytopathogenic fungus, Rhizoctonia bataticola, with complex sugar specificity and cytotoxic effect on human ovarian cancer cells

机译:一种有效的致病性真菌凝集素,来自植物致病真菌,鼠李丝菌,对人卵巢癌细胞具有复杂的糖特异性和细胞毒性作用

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A lectin with strong mitogenic activity towards human peripheral blood mononuclear cells (PBMCs) and cytotoxic effect on human ovarian cancer cells has been purified from the mycelium of a phytopathogenic fungus, Rhizoctonia bataticola, using ion exchange chromatography and affinity chromatography on asialofetuin-Sepharose. The lectin, termed RBL, is a tetramer of 11-kDa subunits and has unique amino acid sequence at its blocked N-terminus. The purified RBL was blood group nonspecific and its hemagglutination activity was inhibited by mucin (porcine stomach), fetuin (fetal calf serum) and asialofetuin. Glycan array analysis revealed high affinity binding of RBL towards N-glycans and also the glycoproteins containing complex N-glycan chains. Interestingly, the lectin showed high affinity for glycans which are part of ovarian cancer marker CA125, a high molecular weight mucin containing high mannose and complex bisecting type N-linked glycans as well core 1 and 2 type O-glycans. RBL bound to human PBMCs eliciting strong mitogenic response, which could be blocked by mucin, fetuin and asialofetuin demonstrating the carbohydrate-mediated interaction with the cells. Analysis of the kinetics of binding of RBL to PBMCs revealed a delayed mitogenic response indicating a different signaling pathway compared to phytohemagglutinin-L. RBL had a significant cytotoxic effect on human ovarian cancer cell line, PA-1.
机译:使用离子交换层析法和亲和层析法在脱唾液酸铁蛋白-Sepharose上从植物病原性真菌鼠李丝菌的菌丝体中纯化了对人外周血单核细胞(PBMC)具有强促有丝分裂活性并对人卵巢癌细胞具有细胞毒作用的凝集素。称为RBL的凝集素是11-kDa亚基的四聚体,并且在其封闭的N末端具有独特的氨基酸序列。纯化的RBL是血型非特异性的,其血凝活性被粘蛋白(猪胃),胎球蛋白(胎牛血清)和去唾液酸胎球蛋白抑制。聚糖阵列分析显示RBL对N-聚糖以及含有复杂N-聚糖链的糖蛋白具有高亲和力。有趣的是,该凝集素对作为卵巢癌标志物CA125的一部分的聚糖显示出高亲和力,CA125是一种含有高甘露糖和复杂的二等分型N-连接聚糖以及1型和2型核心O型聚糖的高分子量粘蛋白。 RBL绑定到人类PBMC引起强烈的促有丝分裂反应,这可以被粘蛋白,胎球蛋白和去唾液酸胎球蛋白阻断,这表明糖介导的与细胞的相互作用。 RBL与PBMC结合动力学的分析表明,与植物血凝素-L相比,促有丝分裂反应延迟,表明信号通路不同。 RBL对人卵巢癌细胞系PA-1具有明显的细胞毒性作用。

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