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Effect of O-Glycosylation and Sialylation Inhibitors on Classical NLS-Dependent Nuclear Protein Import in HT29-MTX Human Colon Cancer Cells

机译:O-糖基化和唾液酸化抑制剂对HT29-MTX人结肠癌细胞经典NLS依赖核蛋白进口的影响。

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Glycosylation, including O-linked, mucin type, has an import role in the function and activity of many proteins, particularly those that are secreted or transcellular. Previous studies have indicated that mucin-type O-linked glycans may also be carried by intracellular proteins such as the stress-related protein Orp150 that is involved in classical nuclear localization sequence (NLS)-dependent nuclear protein import. This study investigated the influence on NLS-dependent nuclear protein import of the potent O-glycosylation inhibitor, Benzyl-GalNAc; the sialylation inhibitor, 5’CDP; the Golgi proton pump inhibitor, bafilomycin; and the pro-inflammatory cytokine, TNFα. Treatment of the mucus-secreting human colon cancer HT29-MTX cells with each of these agents caused a global increase of the cellular core 1 carbohydrate structure (galactose β1,3 N-acetylgalactosamine), one of the precursor structures of the complex mucin-type glycans. Benzyl-GalNAc treatment also increased the expression of the core 1 structure on cell surface glycoconjugates and caused a generalised decrease in sialylation. Hsp70 nuclear translocation upon heat stress, a process that is mediated by the classical NLS pathway, was, however, not affected by pre-treatment of the cells with any of these agents. This suggests that O-linked and/or sialylated glycans are unlikely to be involved in the classical NLS-dependent protein import mechanism.
机译:糖基化,包括与O相连的粘蛋白类型,在许多蛋白质的功能和活性中起着重要的作用,尤其是分泌或跨细胞的蛋白质。先前的研究表明,粘蛋白型O型连接聚糖也可能被细胞内蛋白携带,例如与压力相关的蛋白Orp150,该蛋白与经典核定位序列(NLS)依赖的核蛋白输入有关。这项研究调查了有效的O-糖基化抑制剂苄基-GalNAc对NLS依赖性核蛋白进口的影响。唾液酸化抑制剂5’CDP;高尔基体质子泵抑制剂巴氟霉素;和促炎细胞因子TNFα。用这些试剂中的每一种处理分泌粘液的人结肠癌HT29-MTX细胞,导致细胞核1碳水化合物结构(半乳糖β1,3N-乙酰半乳糖胺)的整体增加,这是复杂粘蛋白类型的前体结构之一。聚糖。苄基-GalNAc处理还增加了细胞表面糖缀合物上core 1结构的表达,并导致唾液酸化的普遍降低。然而,热应激下Hsp70核易位是经典NLS途径介导的过程,但不受任何这些试剂预处理细胞的影响。这表明O-连接的和/或唾液酸化的聚糖不太可能参与经典的NLS依赖性蛋白输入机制。

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