首页> 外文期刊>The Journal of biological chemistry >Ganglioside GD3 Enhances Adhesion Signals and Augments Malignant Properties of Melanoma Cells by Recruiting Integrins to Glycolipid-enriched Microdomains
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Ganglioside GD3 Enhances Adhesion Signals and Augments Malignant Properties of Melanoma Cells by Recruiting Integrins to Glycolipid-enriched Microdomains

机译:Ganglioside Gd3通过募集整合富含糖脂的微摩粉来增强粘附信号并增强黑素瘤细胞的恶性性质

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Ganglioside GD3 is widely expressed in human malignant melanoma cell lines and tumors. Previously, we reported that GD3+ cells show stronger tyrosine phosphorylation of focal adhesion kinase (FAK), p130Cas, and paxillin when treated with fetal calf serum than GD3? cells. In this study, we analyzed the changes in the signals mediated by the interaction between integrins and extracellular matrices (ECM) to clarify how GD3 enhances cell signals in the vicinity of the cell membrane. An adhesion assay with a real time cell electronic sensing system revealed that GD3+ cells had stronger adhesion to all extracellular matrices examined. In particular, GD3+ cells attached more strongly to collagen type I and type IV than controls. Correspondingly, they showed stronger tyrosine phosphorylation of FAK and paxillin during adhesion to collagen type I. In the floating pattern of detergent extracts, a high level of integrin β1 was found in glycolipid-enriched microdomain (GEM)/rafts in GD3+ cells before adhesion, whereas a smaller amount of integrin β1 was detected in the GEM/rafts of controls. Some phosphorylated forms of FAK as well as total FAK were found in GEM/rafts during cell adhesion only in GD3+ cells. Another signal consisting of integrin-linked kinase/Akt was also activated during adhesion more strongly in GD3+ cells than in controls. In double stained GD3+ cells, GD3 and integrin β1 co-localized at the focal adhesion with a punctate pattern. All these results suggested that integrins assembled and formed a cluster in GEM/rafts, leading to the enhanced signaling and malignant properties under GD3 expression.
机译:神经节苷脂GD3广泛表达于人体恶性黑色素瘤细胞系和肿瘤中。以前,我们报道了GD3 +细胞显示术胎体粘附激酶(FAK),P130CAS和Paxillin的较强酪氨酸磷酸化,当用胎牛血清的血清处理而不是GD3?细胞。在该研究中,我们分析了通过整联蛋白和细胞外基质(ECM)之间的相互作用介导的信号的变化,以阐明GD3如何增强细胞膜附近的细胞信号。具有实时细胞电子传感系统的粘附测定表明,GD3 +细胞对所检查的所有细胞外基质具有更强的粘附性。特别地,GD3 +细胞对胶原I型和型IV型比对照更强。相应地,它们在粘附到胶原蛋白I型粘附期间,它们表现出强烈的酪氨酸磷酸化的FAK和Paxillin。在洗涤剂提取物的浮动图案中,在粘附前的GD3 +细胞中,在糖脂富集的微米蛋白(GEM)/筏中发现了高水平的整合蛋白β1,虽然在对照的宝石/筏中检测到较少量的整合蛋白β1。在GEM /筏中仅在GD3 +细胞中,在GEM /筏中发现了一些磷酸化形式的FAK以及总FAK。另一种由整合蛋白连接的激酶/ aKT组成的信号在GD3 +细胞中的粘附期间也比对照在GD3 +细胞中更强烈地激活。在双染色的GD3 +细胞中,GD3和整合素β1与点状图案共定为局灶性粘附。所有这些结果表明,整体素组装并形成了宝石/筏中的簇,导致GD3表达下的增强的信号和恶性性能。

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