首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Ganglioside GD3 promotes cell growth and invasion through p130Cas and paxillin in malignant melanoma cells.
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Ganglioside GD3 promotes cell growth and invasion through p130Cas and paxillin in malignant melanoma cells.

机译:神经节苷脂GD3通过恶性黑色素瘤细胞中的p130Cas和paxillin促进细胞生长和侵袭。

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摘要

Although ganglioside GD3 levels are highly elevated in malignant melanomas, the role of GD3 in melanomas' malignant properties has not been clearly shown. To investigate this problem, we genetically generated GD3-positive (GD3+) transfectant cells from a GD3-negative (GD3-) mutant line SK-MEL-28-N1 and analyzed the phenotypic changes in the transfected cells. GD3+ cells showed markedly increased cell growth and invasive characteristics. Two bands that underwent stronger tyrosine phosphorylation in GD3+ cell lines than in controls after treatment with FCS were found with molecular masses of 130 and 68 kDa. They were identified as p130Cas and paxillin by sequential immunoprecipitation. Their roles in cell growth and invasion were analyzed with a small interfering RNA (siRNA) approach. Cell growth, as analyzed by BrdUrd uptake, was strongly suppressed in GD3+ cells to near the levels of GD3- cells when treated with siRNA for p130Cas but not when treated with siRNA for paxillin. However, treatment with siRNAs of either p130Cas or paxillin resulted in the marked suppression of the invasive activity of GD3+ cells almost to the levels of control cells. These results suggested that these two molecules function as effectors of GD3-mediated signaling, leading to such malignant properties as rapid cell growth and invasion.
机译:尽管神经节苷脂GD3在恶性黑色素瘤中高度升高,但尚不清楚GD3在黑色素瘤的恶性性质中的作用。要研究此问题,我们从GD3阴性(GD3-)突变株SK-MEL-28-N1遗传生成了GD3阳性(GD3 +)转染细胞,并分析了转染细胞的表型变化。 GD3 +细胞显示出明显的细胞生长和侵袭特性。用FCS处理后,发现GD3 +细胞系中的酪氨酸磷酸化强度比对照组强的两条带的分子量分别为130和68 kDa。通过顺序免疫沉淀法将它们鉴定为p130Cas和paxillin。用小干扰RNA(siRNA)方法分析了它们在细胞生长和侵袭中的作用。用BrdUrd摄取分析的细胞生长,当用siRNA处理p130Cas时,在GD3 +细胞中被强烈抑制到GD3-细胞水平,而当用siRNA处理paxillin时则没有。但是,用p130Cas或paxillin的siRNA进行治疗会导致GD3 +细胞的侵袭活性受到明显抑制,几乎达到了对照细胞的水平。这些结果表明,这两个分子充当GD3介导的信号传导的效应子,导致诸如细胞快速生长和侵袭的恶性特性。

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