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首页> 外文期刊>The international journal of biochemistry and cell biology >Disialoganglioside GD3-synthase over expression inhibits survival and angiogenesis of pancreatic cancer cells through cell cycle arrest at S-phase and disruption of integrin-beta1-mediated anchorage
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Disialoganglioside GD3-synthase over expression inhibits survival and angiogenesis of pancreatic cancer cells through cell cycle arrest at S-phase and disruption of integrin-beta1-mediated anchorage

机译:Disialoganglioside GD3合酶的过度表达通过在S期阻止细胞周期并破坏整合素β1介导的锚定来抑制胰腺癌细胞的存活和血管生成

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Gangliosides play important roles in the development, differentiation and proliferation of mammalian cells. They bind to other cell membrane components through their terminal sialic acids. Different gangliosides influence cellular functions based on the positions and linkages of sialic acids. Expression of gangliosides mainly depends on the status of sialic acid-modulatory enzymes, such as different types of sialyltransferases and sialidases. One such sialyltransferase, disialoganglioside GD3 synthase, is specifically responsible for the production of GD3. Pancreatic ductal adenocarcinoma, making up more than 90% of pancreatic cancers, is a fatal malignancy with poor prognosis. Despite higher sialylation status, the disialoganglioside GD3 level is very low in this cancer. However, the exact status and function of this disialoganglioside is still unknown.' Here, we intended to study the intracellular mechanism of disialoganglioside GD3-induced apoptosis and its correlation with the adhesion and angiogenic pathways in pancreatic cancer. We demonstrated that disialoganglioside GD3 synthase-transfected cells showed enhanced apoptosis and it caused the arrest of these cells in the S-phase of the cell cycle. Integrins, a family of transmembrane proteins play important role in cell-cell recognition, invasion, adhesion and migration, disialoganglioside GD3 co-localised with integrin-beta1 and thereby inhibited it's downstream signalling in transfected cells. Transfected cells exhibited inhibition of cell adhesion with extracellular matrix proteins. Enhanced GD3 expression down regulated angiogenesis-regulatory proteins and inhibited epidermal growth factor/vascular endothelial growth factor-driven angiogenic cell growth in these cells. Taken together, our study provides support for the GD3-induced cell cycle arrest, disruption of integrin-beta1-mediated anchorage, inhibition of angiogenesis and thereby induced apoptosis in pancreatic cancer cells.
机译:神经节苷脂在哺乳动物细胞的发育,分化和增殖中起重要作用。它们通过末端唾液酸与其他细胞膜成分结合。不同的神经节苷脂基于唾液酸的位置和键影响细胞功能。神经节苷脂的表达主要取决于唾液酸调节酶的状态,例如不同类型的唾液酸转移酶和唾液酸酶。一种这样的唾液酸转移酶,二唾液酸神经节苷脂GD3合酶,特别负责GD3的产生。胰腺导管腺癌占胰腺癌的90%以上,是致命的恶性肿瘤,预后不良。尽管唾液酸化状态较高,但该癌症中的神经唾液酸神经节苷脂GD3水平非常低。但是,这种去唾液酸神经节苷脂的确切状态和功能仍然未知。在这里,我们打算研究双唾液酸神经节苷脂GD3诱导的细胞凋亡的细胞内机制及其与胰腺癌的粘附和血管生成途径的相关性。我们证明,去唾液酸神经节苷脂GD3合酶转染的细胞显示出增强的细胞凋亡,并导致这些细胞在细胞周期的S期停滞。整合素是一个跨膜蛋白家族,在细胞识别,侵袭,粘附和迁移中起着重要作用,双唾液酸神经节苷脂GD3与整合素β1共定位,从而抑制了它在转染细胞中的下游信号传导。转染的细胞表现出对细胞外基质蛋白的细胞粘附的抑制作用。增强的GD3表达下调了血管生成调节蛋白,并抑制了表皮生长因子/血管内皮生长因子驱动这些细胞中血管生成细胞的生长。综上所述,我们的研究为GD3诱导的细胞周期阻滞,整合素β1介导的锚定的破坏,血管生成的抑制从而诱导胰腺癌细胞的凋亡提供了支持。

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