首页> 外文期刊>Japanese Journal of Cancer Research >Enhanced cell killing by overexpression of dominant-negative phosphatidylinositol 3-kinase subunit, Deltap85, following genotoxic stresses.
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Enhanced cell killing by overexpression of dominant-negative phosphatidylinositol 3-kinase subunit, Deltap85, following genotoxic stresses.

机译:遗传毒性胁迫后,显性负性磷脂酰肌醇3激酶亚基Deltap85的过表达增强了细胞杀伤力。

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摘要

Phosphatidylinositol 3-kinase (PI3-K) is a heterodimer of a regulatory subunit, p85, and a catalytic subunit, p110. A number of previous reports showed that PI3-K functions in diverse cellular phenomena such as cell proliferation, glucose catabolism, cell adhesion, and vesicle transport. It is also well known that a survival signal from the receptor tyrosine kinases utilizes Akt via PI3-K to protect cells from apoptosis. To examine the role of PI3-K in cellular sensitivity to genotoxic stresses such as cisplatin and ultraviolet (UV), we introduced deletion type p85 (Dp85) into two human glioblastoma cell lines (T98G and A172) and one melanoma cell line (G361). The Deltap85 works in a dominant-negative fashion on PI3-K activity by disrupting its p85 / p110 interaction. In all three transfected cell lines, the overexpression of Deltap85 rendered the cells markedly more sensitive to these DNA-damaging stresses than the cells transfected with the vector alone. Apoptosis was vigorously induced in cells overexpressing Dp85 following the treatment. The present results imply that PI3-K plays a critical role in determining cellular sensitivity to genotoxic stresses in human cancer cells, and that disruption of the p85 / p110 interaction of PI3-K may be a potential molecular target for developing a novel strategy for cancer treatment.
机译:磷脂酰肌醇3-激酶(PI3-K)是调节亚基p85和催化亚基p110的异二聚体。先前的许多报告表明,PI3-K在多种细胞现象中起作用,例如细胞增殖,葡萄糖分解代谢,细胞粘附和囊泡转运。还众所周知,来自受体酪氨酸激酶的存活信号通过PI3-K利用Akt保护细胞免于凋亡。为了检查PI3-K在细胞对遗传毒性应激(例如顺铂和紫外线(UV))的敏感性中的作用,我们将缺失型p85(Dp85)引入了两种人类胶质母细胞瘤细胞系(T98G和A172)和一种黑色素瘤细胞系(G361) 。 Deltap85通过破坏其p85 / p110相互作用以显性负性方式作用于PI3-K活性。在所有三种转染的细胞系中,Deltap85的过表达使细胞对这些破坏DNA的压力比仅用载体转染的细胞更为敏感。处理后在过表达Dp85的细胞中强烈诱导凋亡。目前的结果表明,PI3-K在确定细胞对人类癌细胞遗传毒性应激的敏感性中起关键作用,而PI3-K的p85 / p110相互作用的破坏可能是开发新型癌症策略的潜在分子靶标。治疗。

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