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H-RAS和K-RAS的激活形式对PI3K、PDK-1和AKT的膜结合以及治疗性激酶抑制剂对细胞存活的影响具有不同的调节作用。

Activated forms of H-RAS and K-RAS differentially regulate membrane association of PI3K, PDK-1, and AKT and the effect of therapeutic kinase inhibitors on cell survival.

作者信息

Carón Rubén W, Yacoub Adly, Li Min, Zhu Xiaoyu, Mitchell Clint, Hong Young, Hawkins William, Sasazuki Takehiko, Shirasawa Senji, Kozikowski Alan P, Dennis Philip A, Hagan Michael P, Grant Steven, Dent Paul

机构信息

Department of Radiation Oncology, Medical College of Virginia, Virginia Commonwealth University, 401 College Street, Richmond, VA 23298-0058, USA.

出版信息

Mol Cancer Ther. 2005 Feb;4(2):257-70.

Abstract

The abilities of mutated active RAS proteins to modulate cell survival following exposure to ionizing radiation and small molecule kinase inhibitors were examined. Homologous recombination in HCT116 cells to delete the single allele of K-RAS D13 resulted in a cell line that exhibited an approximately 75% reduction in basal extracellular signal-regulated kinase 1/2, AKT, and c-jun-NH2-kinase 1/2 activity. Transfection of cells lacking K-RAS D13 with H-RAS V12 restored extracellular signal-regulated kinase 1/2 and AKT activity to basal levels but did not restore c-jun-NH2-kinase 1/2 phosphorylation. In cells expressing H-RAS V12, radiation caused prolonged intense activation of AKT. Inhibition of H-RAS V12 function, blockade of phosphatidylinositol 3-kinase (PI3K) function using small interfering RNA/small-molecule inhibitors, or expression of dominant-negative AKT abolished radiation-induced AKT activation, and radiosensitized these cells. Inhibition of PI3K function did not significantly radiosensitize parental HCT116 cells. Inhibitors of the AKT PH domain including perifosine, SH-(5, 23-25) and ml-(14-16) reduced the plating efficiency of H-RAS V12 cells in a dose-dependent fashion. Inhibition of AKT function using perifosine enhanced radiosensitivity in H-RAS V12 cells, whereas the SH and ml series of AKT PH domain inhibitors failed to promote radiation toxicity. In HCT116 H-RAS V12 cells, PI3K, PDK-1, and AKT were membrane associated, whereas in parental cells expressing K-RAS D13, only PDK-1 was membrane bound. In H-RAS V12 cells, membrane associated PDK-1 was phosphorylated at Y373/376, which was abolished by the Src family kinase inhibitor PP2. Inhibition of PDK-1 function using the PH domain inhibitor OSU-03012 or using PP2 reduced the plating efficiency of H-RAS V12 cells and profoundly increased radiosensitivity. OSU-03012 and PP2 did not radiosensitize and had modest inhibitory effects on plating efficiency in parental cells. A small interfering RNA generated against PDK1 also radiosensitized HCT116 cells expressing H-RAS V12. Collectively, our data argue that molecular inhibition of AKT and PDK-1 signaling enhances the radiosensitivity of HCT116 cells expressing H-RAS V12 but not K-RAS D13. Small-molecule inhibitory agents that blocked stimulated and/or basal PDK-1 and AKT function profoundly reduced HCT116 cell survival but had variable effects at enhancing tumor cell radiosensitivity.

摘要

研究了突变的活性RAS蛋白在暴露于电离辐射和小分子激酶抑制剂后调节细胞存活的能力。HCT116细胞中的同源重组删除K-RAS D13的单等位基因,产生了一个细胞系,该细胞系的基础细胞外信号调节激酶1/2、AKT和c-jun-NH2-激酶1/2活性降低了约75%。用H-RAS V12转染缺乏K-RAS D13的细胞,可将细胞外信号调节激酶1/2和AKT活性恢复到基础水平,但不能恢复c-jun-NH2-激酶1/2的磷酸化。在表达H-RAS V12的细胞中,辐射导致AKT长时间强烈激活。抑制H-RAS V12功能、使用小干扰RNA/小分子抑制剂阻断磷脂酰肌醇3-激酶(PI3K)功能或表达显性负性AKT可消除辐射诱导的AKT激活,并使这些细胞对辐射敏感。抑制PI3K功能对亲本HCT116细胞的辐射敏感性没有显著影响。包括哌立福新、SH-(5, 23-25)和ml-(14-16)在内的AKT PH结构域抑制剂以剂量依赖的方式降低了H-RAS V12细胞的接种效率。使用哌立福新抑制AKT功能可增强H-RAS V12细胞的辐射敏感性,而SH和ml系列的AKT PH结构域抑制剂未能促进辐射毒性。在HCT116 H-RAS V12细胞中,PI3K、PDK-1和AKT与膜相关,而在表达K-RAS D13的亲本细胞中,只有PDK-1与膜结合。在H-RAS V12细胞中,膜相关的PDK-1在Y373/376处磷酸化,这被Src家族激酶抑制剂PP2消除。使用PH结构域抑制剂OSU-03012或使用PP2抑制PDK-1功能可降低H-RAS V12细胞的接种效率并显著增加辐射敏感性。OSU-03012和PP2对亲本细胞没有辐射增敏作用,对接种效率有适度的抑制作用。针对PDK1产生的小干扰RNA也使表达H-RAS V12的HCT116细胞对辐射敏感。总的来说,我们的数据表明,分子抑制AKT和PDK-1信号可增强表达H-RAS V12而非K-RAS D13的HCT116细胞的辐射敏感性。阻断刺激和/或基础PDK-1和AKT功能的小分子抑制剂可显著降低HCT116细胞的存活率,但在增强肿瘤细胞辐射敏感性方面有不同的效果。

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