RASSF2的缺失增强肺癌细胞的致瘤性并赋予化疗耐药性。

Molecular biology international Pub Date : 2012-01-01 Epub Date: 2012-05-24 DOI:10.1155/2012/705948
Jennifer Clark, Jessica Freeman, Howard Donninger
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引用次数: 20

摘要

RASSF2是K-Ras的一种新的促凋亡效应因子,在多种原发性肿瘤中经常通过启动子甲基化而失活。RASSF2失活可增强k - ras介导的转化,RASSF2过表达可抑制肿瘤细胞生长。在本研究中,我们证实了RASSF2和K-Ras形成内源性复合物,验证了RASSF2是真正的K-Ras效应物。我们采用RNAi方法来确定RASSF2失活对含有致癌K-Ras的肺癌细胞转化表型的影响。RASSF2表达缺失导致更具侵袭性的表型,其特征是细胞增殖和侵袭增强,细胞粘附降低,以不依赖锚定方式生长的能力和细胞形态改变。这种细胞转化表型的增强与激活AKT水平的增加相关,表明RASSF2可以调节Ras信号通路。RASSF2表达的缺失也导致对紫杉醇和顺铂这两种治疗肺癌的一线药物产生耐药性。因此,我们已经证明,RASSF2的失活,这一在原发性肿瘤中经常发生的过程,增强了活化的K-Ras的转化潜力,我们的数据表明,RASSF2可能是肺癌表观遗传治疗的新候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Loss of RASSF2 Enhances Tumorigencity of Lung Cancer Cells and Confers Resistance to Chemotherapy.

Loss of RASSF2 Enhances Tumorigencity of Lung Cancer Cells and Confers Resistance to Chemotherapy.

Loss of RASSF2 Enhances Tumorigencity of Lung Cancer Cells and Confers Resistance to Chemotherapy.

Loss of RASSF2 Enhances Tumorigencity of Lung Cancer Cells and Confers Resistance to Chemotherapy.

RASSF2 is a novel pro-apoptotic effector of K-Ras that is frequently inactivated in a variety of primary tumors by promoter methylation. Inactivation of RASSF2 enhances K-Ras-mediated transformation and overexpression of RASSF2 suppresses tumor cell growth. In this study, we confirm that RASSF2 and K-Ras form an endogenous complex, validating that RASSF2 is a bona fide K-Ras effector. We adopted an RNAi approach to determine the effects of inactivation of RASSF2 on the transformed phenotype of lung cancer cells containing an oncogenic K-Ras. Loss of RASSF2 expression resulted in a more aggressive phenotype that was characterized by enhanced cell proliferation and invasion, decreased cell adhesion, the ability to grow in an anchorage-independent manner and cell morphological changes. This enhanced transformed phenotype of the cells correlated with increased levels of activated AKT, indicating that RASSF2 can modulate Ras signaling pathways. Loss of RASSF2 expression also confers resistance to taxol and cisplatin, two frontline therapeutics for the treatment of lung cancer. Thus we have shown that inactivation of RASSF2, a process that occurs frequently in primary tumors, enhances the transforming potential of activated K-Ras and our data suggests that RASSF2 may be a novel candidate for epigenetic-based therapy in lung cancer.

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