Su Z-Z, Lebedeva I V, Sarkar D, Emdad L, Gupta P, Kitada S, Dent P, Reed J C, Fisher P B
Department of Pathology, Herbert Irving Comprehensive Cancer Center, Columbia University Medical Center, College of Physicians and Surgeons, New York, NY 10032, USA.
Oncogene. 2006 Apr 13;25(16):2339-48. doi: 10.1038/sj.onc.1209271.
Subtraction hybridization applied to terminally differentiating human melanoma cells identified mda-7/IL-24, a cytokine belonging to the IL-10 gene superfamily. Adenoviral-mediated delivery of mda-7/IL-24 (Ad.mda-7) provokes apoptosis selectively in a wide spectrum of cancers in vitro in cell culture, in vivo in human tumor xenograft animal models and in patients with advanced carcinomas and melanomas. In human prostate cancer cells, a role for mitochondrial dysfunction and induction of reactive oxygen species in the apoptotic process has been established. Ectopic overexpression of bcl-xL and bcl-2 prevents these changes including apoptosis induction in prostate tumor cells by Ad.mda-7. We now document that this resistance to apoptosis can be reversed by treating bcl-2 family overexpressing prostate tumor cells with ionizing radiation in combination with Ad.mda-7 or purified GST-MDA-7 protein. Additionally, radiation augments apoptosis induction by mda-7/IL-24 in parental and neomycin-resistant prostate tumor cells. Radiosensitization to mda-7/IL-24 is dependent on JNK signaling, as treatment with the JNK 1/2/3 inhibitor SP600125 abolishes this effect. Considering that elevated expression of bcl-xL and bcl-2 are frequent events in prostate cancer development and progression, the present studies support the use of ionizing radiation in combination with mda-7/IL-24 as a means of augmenting the therapeutic benefit of this gene in prostate cancer, particularly in the context of tumors displaying resistance to radiation therapy owing to bcl-2 family member overexpression.
应用于终末分化人黑色素瘤细胞的消减杂交技术鉴定出了mda-7/IL-24,这是一种属于IL-10基因超家族的细胞因子。腺病毒介导的mda-7/IL-24(Ad.mda-7)传递在体外细胞培养、体内人肿瘤异种移植动物模型以及晚期癌和黑色素瘤患者中,能在多种癌症中选择性地引发凋亡。在人前列腺癌细胞中,已证实线粒体功能障碍和活性氧的诱导在凋亡过程中发挥作用。bcl-xL和bcl-2的异位过表达可防止这些变化,包括Ad.mda-7诱导前列腺肿瘤细胞凋亡。我们现在证明,通过用电离辐射联合Ad.mda-7或纯化的GST-MDA-7蛋白处理过表达bcl-2家族的前列腺肿瘤细胞,这种对凋亡的抗性可以被逆转。此外,辐射增强了mda-7/IL-24在亲本和新霉素抗性前列腺肿瘤细胞中的凋亡诱导作用。对mda-7/IL-24的放射增敏作用依赖于JNK信号传导,因为用JNK 1/2/3抑制剂SP600125处理可消除这种效应。鉴于bcl-xL和bcl-2的表达升高在前列腺癌发生和发展中是常见事件,本研究支持将电离辐射与mda-7/IL-24联合使用,作为增强该基因在前列腺癌治疗益处的一种手段,特别是在因bcl-2家族成员过表达而对放射治疗产生抗性的肿瘤背景下。