Albihn Ami, Lovén Jakob, Ohlsson Johan, Osorio Lyda M, Henriksson Marie
Microbiology and Tumor Biology Center, Karolinska Institutet, S-171 77 Stockholm, Sweden.
J Cell Biochem. 2006 Aug 15;98(6):1597-614. doi: 10.1002/jcb.20816.
The c-Myc transcription factor is a key regulator of cell proliferation, differentiation, and apoptosis. While deregulation of myc induces programmed cell death, defects in the apoptotic program facilitate Myc-driven tumor development. We have treated c-Myc inducible mouse cells and rat fibroblasts with different c-myc status with cytotoxic drugs to explore the effect of c-Myc on drug-induced apoptosis. We found that c-Myc overexpression potentiated etoposide-, doxorubicin-, and cisplatin-induced cell death in mouse fibroblasts. In addition, these drugs provoked a strong apoptotic response in c-Myc-expressing cells, but a weak apoptosis in c-myc null Rat1 cells. In contrast, staurosporine-induced apoptosis was c-Myc-independent, confirming a functional apoptotic pathway in c-myc null cells. Apoptosis was paralleled by c-Myc-dependent Bax-activation after etoposide and doxorubicin treatment, but not after cisplatin administration. All three drugs induced higher caspase activation in c-Myc expressing cells than in c-myc null cells. Furthermore, etoposide treatment of c-Myc expressing cells resulted in PKCdelta cleavage, while inhibition of PKCdelta reduced etoposide-induced apoptosis and prevented Bax activation. Taken together, these findings suggest that Bax and caspase activation, together with PKCdelta signaling are involved in c-Myc-dependent etoposide-induced apoptosis.
c-Myc转录因子是细胞增殖、分化和凋亡的关键调节因子。虽然myc失调会诱导程序性细胞死亡,但凋亡程序中的缺陷会促进Myc驱动的肿瘤发展。我们用细胞毒性药物处理了具有不同c-myc状态的c-Myc诱导型小鼠细胞和大鼠成纤维细胞,以探究c-Myc对药物诱导凋亡的影响。我们发现,c-Myc过表达增强了依托泊苷、阿霉素和顺铂诱导的小鼠成纤维细胞死亡。此外,这些药物在表达c-Myc的细胞中引发了强烈的凋亡反应,但在c-myc缺失的Rat1细胞中引发的凋亡较弱。相比之下,星形孢菌素诱导的凋亡不依赖于c-Myc,这证实了c-myc缺失细胞中存在功能性凋亡途径。依托泊苷和阿霉素处理后,凋亡与c-Myc依赖的Bax激活平行,但顺铂给药后则不然。所有三种药物在表达c-Myc的细胞中诱导的半胱天冬酶激活均高于c-myc缺失细胞。此外,对表达c-Myc的细胞进行依托泊苷处理会导致PKCδ裂解,而抑制PKCδ会减少依托泊苷诱导的凋亡并阻止Bax激活。综上所述,这些发现表明,Bax和半胱天冬酶激活以及PKCδ信号传导参与了c-Myc依赖的依托泊苷诱导的凋亡。