Zhu Tongbo, Chen Lihua, Du Wei, Tsuji Takanori, Chen Changyan
Department of Radiation Oncology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Genes Cancer. 2010 Feb;1(2):142-51. doi: 10.1177/1947601909360989.
Synthetic lethal interaction between oncogenic Ha-ras and loss of PKC has been demonstrated. Recently, the authors reported that the concurrent knockdown of PKC α and β, via upregulating PKC δ, sensitizes cells with aberrant Ras signaling to apoptosis. As a continuation of the study, using shRNA, the authors demonstrate that loss of PKC δ causes a lethal reaction in NIH3T3/Hras or prostate cancer DU145 cells that overexpress JNK. In this apoptotic process, PKC α and β are upregulated and then associated with RACK1 (an adaptor for activated PKC) and JNK. Immunoblotting analysis shows that JNK is phosphorylated, accompanied with caspase 8 cleavage. The inhibition of JNK abrogates this apoptotic process triggered by PKC δ knockdown. Interestingly, without blocking PKC δ, the concurrent overexpression of wt- or CAT-PKC α and β is insufficient to induce apoptosis in the cells. Together with the authors' previous findings, the data suggest that PKC α/β and δ function oppositely to maintain a balance that supports cells expressing v-ras to survive and prevents them from being eliminated through oncogenic stress-induced apoptosis.
致癌性Ha-ras与蛋白激酶C(PKC)缺失之间的合成致死相互作用已得到证实。最近,作者报道通过上调PKCδ,同时敲低PKCα和β,可使具有异常Ras信号传导的细胞对凋亡敏感。作为该研究的延续,作者使用短发夹RNA(shRNA)证明,PKCδ缺失会在过表达JNK的NIH3T3/Hras或前列腺癌DU145细胞中引发致死反应。在这个凋亡过程中,PKCα和β被上调,然后与RACK1(活化PKC的衔接蛋白)和JNK相关联。免疫印迹分析表明JNK被磷酸化,同时伴有半胱天冬酶8的切割。抑制JNK可消除由PKCδ敲低引发的这种凋亡过程。有趣的是,在不阻断PKCδ的情况下,野生型或组成型激活型(CAT)PKCα和β的同时过表达不足以诱导细胞凋亡。结合作者之前的研究结果,这些数据表明PKCα/β和δ的功能相反,以维持一种平衡,支持表达v-ras的细胞存活,并防止它们因致癌应激诱导的凋亡而被清除。