Joniova Jaroslava, Misuth Matus, Sureau Franck, Miskovsky Pavol, Nadova Zuzana
Department of Biophysics, Faculty of Science, University of Pavol Jozef Safarik, Jesenna 5, 041 54, Kosice, Slovak Republic.
Apoptosis. 2014 Dec;19(12):1779-92. doi: 10.1007/s10495-014-1043-7.
In order to explain the contribution of the protein kinase Cα (PKCα) in apoptosis induced by photo-activation of hypericin (Hyp), a small interfering RNA was used for post-transcriptional silencing of pkcα gene expression. We have evaluated the influence of Hyp photo-activation on cell death in non-transfected and transfected (PKCα(-)) human glioma cells (U-87 MG). No significant differences were detected in cell survival between non-transfected and transfected PKCα(-) cells. However, the type of cell death was notably affected by silencing the pkcα gene. Photo-activation of Hyp strongly induced apoptosis in non-transfected cells, but the level of necrotic cells in transfected PKCα(-) cells increased significantly. The differences in cell death after Hyp photo-activation are demonstrated by changes in: (i) reactive oxygen species production, (ii) Bcl-2 phosphorylation on Ser70 (pBcl-2(Ser70)), (iii) cellular distributions of pBcl-2(Ser70) and (iv) cellular distribution of endogenous anti-oxidant glutathione and its co-localization with mitochondria. In summary, we suggest that post-transcriptional silencing of the pkcα gene and the related decrease of PKCα level considerably affects the anti-apoptotic function and the anti-oxidant function of Bcl-2. This implies that PKCα, as Bcl-2 kinase, indirectly protects U-87 MG cells against oxidative stress and subsequent cell death.
为了解释蛋白激酶Cα(PKCα)在金丝桃素(Hyp)光激活诱导的细胞凋亡中的作用,使用小干扰RNA对pkcα基因表达进行转录后沉默。我们评估了Hyp光激活对未转染和转染(PKCα(-))的人胶质瘤细胞(U-87 MG)细胞死亡的影响。在未转染和转染PKCα(-)的细胞之间未检测到细胞存活率的显著差异。然而,细胞死亡类型受到pkcα基因沉默的显著影响。Hyp的光激活在未转染细胞中强烈诱导细胞凋亡,但在转染PKCα(-)的细胞中坏死细胞水平显著增加。Hyp光激活后细胞死亡的差异通过以下变化得以证明:(i)活性氧生成,(ii)Ser70位点的Bcl-2磷酸化(pBcl-2(Ser70)),(iii)pBcl-2(Ser70)的细胞分布,以及(iv)内源性抗氧化剂谷胱甘肽的细胞分布及其与线粒体的共定位。总之,我们认为pkcα基因的转录后沉默以及PKCα水平的相关降低会显著影响Bcl-2的抗凋亡功能和抗氧化功能。这意味着PKCα作为Bcl-2激酶,间接保护U-87 MG细胞免受氧化应激和随后的细胞死亡。