首页> 外文期刊>The Journal of Urology >Paclitaxel induces apoptosis through activation of nuclear protein kinase C-delta and subsequent activation of Golgi associated Cdk1 in human hormone refractory prostate cancer.
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Paclitaxel induces apoptosis through activation of nuclear protein kinase C-delta and subsequent activation of Golgi associated Cdk1 in human hormone refractory prostate cancer.

机译:紫杉醇通过核蛋白激酶C-δ的激活以及随后在人激素难治性前列腺癌中与高尔基体相关的Cdk1的激活来诱导凋亡。

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PURPOSE: Emerging evidence shows that the translocation of apoptosis related factors on cellular organelles, such as mitochondria, endoplasmic reticulum, Golgi apparatus and nucleus, has a crucial role in the apoptotic process. We characterized the effect of paclitaxel (Sigma(R)) on Golgi involved apoptosis in human hormone refractory prostate cancer. MATERIALS AND METHODS: FACScan flow cytometric analysis was used to determine cell cycle distribution and the subG1 (apoptosis) population. Protein expression and localization were detected by Western blot, confocal microscopic examination and the sucrose gradient separation technique. RESULTS: Paclitaxel induced Golgi apparatus disassembly and interaction between Golgi complexes and mitochondria. Discontinuous sucrose gradient fractionation was used to determine and collect Golgi containing fractions. Data revealed that paclitaxel induced an increase of Cdk1 activity and DR5 expression on the Golgi complex that was associated with increased cleavage of caspase-8, a DR5 downstream factor, and caspase-3 into catalytically active fragments. Data were validated by confocal immunofluorescence microscopy. Golgi associated effects were inhibited by the Cdk1 inhibitor roscovitine (Sigma), suggesting a critical role for Golgi-Cdk1. Also, paclitaxel caused an increase of nuclear but not of Golgi associated PKC-delta activity. The selective PKC-delta inhibitor rottlerin (Sigma) completely inhibited the increase of Golgi-Cdk1 activity, suggesting that nuclear PKC-delta served as an upstream regulator of Golgi-Cdk1. CONCLUSIONS: Data suggest that paclitaxel induces nuclear translocation and activation of PKC-delta, which in turn causes Golgi-Cdk1 activation, leading to Golgi associated DR5 up-regulation, and caspase-8 and 3 activation. Golgi mediated signaling cascades facilitate mitochondria involved apoptotic pathways and at least partly explain the anticancer activity of paclitaxel action.
机译:目的:新的证据表明,凋亡相关因子在细胞器上的转运,如线粒体,内质网,高尔基体和细胞核,在凋亡过程中起着至关重要的作用。我们表征了紫杉醇对高尔基体的影响涉及人激素难治性前列腺癌的细胞凋亡。材料与方法:FACScan流式细胞仪分析用于确定细胞周期分布和subG1(凋亡)群体。通过蛋白质印迹,共聚焦显微镜检查和蔗糖梯度分离技术检测蛋白质的表达和定位。结果:紫杉醇引起高尔基体的分解以及高尔基体与线粒体之间的相互作用。不连续蔗糖梯度分级分离法用于确定和收集含高尔基体的级分。数据显示,紫杉醇在高尔基体上诱导Cdk1活性和DR5表达增加,这与caspase-8,DR5下游因子和caspase-3裂解为催化活性片段的增加有关。通过共聚焦免疫荧光显微镜验证数据。高尔基体相关的作用受到Cdk1抑制剂roscovitine(Sigma)的抑制,表明高尔基体Cdk1的关键作用。同样,紫杉醇引起核的增加,但不引起高尔基体相关的PKC-δ活性的增加。选择性PKC-δ抑制剂rottlerin(Sigma)完全抑制了Golgi-Cdk1活性的增加,表明核PKC-δ充当了Golgi-Cdk1的上游调节剂。结论:数据表明紫杉醇诱导核易位和PKC-δ活化,进而引起Golgi-Cdk1活化,从而导致高尔基体相关DR5上调以及caspase-8和3活化。高尔基体介导的信号传导级联促进线粒体参与凋亡途径,并至少部分解释了紫杉醇作用的抗癌活性。

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