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PKCη promotes senescence induced by oxidative stress and chemotherapy

机译:PKC η促进氧化应激和化学疗法诱导的衰老

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Senescence is characterized by permanent cell-cycle arrest despite continued viability and metabolic activity, in conjunction with the secretion of a complex mixture of extracellular proteins and soluble factors known as the senescence-associated secretory phenotype (SASP). Cellular senescence has been shown to prevent the proliferation of potentially tumorigenic cells, and is thus generally considered a tumor suppressive process. However, some SASP components may act as pro-tumorigenic mediators on premalignant cells in the microenvironment. A limited number of studies indicated that protein kinase C (PKC) has a role in senescence, with different isoforms having opposing effects. It is therefore important to elucidate the functional role of specific PKCs in senescence. Here we show that PKC η , an epithelial specific and anti-apoptotic kinase, promotes senescence induced by oxidative stress and DNA damage. We further demonstrate that PKC η promotes senescence through its ability to upregulate the expression of the cell cycle inhibitors p21Cip1 and p27Kip1 and enhance transcription and secretion of interleukin-6 (IL-6). Moreover, we demonstrate that PKC η creates a positive loop for reinforcing senescence by increasing the transcription of both IL-6 and IL-6 receptor, whereas the expression of IL-8 is specifically suppressed by PKC η . Thus, the presence/absence of PKC η modulates major components of SASP. Furthermore, we show that the human polymorphic variant of PKC η , 374I, that exhibits higher kinase activity in comparison to WT-374V, is also more effective in IL-6 secretion, p21Cip1 expression and the promotion of senescence, further supporting a role for PKC η in senescence. As there is now considerable interest in senescence activation/elimination to control tumor progression, it is first crucial to reveal the molecular regulators of senescence. This will improve our ability to develop new strategies to harness senescence as a potential cancer therapy in the future.
机译:尽管具有持续的活力和代谢活性,但衰老的特征是永久性细胞周期停滞,并伴有细胞外蛋白质和可溶性因子(称为衰老相关分泌表型)(SASP)的复杂混合物的分泌。已经表明细胞衰老阻止了潜在致瘤细胞的增殖,因此通常被认为是肿瘤抑制过程。但是,某些SASP组分可能在微环境中充当恶变前细胞上的促肿瘤原介质。有限的研究表明,蛋白激酶C(PKC)在衰老中起作用,不同的同工型具有相反的作用。因此,重要的是阐明特定PKC在衰老中的功能作用。在这里,我们显示PKCη是一种上皮特异性抗凋亡激酶,可促进氧化应激和DNA损伤诱导的衰老。我们进一步证明,PKCη通过上调细胞周期抑制剂p21 Cip1 和p27 Kip1 的表达并增强白介素6(IL)的转录和分泌而促进衰老。 -6)。此外,我们证明了PKCη通过增加IL-6和IL-6受体的转录而创建了一个增强衰老的正环,而IL-8的表达受到了PKCη的特异性抑制。因此,PKCη的存在/缺失调节SASP的主要成分。此外,我们显示,与WT-374V相比,具有更高激酶活性的PKCη374I人多态性变体在IL-6分泌,p21 Cip1 表达和促进中也更有效。衰老,进一步支持PKCη在衰老中的作用。由于现在对控制肿瘤进展的衰老活化/消除有相当大的兴趣,因此首先重要的是揭示衰老的分子调节剂。这将提高我们开发新策略以利用衰老作为未来潜在癌症治疗方法的能力。

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