首页> 外文期刊>European Journal of Pharmacology: An International Journal >mTOR inactivation by ROS-JNK-p53 pathway plays an essential role in Psedolaric acid B induced autophagy-dependent senescence in murine fibrosarcoma L929 cells
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mTOR inactivation by ROS-JNK-p53 pathway plays an essential role in Psedolaric acid B induced autophagy-dependent senescence in murine fibrosarcoma L929 cells

机译:ROS-JNK-P53途径的MTOR失活在鼠纤维肉瘤L929细胞中诱导诱导的自噬依赖性衰老作用于Psdolaric acid依赖性衰老

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Pseudolaric acid B (PAB), the primary biologically active compound isolated from the root bark of P. kaempferi Cordon, has been reported to exhibit anti tumor effect primarily via cell cycle arrest and apoptosis. Our previous study demonstrated that PAB triggered mitotic catastrophe in L929 cells. In addition, a small percentage of the cells undergoing mitotic catastrophe displayed an apoptotic phenotype. Therefore, we continued to investigate the fate of the other cells. The results indicated that PAB induced senescence through p19-p53-p21 and p16-Rb pathways in L929 cells. PAB also triggered autophagy via inhibiting Akt-mammalian target of rapamycin (rnTOR) activity in L929 cells. In addition, autophagy was demonstrated to reinforce senescence through regulating the senescence pathways. Thus, we focused on the detailed molecular mechanisms whereby autophagy promoted senescence. Reactive oxygen species (ROS) plays an important in autophagy and senescence. We found that PAB triggered a ROS-JNK-p53 positive feedback loop and this feedback loop played a crucial role in autophagy via repressing the activation of rnTOR. Furthermore, ROS-JNK-p53 positive feedback loop was demonstrated to regulate senescence. Tuberous sclerosis proteins1 and 2, also known as TSC1 and TSC2, form a protein complex, TSC1/TSC2 heterodimer is a downstream target of growth factor-phosphoinositide 3-kinase-Akt signaling which negatively regulates mTOR activity. Activation of mTOR by insulin or inhibition of endogenous TSC2 levels by siRNA obviously delayed PAB-induced senescence. In conclusion, mTOR inactivation by ROS-JINK-p53 pathway played an important role in autophagy-dependent senescence in PAB-treated L929 cells. (C) 2013 Published by Elsevier B.V.
机译:据报道,假芳酸B(PAB),从P.Kaempferi Quoton的根系中分离的主要生物活性化合物,主要通过细胞周期停滞和细胞凋亡表现出抗肿瘤作用。我们以前的研究表明,PAB在L929细胞中引发了有丝分裂灾难。此外,经历有丝分裂灾难的细胞的小百分比显示凋亡表型。因此,我们继续调查其他细胞的命运。结果表明,PAB在L929细胞中通过P19-P53-P21和P16-RB途径诱导衰老。 PAB还通过抑制L929细胞中的雷帕霉素(RNTOR)活性的Akt-Mammalian靶标触发自噬。此外,证明自噬通过调节衰老途径来增强衰老。因此,我们专注于详细的分子机制,从而促进衰老。反应性氧物种(ROS)在自噬和衰老中起重要。我们发现PAB触发了ROS-JNK-P53阳性反馈循环,并且通过压制RNTOR的激活,该反馈循环在自噬中发挥了至关重要的作用。此外,证明ROS-JNK-P53阳性反馈回路调节衰老。结核硬化蛋白1和2,也称为TSC1和TSC2,形成蛋白质复合物,TSC1 / TSC2异二聚体是生长因子 - 磷酸膦酸阳性3-激酶-AKT信号传导的下游靶,其负调节MTOR活性。通过胰岛素激活MTOR或通过siRNA抑制内源性TSC2水平明显延迟PAB诱导的衰老。总之,ROS-JINK-P53途径的MTOR失活在PAB处理的L929细胞中的自噬依赖性衰老中发挥着重要作用。 (c)2013年由elestvier b.v发布。

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