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mtROS-mediated Akt/AMPK/mTOR pathway was involved in Copper-induced autophagy and it attenuates Copper-induced apoptosis in RAW264.7 mouse monocytes

机译:MTROS介导的AKT / AMPK / MTOR途径参与了铜诱导的自噬并且衰减了Raw264.7小鼠单核细胞中的铜诱导的细胞凋亡

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摘要

Copper (Cu) is a trace element necessary in animals as well as human beings. However, excessive Cu is toxic to immunocytes, but the precise mechanism is largely unclear so far. This work was conducted aiming to examine the Cu-mediated autophagy mechanism together with its role in Cu toxicology in RAW264.7 cells. Here, we demonstrated that CuSO4 reduced the cell viability depending on its dose. CuSO4 could obviously increase autophagy in RAW264.7 cells. According to the obtained results, CuSO4 induced autophagy through Akt/AMPK/mTOR pathway which characterized by down regulation of p-Akt (Ser473)/Akt, p-mTOR/mTOR, p-ULK1(Ser757)/ULK1 and subsequent up-regulation of p-AMPKα/AMPKα and p-ULK1(Ser555)/ULK1. Furthermore, CuSO4 significantly induced the production of mitochondrial reactive oxygen species (mtROS). In addition, CuSO4-mediated apoptosis and autophagy might be suppressed through suppressing mtROS generation by exposure to Mito-TEMPO. Intriguingly, autophagy promotion with rapamycin could decrease the apoptosis and the inhibition of autophagy with knock down Atg5 could enhance the apoptosis induced by CuSO4. Moreover, our results suggested that mtROS is the original cause in CuSO4-induced apoptosis and autophagy. Additionally, CuSO4 induced autophagy through mtROS-dependent Akt/AMPK/mTOR signalling pathwayin RAW264.7 cells. Moreover, autophagy activation might potentially generate a protection mechanism for improving CuSO4-induced RAW264.7 cell apoptosis.
机译:铜(Cu)是动物和人类中必需的痕量元素。然而,过量的Cu对免疫细胞有毒,但到目前为止,确切机制很大程度上不清楚。进行该工作旨在将Cu介导的自噬机制与其在Raw264.7细胞中的Cu毒理学中的作用一起进行检查。在这里,我们证明了Cuso4根据其剂量降低了细胞活力。 CUSO4显然可以在RAW264.7细胞中增加自噬。根据所得的结果,CusO4通过AKT / AMPK / MTOR途径诱导自噬,其特征在于P-AKT(SER473)/ AKT,P-MTOR / MTOR,P-ULK1(SER757)/ ULK1和随后的上调P-AMPKα/AMPKα和P-ULK1(SER555)/ ULK1。此外,CusO4显着诱导了线粒体反应性氧(MTROS)的生产。此外,通过暴露于Mito-Tempo,可以通过抑制MTROS产生来抑制CUSO4介导的凋亡和自噬。有趣的是,用雷帕霉素的自噬促进可以降低细胞凋亡,并且随着爆震的抑制ATG5可以增强Cuso4诱导的细胞凋亡。此外,我们的结果表明MTROS是CUSO4诱导的细胞凋亡和自噬的原因。此外,Cuso4通过MTROS依赖性AKT / AMPK / MTOR信号传导途径诱导自噬raw264.7细胞。此外,自噬激活可能可能产生改善CUSO4诱导的RAW264.7细胞凋亡的保护机制。

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