首页> 美国卫生研究院文献>Autophagy >Activation of the MAPK11/12/13/14 (p38 MAPK) pathway regulates the transcription of autophagy genes in response to oxidative stress induced by a novel copper complex in HeLa cells
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Activation of the MAPK11/12/13/14 (p38 MAPK) pathway regulates the transcription of autophagy genes in response to oxidative stress induced by a novel copper complex in HeLa cells

机译:MAPK11 / 12/13/14(p38 MAPK)途径的激活可调节自噬基因的转录以响应HeLa细胞中新型铜络合物诱导的氧化应激

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摘要

Transition metal copper (Cu) can exist in oxidized or reduced states in cells, leading to cytotoxicity in cancer cells through oxidative stress. Recently, copper complexes are emerging as a new class of anticancer compounds. Here, we report that a novel anticancer copper complex (HYF127c/Cu) induces oxidative stress-dependent cell death in cancer cells. Further, transcriptional analysis revealed that oxidative stress elicits broad transcriptional changes of genes, in which autophagy-related genes are significantly changed in HYF127c/Cu-treated cells. Consistently, autophagy was induced in HYF127c/Cu-treated cells and inhibitors of autophagy promoted cell death induced by HYF127c/Cu. Further analysis identified that the MAPK11/12/13/14 (formerly known as p38 MAPK) pathway was also activated in HYF127c/Cu-treated cells. Meanwhile, the MAPK11/12/13/14 inhibitor SB203580 downregulated autophagy by inhibiting the transcription of the autophagy genes MAP1LC3B, BAG3, and HSPA1A, and promoted HYF127c/Cu-induced cell death. These data suggest that copper-induced oxidative stress will induce protective autophagy through transcriptional regulation of autophagy genes by activation of the MAPK11/12/13/14 pathway in HeLa cells.
机译:过渡金属铜(Cu)可以以氧化或还原状态存在于细胞中,通过氧化应激导致癌细胞毒性。最近,铜络合物正在作为一类新的抗癌化合物出现。在这里,我们报告一种新型的抗癌铜络合物(HYF127c / Cu)在癌细胞中诱导氧化应激依赖性细胞死亡。此外,转录分析表明,氧化应激引起基因的广泛转录变化,其中自噬相关基因在HYF127c / Cu处理的细胞中发生了显着变化。一致地,在HYF127c / Cu处理的细胞中诱导自噬,并且自噬抑制剂促进由HYF127c / Cu诱导的细胞死亡。进一步的分析表明,在HYF127c / Cu处理的细胞中,MAPK11 / 12/13/14(以前称为p38 MAPK)途径也被激活。同时,MAPK11 / 12/13/14抑制剂SB203580通过抑制自噬基因MAP1LC3B,BAG3和HSPA1A的转录来下调自噬,并促进HYF127c / Cu诱导的细胞死亡。这些数据表明铜诱导的氧化应激将通过激活HeLa细胞中的MAPK11 / 12/13/14途径,通过自噬基因的转录调控来诱导保护性自噬。

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