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Goniothalamin-induced oxidative stress DNA damage and apoptosis via caspase-2 independent and Bcl-2 independent pathways in Jurkat T-cells

机译:菊苣素通过Jurkat T细胞中的caspase-2独立和Bcl-2独立途径诱导氧化应激DNA损伤和凋亡

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摘要

Goniothalamin (GTN) isolated from Goniothalamus sp. has been demonstrated to induce apoptosis in a variety of cancer cell lines including Jurkat T leukemia cells. However, the mechanism of GTN-induced apoptosis upstream of mitochondria is still poorly defined. In this study, GTN caused a decrease in GSH with an elevation of reactive oxygen species as early as 30 min and DNA damage as assessed by Comet assay. Analysis using topoisomerase II processing of supercoiled pBR 322 DNA showed that GTN caused DNA damage via a topoisomerase II-independent pathway suggesting that cellular oxidative stress may contribute to genotoxicity. A 12-fold increase of caspase-2 activity was observed in GTN-treated Jurkat cells after 4 h treatment and this was confirmed using Western blotting. Although the caspase-2 inhibitor Z-VDVAD-FMK inhibited the proteolytic activity of caspase-2, apoptosis ensued confirming that caspase-2 activity was not crucial for GTN-induced apoptosis. However, GTN-induced apoptosis was completely abrogated by N-acetylcysteine further confirming the role of oxidative stress. Since cytochrome c release was observed as early as 1 h without any appreciable change in Bcl-2 protein expression, we further investigated whether overexpression of Bcl-2 confers resistance in GTN-induced cytotoxicity. Using a panel of Jurkat Bcl-2 transfectants, GTN cytotoxicity was not abrogated in these cells. In conclusion, GTN induces DNA damage and oxidative stress resulting in apoptosis which is independent of both caspase-2 and Bcl-2.
机译:从Goniothalamus sp。分离的Goniothalamin(GTN)。已证明在多种癌细胞系中诱导凋亡,包括Jurkat T白血病细胞。然而,GTN诱导线粒体上游细胞凋亡的机制仍不清楚。在这项研究中,GTN引起的GSH降低与活性氧物种的升高有关,最早在30分钟内就发生了升高,并且通过Comet分析评估了DNA的损伤。使用超螺旋pBR 322 DNA的拓扑异构酶II处理进行的分析表明,GTN通过拓扑异构酶II无关的途径引起了DNA损伤,表明细胞氧化应激可能有助于遗传毒性。处理4小时后,在GTN处理的Jurkat细胞中观察到caspase-2活性增加了12倍,这已通过Western印迹得到证实。尽管caspase-2抑制剂Z-VDVAD-FMK抑制了caspase-2的蛋白水解活性,但随后发生了细胞凋亡,证实了caspase-2活性对于GTN诱导的细胞凋亡不是至关重要的。但是,N-乙酰基半胱氨酸完全消除了GTN诱导的细胞凋亡,进一步证实了氧化应激的作用。由于早在1小时就观察到细胞色素c释放,而Bcl-2蛋白表达没有任何明显变化,因此我们进一步研究了Bcl-2的过表达是否在GTN诱导的细胞毒性中赋予抗性。使用一组Jurkat Bcl-2转染子,在这些细胞中GTN的细胞毒性没有消除。总之,GTN诱导DNA损伤和氧化应激导致凋亡,而凋亡与caspase-2和Bcl-2无关。

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