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首页> 外文期刊>Apoptosis: An international journal on programmed cell death >A molecular mechanism for mimosine-induced apoptosis involving oxidative stress and mitochondrial activation
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A molecular mechanism for mimosine-induced apoptosis involving oxidative stress and mitochondrial activation

机译:含羞草碱诱导的细胞凋亡涉及氧化应激和线粒体活化的分子机制。

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摘要

Mimosine, a non-protein amino acid, is mainly known for its action as a reversible inhibitor of DNA replication and, therefore, has been widely used as a cell cycle synchronizing agent. Recently, it has been shown that mimosine also induces apoptosis, as mainly reflected in its ability to elicit characteristic nuclear changes. The present study elucidates the mechanism underlying mimosine's apoptotic effects, using the U-937 leukemia cell line. We now demonstrate that in isolated rat liver mitochondria, mimosine induces mitochondrial swelling that can be inhibited by cyclosporine A, indicative of permeability transition (PT) mega-channel opening. Mimosine-induced apoptosis was accompanied by formation of hydrogen peroxide and a decrease in reduced glutathione levels. The apoptotic process was partially inhibited by cyclosporine A and substantially blocked by the antioxidant N-acetylcysteine, suggesting an essential role for reactive oxygen species formation during the apoptotic processes. The apoptosis induced by mimosine was also accompanied by a decrease in mitochondrial membrane potential, cytochrome c release and caspase 3 and 9 activation. Our results thus imply that mimosine activates apoptosis through mitochondrial activation and formation of H2O2, both of which play functional roles in the induction of cell death.
机译:非蛋白质氨基酸Mimosine主要以其作为DNA复制的可逆抑制剂的作用而闻名,因此已广泛用作细胞周期同步剂。最近,已显示含羞草还诱导凋亡,这主要反映在其引起特征性核变化的能力上。本研究使用U-937白血病细胞系阐明了含羞草的凋亡作用的潜在机制。我们现在证明,在离体大鼠肝线粒体中,含羞草碱可诱导线粒体肿胀,可被环孢霉素A抑制,这表明通透性转变(PT)大通道开放。含羞草碱诱导的细胞凋亡伴随有过氧化氢的形成和谷胱甘肽水平降低的减少。凋亡过程受到环孢菌素A的部分抑制,并被抗氧化剂N-乙酰半胱氨酸基本上阻断,这表明在凋亡过程中活性氧形成的重要作用。含羞草碱诱导的细胞凋亡还伴随着线粒体膜电位的降低,细胞色素c的释放以及caspase 3和9的激活。因此,我们的结果暗示含羞草碱通过线粒体激活和H2O2的形成来激活细胞凋亡,这两者在诱导细胞死亡中均发挥功能性作用。

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