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Glutathione peroxidase-1 regulates ASK1-dependent apoptosis via interaction with TRAF2 in RIPK3-negative cancer cells

机译:谷胱甘肽过氧化物酶-1通过与RIPK3阴性癌细胞中的TRAF2相互作用来调节ASK1依赖性凋亡

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Glutathione peroxidase (GPx) is a selenocysteine-containing peroxidase enzyme that defends mammalian cells against oxidative stress, but the role of GPx signaling is poorly characterized. Here, we show that GPx type 1 (GPx1) plays a key regulatory role in the apoptosis signaling pathway. The absence of GPx1 augmented TNF-α-induced apoptosis in various RIPK3-negative cancer cells by markedly elevating the level of cytosolic H _(2)O _(2), which is derived from mitochondria. At the molecular level, the absence of GPx1 led to the strengthened sequential activation of sustained JNK and caspase-8 expression. Two signaling mechanisms are involved in the GPx1-dependent regulation of the apoptosis pathway: (1) GPx1 regulates the level of cytosolic H _(2)O _(2) that oxidizes the redox protein thioredoxin 1, blocking ASK1 activation, and (2) GPx1 interacts with TRAF2 and interferes with the formation of the active ASK1 complex. Inducible knockdown of GPx1 expression impaired the tumorigenic growth of MDA-MB-231 cells (&70% reduction, P ?=?0.0034) implanted in mice by promoting apoptosis in vivo. Overall, this study reveals the apoptosis-related signaling function of a GPx family enzyme highly conserved in aerobic organisms. Cancer: Antioxidative enzyme protects tumor cells from programmed death An antioxidative enzyme that plays a critical role in regulating whether cells program their own death offers a promising new target for anti-cancer therapies. Glutathione peroxidase-1 (GPX1) is involved in cleaning up reactive metabolic byproducts such as hydrogen peroxide inside cells. Sang Won Kang and colleagues at Ewha Womans University in Seoul, South Korea, showed that this stress-response enzyme also suppresses the induction of normal programmed cell death mechanisms in a variety of cancer cells. The researchers detailed the molecular partners involved in GPX1-mediated signaling inside cancer cells, and demonstrated that genetically reducing GPX1 expression dramatically reduces tumor growth in a mouse model of breast cancer. Drugs with similar inhibitory effects on GPX1 activity might therefore also help shrink tumors in human cancer patients.
机译:谷胱甘肽过氧化物酶(GPX)是含硒盐含有氨基的过氧化物酶,用于防止哺乳动物细胞免受氧化应激,但GPX信号传导的作用表征不佳。在这里,我们表明GPX类型1(GPX1)在凋亡信号通路中起着关键调节作用。通过显着升高来自线粒体的细胞溶质H _(2)O _(2)的水平,缺乏GPX1在各种裂纹3阴性癌细胞中产生的TNF-α-诱导的细胞凋亡。在分子水平,不存在GPX1导致加强持续的JNK和Caspase-8表达的连续激活。凋亡途径的GPX1依赖性调节涉及两种信号机制:(1)GPX1调节氧化氧化还原蛋白的细胞溶质H _(2)O _(2)的水平,阻断ASK1激活,(2 )GPX1与TRAF2相互作用,并干扰形成有源ASK1复合物的形成。 GPX1表达的诱导敲低损伤了MDA-MB-231细胞的致致瘤生长(& 70%,p?0.0034)通过促进体内细胞凋亡。总体而言,本研究揭示了GPX家族酶高度保守的凋亡相关信号功能在有氧生物中。癌症:抗氧化酶保护肿瘤细胞免受编程死亡的一种抗氧化酶,其在调节其自己的死亡的细胞程序是否为抗癌疗法提供了关键作用。谷胱甘肽过氧化物酶-1(GPX1)参与清洁反应性代谢副产物,例如细胞内过氧化氢。 Sang赢得韩国首尔ewha女人大学的康和同事表明,这种应激酶也抑制了各种癌细胞中正常程序化细胞死亡机制的诱导。研究人员详细介绍了参与GPX1介导的信号传导内的分子伴侣内部癌细胞,并证明了转基因GPX1表达显着降低了乳腺癌小鼠模型中的肿瘤生长。因此,对GPX1活性相似的药物可能还有助于人类癌症患者收缩肿瘤。

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