首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Modulation of Caspase-3 activity using a redox active vitamin K3 analogue, plumbagin, as a novel strategy for radioprotection
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Modulation of Caspase-3 activity using a redox active vitamin K3 analogue, plumbagin, as a novel strategy for radioprotection

机译:使用氧化还原活性维生素K3类似物,朱锐素的Caspase-3活性的调节作为辐射防护的新策略

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Radiation induced damage to normal cells is a major shortcoming of conventional radiotherapy, which necessitates the development of novel radio-protective drugs. An ideal radio-modulator would protect normal cells while having cytotoxic effects on cancer cells. Plumbagin is a potent anti-tumour agent and has been shown to sensitize tumour cells to radiation-induced damage. In the present study, we have evaluated the radio-protective potential of plumbagin and found that it protected normal lymphocytes against radiation-induced apoptosis, but did not protect cancer cells against radiation. Plumbagin offered radioprotection even when it was added to cells after irradiation. The ability of only thiol based antioxidants to abrogate the radio-protective effects of plumbagin suggested a pivotal role of thiol groups in the radio-protective activity of plumbagin. Further, protein interaction network (PIN) analysis was used to predict the molecular targets of plumbagin. Based on the inputs from plumbagin's PIN and in light of its well-documented ability to modulate thiol groups, we proposed that plumbagin may act via modulation of caspase enzyme which harbours a critical catalytic cysteine. Indeed, plumbagin suppressed radiation-induced increase in homogenous caspase and caspase-3 activity in lymphocytes. Plumbagin also inhibited the activity of recombinant caspase-3 and mass spectrometric analysis revealed that plumbagin covalently interacts with caspase-3. Further, the in vivo radioprotective efficacy of plumbagin (single dose of 2mg/kg body weight) was demonstrated by its ability to rescue mice against radiation (7.5 Gy; Whole Body Irradiation) induced mortality. These results indicate that plumbagin prevents radiation induced apoptosis specifically in normal cells by inhibition of caspase-3 activity.
机译:辐射诱导对正常细胞的损伤是常规放射治疗的主要缺点,这需要开发新型无线电保护药物。理想的无线电调制器将保护正常细胞,同时对癌细胞具有细胞毒性作用。肠果是一种有效的抗肿瘤剂,已经证明致敏肿瘤细胞以辐射诱导的损伤。在本研究中,我们已经评估了肠果的无线电保护潜力,发现它受到辐射诱导的细胞凋亡的正常淋巴细胞,但未保护癌细胞免受辐射。肠球也提供了辐射防护,即使在照射后加入细胞。仅基于硫醇的抗氧化剂消除了肠道蛋白的无线电保护作用的能力表明硫醇基团在肠道蛋白的无线电保护活性中的关键作用。此外,使用蛋白质相互作用网络(PIN)分析来预测肠果的分子靶标。基于铅素引脚的输入以及鉴于其清洁的调节硫醇基团的能力,我们提出了肠果素可以通过调节患有临界催化半胱氨酸的胱天蛋白酶的调节。实际上,肠果抑制辐射诱导的淋巴细胞均质胱天蛋白酶和Caspase-3活性的增加。肠果素还抑制了重组胱天蛋白酶-3的活性,并且质谱分析显示,肠甘蛋白共价与Caspase-3相互作用。此外,通过其拯救针对辐射(7.5Gy;全身辐射)诱导的死亡率的能力,证明了肠果的体内辐射预防效果(单剂量为2mg / kg体重)。这些结果表明,通过抑制Caspase-3活性,肠道素可预防辐射诱导的正常细胞中的细胞凋亡。

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