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Inhibition of AKT/FoxO3a signaling induced PUMA expression in response to p53-independent cytotoxic effects of H1: A derivative of tetrandrine

机译:抑制AKT / FoxO3a信号转导诱导的PUMA表达,以响应H1的p53依赖性细胞毒作用:粉防己碱的衍生物

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PUMA (p53 unregulated modulator of apoptosis), a BH3-only Bcl-2 family member, can be induced by p53-dependent and p53-independent manners. It plays an important role as regulator of cellular apoptosis. Herein, we evaluate the effects of H1 (a derivative of tetrandrine) on induction of PUMA and underlie its potential mechanism in p53-independent cytotoxic response. Anti-proliferative activity and evidently cytotoxic activity of H1 were observed in wild-type and p53 null cells. Further studies demonstrated that H1 resulted in an increase of cleaved PARP, decease of survivin and elevation of p-H2AX. What is more, H1 significantly induced PUMA expression in a concentration- and time-dependent manner and caused an increase of Bax/Bcl-2 ratio in p53 null cells. Of note, knockdown of PUMA attenuated cytotoxic activity of H1. Further studies demonstrated that inhibition of AKT/FoxO3a signaling contributed to H1-mediated PUMA induction. Targeted suppression of AKT/FoxO3a signaling by siRNA could overcome H1-mediated PUMA induction. In addition, H1 significantly suppressed NF-B activity and caused an increase of early apoptotic and late apoptotic cells, and elevated caspase-3 activity. Taken together, we found that inhibition of AKT/FoxO3a signaling may contribute to H1-mediated PUMA induction, suggesting that inhibition of AKT/FoxO3a signaling result in PUMA expression in response to p53-independent cytotoxic effects of H1.
机译:可以通过依赖p53和不依赖p53的方式诱导PUMA(p53凋亡的非调控调节剂),它是仅BH3的Bcl-2家族成员。它起细胞凋亡调节剂的重要作用。本文中,我们评估了H1(粉防己碱的衍生物)对PUMA的诱导作用,并奠定了其在不依赖p53的细胞毒性反应中的潜在机制。在野生型和p53无效细胞中观察到H1的抗增殖活性和明显的细胞毒性活性。进一步的研究表明,H1导致裂解的PARP增加,存活蛋白降低和p-H2AX升高。此外,H1以浓度和时间依赖性方式显着诱导PUMA表达,并导致p53空细胞中Bax / Bcl-2比值增加。值得注意的是,PUMA的敲低减弱了H1的细胞毒活性。进一步的研究表明,抑制AKT / FoxO3a信号有助于H1介导的PUMA诱导。 siRNA靶向抑制AKT / FoxO3a信号可以克服H1介导的PUMA诱导。此外,H1显着抑制NF-B活性,并导致早期凋亡和晚期凋亡细胞增加,以及caspase-3活性升高。两者合计,我们发现抑制AKT / FoxO3a信号可能有助于H1介导的PUMA诱导,这表明对AKT / FoxO3a信号的抑制导致PUMA表达,以响应于H1的不依赖p53的细胞毒性作用。

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