MnSOD-p53相互作用诱导的氧化应激:促肿瘤还是抗肿瘤?

Journal of signal transduction Pub Date : 2012-01-01 Epub Date: 2011-10-05 DOI:10.1155/2012/101465
Delira Robbins, Yunfeng Zhao
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引用次数: 39

摘要

活性氧(ROS)的形成是细胞代谢过程中分子氧不完全还原的结果。虽然ROS已被证明作为信号分子,但已知这些反应性分子可以作为促氧化剂,对DNA、蛋白质和脂质造成损害,随着时间的推移,可能导致疾病传播并最终导致细胞死亡。因此,恢复细胞的抗氧化保护能力已成为治疗干预的重要目标。此外,更清楚地了解肿瘤促进过程中促进ROS生成的疾病分期和分子事件,可以带来新的方法来增强癌症进展中的靶标特异性。本文将重点关注ROS生成的传统途径,以及通过肿瘤抑制因子p53以及p53与线粒体主要抗氧化酶MnSOD相互作用的新机制。此外,还讨论了p53-MnSOD相互作用的潜在后果。最后,我们强调了靶向p53-MnSOD相互作用的临床意义,并讨论了最近用于调节p53和MnSOD作为肿瘤抑制方法的治疗机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Oxidative Stress Induced by MnSOD-p53 Interaction: Pro- or Anti-Tumorigenic?

Oxidative Stress Induced by MnSOD-p53 Interaction: Pro- or Anti-Tumorigenic?

Oxidative Stress Induced by MnSOD-p53 Interaction: Pro- or Anti-Tumorigenic?

Oxidative Stress Induced by MnSOD-p53 Interaction: Pro- or Anti-Tumorigenic?

The formation of reactive oxygen species (ROS) is a result of incomplete reduction of molecular oxygen during cellular metabolism. Although ROS has been shown to act as signaling molecules, it is known that these reactive molecules can act as prooxidants causing damage to DNA, proteins, and lipids, which over time can lead to disease propagation and ultimately cell death. Thus, restoring the protective antioxidant capacity of the cell has become an important target in therapeutic intervention. In addition, a clearer understanding of the disease stage and molecular events that contribute to ROS generation during tumor promotion can lead to novel approaches to enhance target specificity in cancer progression. This paper will focus on not only the traditional routes of ROS generation, but also on new mechanisms via the tumor suppressor p53 and the interaction between p53 and MnSOD, the primary antioxidant enzyme in mitochondria. In addition, the potential consequences of the p53-MnSOD interaction have also been discussed. Lastly, we have highlighted clinical implications of targeting the p53-MnSOD interaction and discussed recent therapeutic mechanisms utilized to modulate both p53 and MnSOD as a method of tumor suppression.

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