Wei Zong-Bo, Miao Xiang-Yang, Yang Ming-Qi, Luo Xu-Gang
Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100094, China.
Yi Chuan. 2008 Jul;30(7):831-7. doi: 10.3724/sp.j.1005.2008.00831.
MnSOD, which is an important oxygen free radical scavenger in organisms, has an effect to resist oxidative stress and tumor. The expression and regulation of MnSOD gene is a complicated process, which includes many kinds of transcription factors, cell signal molecules and cell signal pathways. It refers to three aspects including transcription regulation, post-transcription regulation and translation regulation. Transcription regulation is the primary step for MnSOD gene expression and plays a key role during the expression of MnSOD gene. The activity of transcription factors, which controls MnSOD gene expression, such as SP-1, AP-2, AP-1, NF-kB and so on, can be changed in the course of transcription regulation. Drugs and metalions can also affect those transcription factors' activity. Furthermore some genes mutation and depletion also have an influence on the activity of those transcription factors. Post-transcription regulation is in a way of changing the stability of mRNA and its translation. Translation regulation is a process to regulate edition, modification, binding to metalion and site-specific of MnSOD polypeptide. Recently a kind of manganese trafficking factor for mitochondrial MnSOD called MTMl which is very important for activation of MnSOD has been discovered. Here, we review the advances in this field with an emphasis on transcription regulation and translation regulation of MnSOD gene. And at last, we discussed the prospect of MnSOD gene expression and regulation.
锰超氧化物歧化酶(MnSOD)是生物体内重要的氧自由基清除剂,具有抵抗氧化应激和肿瘤的作用。MnSOD基因的表达与调控是一个复杂的过程,涉及多种转录因子、细胞信号分子和细胞信号通路,包括转录调控、转录后调控和翻译调控三个方面。转录调控是MnSOD基因表达的首要步骤,在MnSOD基因表达过程中起关键作用。在转录调控过程中,控制MnSOD基因表达的转录因子如SP-1、AP-2、AP-1、NF-κB等的活性会发生变化。药物和金属离子也会影响这些转录因子的活性。此外,一些基因突变和缺失也会对这些转录因子的活性产生影响。转录后调控通过改变mRNA的稳定性及其翻译来实现。翻译调控是一个调节MnSOD多肽的编辑、修饰、与金属离子结合及位点特异性的过程。最近发现了一种对线粒体MnSOD很重要的锰转运因子MTM1,它对MnSOD的激活非常重要。在此,我们综述该领域的研究进展,重点关注MnSOD基因的转录调控和翻译调控。最后,我们探讨了MnSOD基因表达与调控的前景。