Echeverri-Ruiz Nancy, Haynes Tracy, Landers Joseph, Woods Justin, Gemma Michael J, Hughes Michael, Del Rio-Tsonis Katia
Department of Biology and Center for Visual Sciences at Miami University (CVSMU), Oxford, OH 45056, USA.
Department of Statistics and Statistical Consulting Center, Miami University, Oxford, OH 45056, USA.
Dev Biol. 2018 Jan 15;433(2):394-403. doi: 10.1016/j.ydbio.2017.08.013. Epub 2017 Dec 25.
The use of antioxidants in tissue regeneration has been studied, but their mechanism of action is not well understood. Here, we analyze the role of the antioxidant N-acetylcysteine (NAC) in retina regeneration. Embryonic chicks are able to regenerate their retina after its complete removal from retinal stem/progenitor cells present in the ciliary margin (CM) of the eye only if a source of exogenous factors, such as FGF2, is present. This study shows that NAC modifies the redox status of the CM, initiates self-renewal of the stem/progenitor cells, and induces regeneration in the absence of FGF2. NAC works as an antioxidant by scavenging free radicals either independently or through the synthesis of glutathione (GSH), and/or by reducing oxidized proteins through a thiol disulfide exchange activity. We dissected the mechanism used by NAC to induce regeneration through the use of inhibitors of GSH synthesis and the use of other antioxidants with different biochemical structures and modes of action, and found that NAC induces regeneration through its thiol disulfide exchange activity. Thus, our results provide, for the first time, a biochemical basis for induction of retina regeneration. Furthermore, NAC induction was independent of FGF receptor signaling, but dependent on the MAPK (pErk1/2) pathway.
抗氧化剂在组织再生中的应用已得到研究,但其作用机制尚未完全明确。在此,我们分析了抗氧化剂N - 乙酰半胱氨酸(NAC)在视网膜再生中的作用。仅当存在外源性因子来源(如FGF2)时,胚胎小鸡在其视网膜从眼睫状缘(CM)中的视网膜干细胞/祖细胞完全移除后才能再生视网膜。本研究表明,NAC改变了CM的氧化还原状态,启动了干细胞/祖细胞的自我更新,并在没有FGF2的情况下诱导再生。NAC作为抗氧化剂,可通过独立清除自由基或通过合成谷胱甘肽(GSH),和/或通过硫醇二硫键交换活性还原氧化蛋白来发挥作用。我们通过使用GSH合成抑制剂以及使用具有不同生化结构和作用方式的其他抗氧化剂,剖析了NAC诱导再生所使用的机制,发现NAC通过其硫醇二硫键交换活性诱导再生。因此,我们的结果首次为诱导视网膜再生提供了生化基础。此外,NAC诱导独立于FGF受体信号传导,但依赖于MAPK(pErk1/2)途径。