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揭示人类胚胎干细胞对基因沉默的代谢和应激反应。

Uncovering the Metabolic and Stress Responses of Human Embryonic Stem Cells to Gene Silencing.

机构信息

Research Centre for Advanced Biochemistry and Molecular Biology, Department of Experimental and Clinical Medicine, University Magna Graecia, 88100 Catanzaro, Italy.

Center of Interdepartmental Services (CIS), "Magna Graecia" University of Catanzaro, 88100 Catanzaro, Italy.

出版信息

Cells. 2021 Sep 15;10(9):2431. doi: 10.3390/cells10092431.

Abstract

Embryonic stem cells (ESCs) are pluripotent cells with indefinite self-renewal ability and differentiation properties. To function properly and maintain genomic stability, ESCs need to be endowed with an efficient repair system as well as effective redox homeostasis. In this study, we investigated different aspects involved in ESCs' response to iron accumulation following stable knockdown of the ferritin heavy chain (FTH1) gene, which encodes for a major iron storage protein with ferroxidase activity. Experimental findings highlight unexpected and, to a certain extent, paradoxical results. If on one hand FTH1 silencing does not correlate with increased ROS production nor with changes in the redox status, strengthening the concept that hESCs are extremely resistant and, to a certain extent, even refractory to intracellular iron imbalance, on the other, the differentiation potential of hESCs seems to be affected and apoptosis is observed. Interestingly, we found that FTH1 silencing is accompanied by a significant activation of the nuclear factor (erythroid-derived-2)-like 2 (Nrf2) signaling pathway and pentose phosphate pathway (PPP), which crosstalk in driving hESCs antioxidant cascade events. These findings shed new light on how hESCs perform under oxidative stress, dissecting the molecular mechanisms through which Nrf2, in combination with PPP, counteracts oxidative injury triggered by FTH1 knockdown.

摘要

胚胎干细胞(ESCs)是具有无限自我更新能力和分化特性的多能细胞。为了正常发挥功能和维持基因组稳定性,ESCs 需要具备高效的修复系统以及有效的氧化还原平衡。在这项研究中,我们研究了铁蓄积对稳定敲低铁蛋白重链(FTH1)基因的 ESCs 响应的不同方面,FTH1 基因编码具有亚铁氧化酶活性的主要铁储存蛋白。实验结果突出了出乎意料的、在某种程度上甚至矛盾的结果。一方面,FTH1 沉默与 ROS 产生增加或氧化还原状态变化无关,这加强了 hESCs 对细胞内铁失衡具有极强抗性、在某种程度上甚至具有抗药性的概念,另一方面,hESCs 的分化潜力似乎受到影响并观察到细胞凋亡。有趣的是,我们发现 FTH1 沉默伴随着核因子(红细胞衍生 2)样 2(Nrf2)信号通路和戊糖磷酸途径(PPP)的显著激活,这两条途径相互作用,驱动 hESCs 的抗氧化级联反应。这些发现揭示了 hESCs 在氧化应激下的表现方式,剖析了 Nrf2 与 PPP 结合,抵消 FTH1 敲低引发的氧化损伤的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c688/8469604/80d1a66bb0d2/cells-10-02431-g001.jpg

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