Departure from optimal O2 level for mouse trophoblast stem cell proliferation and potency leads to most rapid AMPK activation

Yu Yang, Zhongliang Jiang, A. Bolnick, Jing Dai, E. Puscheck, D. Rappolee
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引用次数: 12

Abstract

Previous studies showed that cultured mouse trophoblast stem cells (mTSCs) have the most rapid proliferation, normal maintenance of stemness/potency, the least spontaneous differentiation, and the lowest level of stress-activated protein kinase (SAPK) when incubated at 2% O2 rather than at the traditional 20% O2 or hypoxic (0.5% and 0% O2) conditions. Switching from 2% O2 induced fast SAPK responses. Here we tested the dose response of AMP-activated protein kinase (AMPK) in its active form (pAMPK Thr172P) at O2 levels from 20–0%, and also tested whether pAMPK levels show similar rapid changes when mTSC cultures were switched from the optimal 2% O2 to other O2 conditions. There was a delayed increase in pAMPK levels ~6–8 h after switching conditions from 20% to 2%, 0.5%, or 0% O2. Altering O2 conditions from 2% to either 20%, 0.5%, or 0% led to rapid increase in pAMPK levels within 1 h, similar to the previously reported SAPK response in mTSC cells removed from 2% O2. Twelve hours of 0.5% O2 exposure led to cell program changes in terms of potency loss and suppressed biosynthesis, as indicated by levels of phosphorylated inactive acetyl CoA carboxylase (pACC). Phosphorylation of ACC was inhibited by the AMPK inhibitor Compound C. However, unlike other stressors, AMPK does not mediate hypoxia-induced potency loss in mTSCs. These results suggest an important aspect of stem cell biology, which demands rapid stress enzyme activation to cope with sudden changes in external environment, e.g., from least stressful (2% O2) to more stressful conditions.
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偏离小鼠滋养细胞干细胞增殖和效力的最佳氧水平导致最快速的AMPK激活
先前的研究表明,培养的小鼠滋养细胞干细胞(mTSCs)在2% O2条件下比传统的20% O2或低氧(0.5%和0% O2)条件下增殖最快,干细胞/效价维持正常,自发分化最少,应激激活蛋白激酶(SAPK)水平最低。从2% O2切换诱导快速SAPK响应。在这里,我们测试了amp活化蛋白激酶(AMPK)在20-0% O2水平下的活性形式(pAMPK Thr172P)的剂量反应,并测试了当mTSC培养从最佳2% O2切换到其他O2条件时,pAMPK水平是否表现出类似的快速变化。从20%到2%、0.5%或0% O2转换后6-8 h, pAMPK水平的延迟增加。将O2条件从2%改变为20%、0.5%或0%,会在1小时内导致pAMPK水平迅速增加,类似于先前报道的在2% O2条件下去除mTSC细胞的SAPK反应。12小时0.5%的O2暴露导致细胞程序的改变,在效力损失和抑制生物合成方面,如磷酸化的无活性乙酰辅酶a羧化酶(pACC)水平所示。AMPK抑制剂化合物c可抑制ACC的磷酸化。然而,与其他应激源不同,AMPK不会介导缺氧诱导的mTSCs效力丧失。这些结果表明了干细胞生物学的一个重要方面,即需要快速激活应激酶来应对外部环境的突然变化,例如,从最小压力(2% O2)到更大压力的条件。
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