Sladitschek Hanna L, Neveu Pierre A
Cell Biology and Biophysics Unit, European Molecular Biology Laboratory, Heidelberg, Germany.
Cell Biology and Biophysics Unit, European Molecular Biology Laboratory, Heidelberg, Germany
Mol Syst Biol. 2015 Dec 21;11(12):850. doi: 10.15252/msb.20156525.
A stem cell's decision to self-renew or differentiate is thought to critically depend on signaling cues provided by its environment. It is unclear whether stem cells have the intrinsic capacity to control their responsiveness to environmental signals that can be fluctuating and noisy. Using a novel single-cell microRNA activity reporter, we show that miR-142 is bimodally expressed in embryonic stem cells, creating two states indistinguishable by pluripotency markers. A combination of modeling and quantitative experimental data revealed that mESCs switch stochastically between the two miR-142 states. We find that cells with high miR-142 expression are irresponsive to differentiation signals while cells with low miR-142 expression can respond to differentiation cues. We elucidate the molecular mechanism underpinning the bimodal regulation of miR-142 as a double-negative feedback loop between miR-142 and KRAS/ERK signaling and derive a quantitative description of this bistable system. miR-142 switches the activation status of key intracellular signaling pathways thereby locking cells in an undifferentiated state. This reveals a novel mechanism to maintain a stem cell reservoir buffered against fluctuating signaling environments.
干细胞自我更新或分化的决定被认为关键取决于其所处环境提供的信号线索。目前尚不清楚干细胞是否具有内在能力来控制其对可能波动且有噪声的环境信号的反应能力。我们使用一种新型的单细胞微小RNA活性报告基因,发现miR - 142在胚胎干细胞中呈双峰表达,形成了两种用多能性标记无法区分的状态。通过建模与定量实验数据相结合的方法,我们揭示小鼠胚胎干细胞(mESCs)在两种miR - 142状态之间随机切换。我们发现,miR - 142高表达的细胞对分化信号无反应,而miR - 142低表达的细胞能够对分化信号作出反应。我们阐明了miR - 142双峰调控背后的分子机制,即miR - 142与KRAS/ERK信号之间的双负反馈回路,并对这个双稳态系统进行了定量描述。miR - 142切换关键细胞内信号通路的激活状态,从而将细胞锁定在未分化状态。这揭示了一种维持干细胞储备库以缓冲波动信号环境的新机制。