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首页> 外文期刊>Cell stem cell >Reconstructed Single-Cell Fate Trajectories Define Lineage Plasticity Windows during Differentiation of Human PSC-Derived Distal Lung Progenitors
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Reconstructed Single-Cell Fate Trajectories Define Lineage Plasticity Windows during Differentiation of Human PSC-Derived Distal Lung Progenitors

机译:重建的单细胞命运轨迹在分化的人PSC衍生的远端肺祖细胞分化期间定义谱系可塑性窗口

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摘要

Alveolar epithelial type 2 cells (AEC2s) are the facultative progenitors responsible for maintaining lung alveoli throughout life but are difficult to isolate from patients. Here, we engineer AEC2s from human pluripotent stem cells (PSCs) in vitro and use time-series single-cell RNA sequencing with lentiviral bar-coding to profile the kinetics of their differentiation in comparison to primary fetal and adult AEC2 benchmarks. We observe bifurcating cell-fate trajectories as primordial lung progenitors differentiate in vitro, with some progeny reaching their AEC2 fate target, while others diverge to alternative non-lung endo-dermal fates. We develop a Continuous State Hidden-Markov model to identify the timing and type of signals, such as overexuberant Wnt responses, that induce some early multipotent NKX2-1(+) progenitors to lose lung fate. Finally, we find that this initial developmental plasticity is regulatable and subsides over time, ultimately resulting in PSC-derived AEC2s that exhibit a stable phenotype and nearly limitless self-renewal capacity.
机译:肺泡上皮型2细胞(AEC2S)是负责在整个寿命期间维持肺肺泡但难以从患者分离的致力祖细胞。在这里,我们在体外工程从人类多能干细胞(PSC)中的AEC2S和使用时序单细胞RNA测序与慢病毒条形码进行分析,与原发性胎儿和成人AEC2基准相比,它们的分化动力学。我们观察分叉细胞 - 命运轨迹作为原始肺祖细胞分化体外分化,一些后代达到其AEC2命运靶标,而其他后则往返于替代的非肺内皮序列。我们开发一个连续的州隐马尔可夫模型,以识别信号的定时和类型,例如过度抑制的WNT反应,诱导一些早期的多能NKX2-1(+)祖细胞失去肺命运。最后,我们发现这种初步的发育可塑性是可调节的并且随着时间的推移,最终导致PSC衍生的AEC2,其表现出稳定的表型和几乎无限的自我更新能力。

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