Stem Cell and Regenerative Biology, Genome Institute of Singapore/A-STAR, Singapore 138672.
Genome and Gene expression Data Analysis Division, Bioinformatics Institute, Singapore 138671.
Genome Res. 2017 Nov;27(11):1783-1794. doi: 10.1101/gr.223313.117. Epub 2017 Oct 13.
The stochastic dynamics and regulatory mechanisms that govern differentiation of individual human neural precursor cells (NPC) into mature neurons are currently not fully understood. Here, we used single-cell RNA-sequencing (scRNA-seq) of developing neurons to dissect/identify NPC subtypes and critical developmental stages of alternative lineage specifications. This study comprises an unsupervised, high-resolution strategy for identifying cell developmental bifurcations, tracking the stochastic transcript kinetics of the subpopulations, elucidating regulatory networks, and finding key regulators. Our data revealed the bifurcation and developmental tracks of the two NPC subpopulations, and we captured an early (24 h) transition phase that leads to alternative neuronal specifications. The consequent up-regulation and down-regulation of stage- and subpopulation-specific gene groups during the course of maturation revealed biological insights with regard to key regulatory transcription factors and lincRNAs that control cellular programs in the identified neuronal subpopulations.
目前,调控个体人神经前体细胞(NPC)分化为成熟神经元的随机动力学和调控机制尚不完全清楚。在这里,我们使用单细胞 RNA 测序(scRNA-seq)对发育中的神经元进行分析/鉴定 NPC 亚型和替代谱系特化的关键发育阶段。这项研究包括一种用于识别细胞发育分支、跟踪亚群随机转录动力学、阐明调控网络和寻找关键调控因子的无监督、高分辨率策略。我们的数据揭示了两个 NPC 亚群的分支和发育轨迹,并捕获了一个早期(24 小时)的过渡阶段,导致了替代的神经元特化。在成熟过程中,阶段和亚群特异性基因群的随后上调和下调揭示了关键调控转录因子和 lincRNAs 的生物学见解,这些转录因子和 lincRNAs控制着所鉴定的神经元亚群中的细胞程序。