Department of Bioengineering, University of California San Diego, San Diego, CA, USA.
Sanford Burnham Prebys Medical Discovery Institute, La Jolla, CA, USA.
Sci Adv. 2021 Mar 17;7(12). doi: 10.1126/sciadv.abf7412. Print 2021 Mar.
Understanding the mechanisms of myogenesis in human induced pluripotent stem cells (hiPSCs) is a prerequisite to achieving patient-specific therapy for diseases of skeletal muscle. hiPSCs of different origin show distinctive kinetics and ability to differentiate into myocytes. To address the unique cellular and temporal context of hiPSC differentiation, we perform a longitudinal comparison of the transcriptomic profiles of three hiPSC lines that display differential myogenic specification, one robust and two blunted. We detail temporal differences in mechanisms that lead to robust myogenic specification. We show gene expression signatures of putative cell subpopulations and extracellular matrix components that may support myogenesis. Furthermore, we show that targeted knockdown of at the outset of differentiation leads to improved myogenic specification in blunted hiPSC lines. Our study suggests that β-catenin transcriptional cofactors mediate cross-talk between multiple cellular processes and exogenous cues to facilitate specification of hiPSCs to mesoderm lineage, leading to robust myogenesis.
理解人类诱导多能干细胞(hiPSC)中的成肌机制是实现骨骼肌疾病患者特异性治疗的前提。不同来源的 hiPSC 显示出独特的动力学和分化为肌细胞的能力。为了解决 hiPSC 分化的独特细胞和时间背景,我们对三种显示出不同成肌特异性的 hiPSC 系进行了纵向比较,其中一种较强,两种较弱。我们详细描述了导致强大成肌特异性的机制中的时间差异。我们展示了可能支持成肌的假定细胞亚群和细胞外基质成分的基因表达特征。此外,我们还表明,在分化开始时靶向敲低 会导致较弱的 hiPSC 系中成肌特异性的改善。我们的研究表明,β-连环蛋白转录共因子介导多个细胞过程和外源性信号之间的串扰,以促进 hiPSC 向中胚层谱系的特化,从而导致强大的成肌作用。