Institute for Stem Cell Biology and Regenerative Medicine, GKVK Campus, Bellary Road, Bengaluru 560065, India.
SASTRA University, Thirumalaisamudram, Thanjavur 613401, India.
Development. 2018 Sep 20;145(18):dev160945. doi: 10.1242/dev.160945.
Head and trunk muscles have discrete embryological origins and are governed by distinct regulatory programmes. Whereas the developmental route of trunk muscles from mesoderm is well studied, that of head muscles is ill defined. Here, we show that, unlike the myogenic trunk paraxial mesoderm, head mesoderm development is independent of the T/Tbx6 network in mouse. We reveal that, in contrast to Wnt and FGF-driven trunk mesoderm, dual inhibition of Wnt/β-catenin and Nodal specifies head mesoderm. Remarkably, the progenitors derived from embryonic stem cells by dual inhibition efficiently differentiate into cardiac and skeletal muscle cells. This twin potential is the defining feature of cardiopharyngeal mesoderm: the head subtype giving rise to heart and branchiomeric head muscles. Therefore, our findings provide compelling evidence that dual inhibition specifies head mesoderm and unravel the mechanism that diversifies head and trunk muscle programmes during early mesoderm fate commitment. Significantly, this is the first report of directed differentiation of pluripotent stem cells, without transgenes, into progenitors with muscle/heart dual potential. Ability to generate branchiomeric muscle could catalyse efforts in modelling myopathies that selectively involve head muscles.
头部和躯干肌肉具有不同的胚胎起源,并受不同的调控程序控制。虽然躯干肌肉从中胚层的发育途径已经得到了很好的研究,但头部肌肉的发育途径还不清楚。在这里,我们表明,与产生躯体肌肉的生肌中胚层不同,小鼠头部中胚层的发育不依赖于 T/Tbx6 网络。我们揭示了与 Wnt 和 FGF 驱动的躯干中胚层相反,双重抑制 Wnt/β-catenin 和 Nodal 可以特化头部中胚层。值得注意的是,通过双重抑制从胚胎干细胞中获得的祖细胞能够有效地分化为心肌和骨骼肌肉细胞。这种双重潜能是心咽中胚层的特征:头部亚型产生心脏和鳃弓头部肌肉。因此,我们的研究结果提供了令人信服的证据,表明双重抑制可以特化头部中胚层,并揭示了在早期中胚层命运决定过程中使头部和躯干肌肉程序多样化的机制。重要的是,这是第一个不使用转基因体,将多能干细胞定向分化为具有肌肉/心脏双重潜能的祖细胞的报道。产生鳃弓肌肉的能力可能会促进针对选择性涉及头部肌肉的肌病的建模工作。