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首页> 外文期刊>Development >Cranial neural crest cells regulate head muscle patterning and differentiation during vertebrate embryogenesis.
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Cranial neural crest cells regulate head muscle patterning and differentiation during vertebrate embryogenesis.

机译:颅神经neural细胞在脊椎动物胚胎发生过程中调节头肌的形态和分化。

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摘要

In the vertebrate head, mesoderm cells fuse together to form a myofiber, which is attached to specific cranial neural crest (CNC)-derived skeletal elements in a highly coordinated manner. Although it has long been recognized that CNC plays a role in the formation of the head musculature, the precise molecular underpinnings of this process remain elusive. In the present study we explored the nature of the crosstalk between CNC and mesoderm cells during head muscle development, employing three models for genetic perturbations of CNC development in mice, as well as experimental ablation of CNC in chick embryos. We demonstrate that although early myogenesis is CNC-independent, the migration, patterning and differentiation of muscle precursors are regulated by CNC. In the absence of CNC cells, accumulated myoblasts are kept in a proliferative state, presumably because of an increase of Fgf8 in adjacent tissues, which leads to abnormalities in both differentiation and subsequent myofiber organization in the head. These results have uncovered a surprising degree of complexity and multiple distinct roles for CNC in the patterning and differentiation of muscles during craniofacial development. We suggest that CNC cells control craniofacial development by regulating positional interactions with mesoderm-derived muscle progenitors that together shape the cranial musculoskeletal architecture in vertebrate embryos.
机译:在脊椎动物头部,中胚层细胞融合在一起形成肌纤维,肌纤维以高度协调的方式连接到特定的颅神经c(CNC)衍生的骨骼元素上。尽管人们早已认识到CNC在头部肌肉组织的形成中发挥着作用,但是该过程的精确分子基础仍然难以捉摸。在本研究中,我们使用三种模型对小鼠CNC发育的遗传扰动以及对鸡胚中CNC的实验消融,探索了头部肌肉发育过程中CNC与中胚层细胞之间串扰的性质。我们证明,尽管早期肌生成是不依赖CNC的,但肌肉前体的迁移,模式和分化却受CNC调节。在没有CNC细胞的情况下,积累的成肌细胞被保持在增生状态,这可能是由于邻近组织中Fgf8的增加,这导致了分化异常以及随后的头部肌纤维组织异常。这些结果揭示了在颅面发育过程中,CNC在肌肉的图案形成和分化中具有令人惊讶的复杂程度和多种不同的作用。我们建议CNC细胞通过调节与中胚层衍生的肌肉祖细胞的位置相互作用来控制颅面发育,这些相互作用共同塑造脊椎动物胚胎中的颅骨肌肉骨骼结构。

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