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视黄酸信号调节头/躯干界面分支颈肌的发育。

Retinoic acid signalling regulates branchiomeric neck muscle development at the head/trunk interface.

机构信息

Aix-Marseille Université, CNRS UMR 7288, IBDM, 13009 Marseille, France.

Aix-Marseille Université, INSERM, MMG U1251, 13005 Marseille, France.

出版信息

Development. 2024 Aug 15;151(16). doi: 10.1242/dev.202905. Epub 2024 Aug 29.

Abstract

Skeletal muscles of the head and trunk originate in distinct lineages with divergent regulatory programmes converging on activation of myogenic determination factors. Branchiomeric head and neck muscles share a common origin with cardiac progenitor cells in cardiopharyngeal mesoderm (CPM). The retinoic acid (RA) signalling pathway is required during a defined early time window for normal deployment of cells from posterior CPM to the heart. Here, we show that blocking RA signalling in the early mouse embryo also results in selective loss of the trapezius neck muscle, without affecting other skeletal muscles. RA signalling is required for robust expression of myogenic determination factors in posterior CPM and subsequent expansion of the trapezius primordium. Lineage-specific activation of a dominant-negative RA receptor reveals that trapezius development is not regulated by direct RA signalling to myogenic progenitor cells in CPM, or through neural crest cells, but indirectly through the somitic lineage, closely apposed with posterior CPM in the early embryo. These findings suggest that trapezius development is dependent on precise spatiotemporal interactions between cranial and somitic mesoderm at the head/trunk interface.

摘要

头部和躯干的骨骼肌起源于不同的谱系,它们具有不同的调节程序,最终汇聚到肌源性决定因子的激活。鳃弓头部和颈部肌肉与心咽中胚层(CPM)中的心脏祖细胞具有共同的起源。视黄酸(RA)信号通路在特定的早期时间窗口内对于来自后 CPM 的细胞正常向心脏的迁移是必需的。在这里,我们发现早期胚胎中 RA 信号通路的阻断也会导致斜方肌颈部肌肉的选择性缺失,而不影响其他骨骼肌。RA 信号通路对于后 CPM 中肌源性决定因子的强烈表达和随后的斜方肌原基的扩张是必需的。显性负 RA 受体的谱系特异性激活表明,斜方肌的发育不是通过 CPM 中的肌源性祖细胞或神经嵴细胞的直接 RA 信号调节的,而是通过与胚胎早期后 CPM 紧密相邻的体节谱系间接调节的。这些发现表明,斜方肌的发育依赖于头部/躯干界面处颅面和体节中胚层之间的精确时空相互作用。

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