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在斑马鱼胚胎中,Myf5 在原肠胚形成过程中的正常功能对于咽弓软骨的发育是必需的。

Normal function of Myf5 during gastrulation is required for pharyngeal arch cartilage development in zebrafish embryos.

机构信息

Institute of Molecular and Cellular Biology, National Taiwan University , Taipei, Taiwan .

出版信息

Zebrafish. 2013 Dec;10(4):486-99. doi: 10.1089/zeb.2013.0903. Epub 2013 Aug 31.

Abstract

Myf5, a myogenic regulatory factor, plays a key role in regulating muscle differentiation. However, it is not known if Myf5 has a regulatory role during early embryogenesis. Here, we used myf5-morpholino oligonucleotides [MO] to knock down myf5 expression and demonstrated a series of results pointing to the functional roles of Myf5 during early embryogenesis: (1) reduced head size resulting from abnormal morphology in the cranial skeleton; (2) decreased expressions of the cranial neural crest (CNC) markers foxd3, sox9a, dlx2, and col2a1; (3) defect in the chondrogenic neural crest similar to that of fgf3 morphants; (4) reduced fgf3/fgf8 transcripts in the cephalic mesoderm rescued by co-injection of myf5 wobble-mismatched mRNA together with myf5-MO1 during 12 h postfertilization; (5) abnormal patterns of axial and non-axial mesoderm causing expansion of the dorsal organizer, and (6) increased bmp4 gradient, but reduced fgf3/fgf8 marginal gradient, during gastrulation. Interestingly, overexpression of fgf3 could rescue the cranial cartilage defects caused by myf5-MO1, suggesting that Myf5 modulates craniofacial cartilage development through the fgf3 signaling pathway. Together, the loss of Myf5 function results in a cascade effect that begins with abnormal formation of the dorsal organizer during gastrulation, causing, in turn, defects in the CNC and cranial cartilage of myf5-knockdown embryos.

摘要

Myf5 是一种肌肉生成调节因子,在调节肌肉分化中发挥关键作用。然而,目前尚不清楚 Myf5 是否在早期胚胎发生中具有调节作用。在这里,我们使用 myf5- 吗啉代寡核苷酸 [MO] 来敲低 myf5 的表达,并展示了一系列结果,指出 Myf5 在早期胚胎发生中的功能作用:(1)由于颅骨骨骼形态异常导致头部大小减小;(2)颅神经嵴(CNC)标志物 foxd3、sox9a、dlx2 和 col2a1 的表达减少;(3)与 fgf3 形态发生缺陷相似的软骨神经嵴缺陷;(4)在受精后 12 小时共注射 myf5 摆动错配 mRNA 与 myf5-MO1 后,cephalic 中胚层的 fgf3/fgf8 转录物减少;(5)轴性和非轴性中胚层的异常模式导致背侧组织者扩张,以及(6)在原肠胚形成过程中,bmp4 梯度增加,但 fgf3/fgf8 边缘梯度减少。有趣的是,fgf3 的过表达可以挽救 myf5-MO1 引起的颅软骨缺陷,表明 Myf5 通过 fgf3 信号通路调节颅面软骨发育。总之,Myf5 功能的丧失导致级联效应,首先在原肠胚形成过程中背侧组织者的异常形成,进而导致 CNC 和 myf5 敲低胚胎颅软骨的缺陷。

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