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在兔子左右轴的建立过程中,成纤维细胞生长因子8(FGF8)起着右侧决定因子的作用。

FGF8 acts as a right determinant during establishment of the left-right axis in the rabbit.

作者信息

Fischer Anja, Viebahn Christoph, Blum Martin

机构信息

Forschungszentrum Karlsruhe, Institute of Toxicology and Genetics, PO Box 3640, 76021 Karlsruhe, Germany.

出版信息

Curr Biol. 2002 Oct 29;12(21):1807-16. doi: 10.1016/s0960-9822(02)01222-8.

Abstract

BACKGROUND

FGF8 has been implicated in the transfer of left-right (L-R) asymmetry from the embryonic midline (node) to the lateral plate mesoderm (LPM). Surprisingly, opposite roles have been described in chick and mouse. In mouse, FGF8 is required for the left-asymmetric expression of nodal, lefty2, and Pitx2. In chick, FGF8 represses nodal and Pitx2 on the right side. This discrepancy could reflect evolutionary differences between birds and mammals. Alternatively, the right-asymmetric expression of fgf8, which is not found in mouse, at the chick node may be a prerequisite of right-sided function. Finally, chick (blastodisc) and mouse (egg cylinder) differ with respect to the topology of the early gastrula/neurula embryo.

RESULTS

The rabbit blastodisc was investigated as an additional mammalian L-R model system. While nodal, lefty, and Pitx2 showed asymmetric expression in the left LPM, fgf8 and all other midline marker genes were symmetrically expressed at the node like in mouse. Left-sided application of FGF8 repressed the endogenous transcription of nodal as well as ectopic expression induced by the parallel administration of BMP4. Right-sided inhibition of FGF8 signaling induced bilateral marker gene expression, demonstrating that, in rabbit, FGF8 acts as a right determinant like in chick.

CONCLUSIONS

These findings suggest that the anatomy of the early embryo (blastodisc versus egg cylinder) rather than taxonomical differences or asymmetry in expression constitutes an important determinant of FGF8 function in L-R axis formation. The rabbit may provide a useful model for early human embryogenesis, as human embryos develop via a blastodisc as well.

摘要

背景

成纤维细胞生长因子8(FGF8)参与了左右(L-R)不对称性从胚胎中线(节点)向侧板中胚层(LPM)的传递。令人惊讶的是,在鸡和小鼠中FGF8发挥了相反的作用。在小鼠中,FGF8是节点、左y2和Pitx2左侧不对称表达所必需的。在鸡中,FGF8抑制右侧的节点和Pitx2。这种差异可能反映了鸟类和哺乳动物之间的进化差异。或者,鸡节点处不存在于小鼠中的fgf8右侧不对称表达可能是右侧功能的先决条件。最后,鸡(胚盘)和小鼠(卵圆柱)在早期原肠胚/神经胚胚胎的拓扑结构上存在差异。

结果

兔胚盘作为另一种哺乳动物L-R模型系统进行了研究。虽然节点、左y和Pitx2在左侧LPM中显示出不对称表达,但fgf8和所有其他中线标记基因在节点处对称表达,就像在小鼠中一样。左侧应用FGF8抑制了节点的内源性转录以及BMP4平行给药诱导的异位表达。右侧抑制FGF8信号传导诱导双侧标记基因表达,表明在兔中,FGF8像在鸡中一样作为右侧决定因素起作用。

结论

这些发现表明,早期胚胎的解剖结构(胚盘与卵圆柱)而非分类学差异或表达不对称构成了FGF8在L-R轴形成中功能的重要决定因素。兔可能为早期人类胚胎发育提供一个有用的模型,因为人类胚胎也是通过胚盘发育的。

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