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脊椎动物左右轴形成过程中对EGF - CFC基因的保守需求。

Conserved requirement for EGF-CFC genes in vertebrate left-right axis formation.

作者信息

Yan Y T, Gritsman K, Ding J, Burdine R D, Corrales J D, Price S M, Talbot W S, Schier A F, Shen M M

机构信息

Center for Advanced Biotechnology and Medicine (CABM) and Department of Pediatrics, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School, Piscataway, New Jersey 08854,USA.

出版信息

Genes Dev. 1999 Oct 1;13(19):2527-37. doi: 10.1101/gad.13.19.2527.

Abstract

Specification of the left-right (L-R) axis in the vertebrate embryo requires transfer of positional information from the node to the periphery, resulting in asymmetric gene expression in the lateral plate mesoderm. We show that this activation of L-R lateral asymmetry requires the evolutionarily conserved activity of members of the EGF-CFC family of extracellular factors. Targeted disruption of murine Cryptic results in L-R laterality defects including randomization of abdominal situs, hyposplenia, and pulmonary right isomerism, as well as randomized embryo turning and cardiac looping. Similarly, zebrafish one-eyed pinhead (oep) mutants that have been rescued partially by mRNA injection display heterotaxia, including randomization of heart looping and pancreas location. In both Cryptic and oep mutant embryos, L-R asymmetric expression of Nodal/cyclops, Lefty2/antivin, and Pitx2 does not occur in the lateral plate mesoderm, while in Cryptic mutants Lefty1 expression is absent from the prospective floor plate. Notably, L-R asymmetric expression of Nodal at the lateral edges of the node is still observed in Cryptic mutants, indicating that L-R specification has occurred in the node but not the lateral plate. Combined with the previous finding that oep is required for nodal signaling in zebrafish, we propose that a signaling pathway mediated by Nodal and EGF-CFC activities is essential for transfer of L-R positional information from the node.

摘要

脊椎动物胚胎左右(L-R)轴的特化需要将位置信息从节点传递到外周,从而导致侧板中胚层中基因表达的不对称。我们发现,L-R侧向不对称的这种激活需要细胞外因子EGF-CFC家族成员的进化保守活性。小鼠Cryptic基因的靶向破坏会导致L-R侧向性缺陷,包括腹部脏器位置随机化、脾发育不全和肺右位异构,以及胚胎旋转和心脏环化随机化。同样,通过mRNA注射部分挽救的斑马鱼独眼针头(oep)突变体表现出内脏逆位,包括心脏环化和胰腺位置随机化。在Cryptic和oep突变体胚胎中,侧板中胚层均未出现Nodal/独眼、Lefty2/抗维甲酸和Pitx2的L-R不对称表达,而在Cryptic突变体中,预期的底板中没有Lefty1表达。值得注意的是,在Cryptic突变体中仍可观察到节点外侧边缘处Nodal的L-R不对称表达,这表明L-R特化发生在节点而非侧板中。结合之前发现oep是斑马鱼中Nodal信号传导所必需的这一结果,我们提出由Nodal和EGF-CFC活性介导的信号通路对于从节点传递L-R位置信息至关重要。

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