首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Multiple left-right asymmetry defects in Shh~-/- mutant mice unveil a convergence of the Shh and retinoic acid pathways in the control of Lefty-1
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Multiple left-right asymmetry defects in Shh~-/- mutant mice unveil a convergence of the Shh and retinoic acid pathways in the control of Lefty-1

机译:Shh〜-/-突变小鼠中的多个左右不对称缺陷揭示了在Lefty-1控制中Shh和视黄酸途径的收敛

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摘要

Asymmetric expression of Sonic hedgehog (Shh) in Hensen's node of the chicken embryo plays a key role in the genetic cascade that controls left-right asymmetry, but its involvement in left-right specification in other vertebrates remains unclear. We show that mouse embryos lacking Shh display a variety of laterality defects, including pulmonary left isomerism, alterations of heart looping, and randomization of axial turning. Expression of the left-specific gene Lefty-1 is absent in Shh~-/- embryos, suggesting that the observed laterality defects could be the result of the lack of Lefty-1. We also demonstrate that retinoic acid (RA) controls Lefty-1 expression in a pathway downstream or parallel to Shh. Further, we provide evidence that RA controls left-right development across vertebrate species. Thus, the roles of Shh and RA in left-righl specification indeed are conserved among vertebrates, and the Shh and RA pathways converge in the control of Lefty-1.
机译:Sonic刺猬(Shh)在鸡胚Hensen结中的不对称表达在控制左右不对称性的基因级联中起关键作用,但尚不清楚其在其他脊椎动物中对左右规格的参与。我们显示缺少Shh的小鼠胚胎显示出各种侧向性缺陷,包括肺左异构性,心脏循环改变和轴向翻转的随机性。 Shh〜-/-胚胎中缺少左特异性基因Lefty-1的表达,这表明观察到的侧向缺陷可能是缺少Lefty-1的结果。我们还证明,视黄酸(RA)控制在Shh下游或平行的途径中的Lefty-1表达。此外,我们提供了RA控制整个脊椎动物物种左右发展的证据。因此,Shh和RA在左righl规范中的作用确实在脊椎动物之间是保守的,并且Shh和RA途径在Lefty-1的控制中收敛。

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