Sonic hedgehog在脊椎动物神经管发育中的作用。

Marysia Placzek, James Briscoe
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引用次数: 38

摘要

脊椎动物神经系统的形成和连接涉及在空间和时间上有序地产生不同的神经元和胶质亚型,这些亚型在分子和功能上都是不同的。鸡胚一直是许多研究的实验模型选择,这些研究导致了我们目前对这一过程的理解,并预示和告知了广泛的互补遗传研究,特别是在老鼠身上。鸡胚胎的多功能性和可追溯性意味着它仍然是该领域许多研究者的重要模型系统。在这里,我们将重点关注Sonic hedgehog (Shh)信号在协调脊椎动物神经系统的多样化、模式、生长和分化中的作用。我们强调了在小鸡身上的研究如何确定Shh在发育中的神经管中所起的作用,以及随后的工作,包括在小鸡和小鼠身上的研究如何揭示了控制细胞命运决定的细胞内在程序的细节。我们比较了沿神经轴不同喙尾位置的这些机制,并讨论了促进这项工作的小鸡的特殊实验属性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sonic hedgehog in vertebrate neural tube development.

The formation and wiring of the vertebrate nervous system involves the spatially and temporally ordered production of diverse neuronal and glial subtypes that are molecularly and functionally distinct. The chick embryo has been the experimental model of choice for many of the studies that have led to our current understanding of this process, and has presaged and informed a wide range of complementary genetic studies, in particular in the mouse. The versatility and tractability of chick embryos means that it remains an important model system for many investigators in the field. Here we will focus on the role of Sonic hedgehog (Shh) signaling in coordinating the diversification, patterning, growth and differentiation of the vertebrate nervous system. We highlight how studies in chick led to the identification of the role Shh plays in the developing neural tube and how subsequent work, including studies in the chick and the mouse revealed details of the cell intrinsic programs controlling cell fate determination. We compare these mechanisms at different rostral-caudal positions along the neuraxis and discuss the particular experimental attributes of the chick that facilitated this work.

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