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脊椎动物后脑模式形成的分子机制。

Molecular mechanisms of pattern formation in the vertebrate hindbrain.

作者信息

Nieto M A, Bradley L C, Hunt P, Das Gupta R, Krumlauf R, Wilkinson D G

机构信息

Laboratory of Eukaryotic Molecular Genetics, National Institute for Medical Research, The Ridgeway, Mill Hill, London, UK.

出版信息

Ciba Found Symp. 1992;165:92-102; discussion 102-7. doi: 10.1002/9780470514221.ch6.

Abstract

During early stages of neural development a series of repeated bulges, termed rhombomeres, form in the vertebrate hindbrain. Studies in the chick have shown that rhombomeres are segments that underlie the patterning of nerves in the hindbrain, and this raises the question of the molecular basis of segment development. Several genes have been found with expression patterns consistent with roles in the formation or differentiation of rhombomeres. The zinc finger gene Krox-20 is expressed in two alternating rhombomeres, r3 and r5, in the mouse hindbrain; these stripes of gene expression are established prior to the morphological appearance of segments. Krox-20 is also expressed in this pattern in the chick and Xenopus, suggesting that it has a conserved role, possibly in the formation of rhombomeres. Four members of the Hox-2 homeobox gene cluster have limits of expression at rhombomere boundaries. Three genes, Hox-2.6, -2.7 and -2.8 have progressively more anterior limits of expression at two-segment intervals, whereas expression of Hox-2.9 is restricted to one rhombomere, r4. The Hox-2 genes are expressed in spatially restricted patterns in early neural crest cells. These findings suggest that the Hox genes have roles in specifying the identity of rhombomeres and of neural crest.

摘要

在神经发育的早期阶段,脊椎动物的后脑会形成一系列重复的隆起,称为菱脑节。对鸡的研究表明,菱脑节是后脑神经模式形成的基础部分,这就引出了节段发育的分子基础问题。已经发现了几个基因,它们的表达模式与在菱脑节形成或分化过程中的作用一致。锌指基因Krox-20在小鼠后脑的两个交替的菱脑节r3和r5中表达;这些基因表达条纹在节段的形态出现之前就已建立。Krox-20在鸡和非洲爪蟾中也以这种模式表达,这表明它可能在菱脑节的形成中具有保守作用。Hox-2同源框基因簇的四个成员在菱脑节边界处有表达界限。三个基因Hox-2.6、-2.7和-2.8在两个节段的间隔处表达界限逐渐更靠前,而Hox-2.9的表达则局限于一个菱脑节r4。Hox-2基因在早期神经嵴细胞中以空间受限的模式表达。这些发现表明,Hox基因在确定菱脑节和神经嵴的特性方面发挥作用。

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