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来自基板和丘脑间带的音猬因子对间脑分子区域化和核结构表现出不同的活性。

Sonic hedgehog from the basal plate and the zona limitans intrathalamica exhibits differential activity on diencephalic molecular regionalization and nuclear structure.

作者信息

Vieira C, Martinez S

机构信息

Alicante Institute of Neuroscience, UMH-CSIC, Miguel Hernandez University, Campus de San Juan, N-332 Km 87, E-03550 San Juan de Alicante, Spain.

出版信息

Neuroscience. 2006 Nov 17;143(1):129-40. doi: 10.1016/j.neuroscience.2006.08.032. Epub 2006 Oct 10.

Abstract

The diencephalon is the most complex area of the vertebrate brain, being particularly complex in amniotes. It has been suggested that diencephalic regionalization partially depends on local signaling mediated by sonic hedgehog (Shh). However, since the Shh gene is expressed in both the diencephalic basal plate and the zona limitans intrathalamica (ZLI), it is still unclear which of these tissues exerts morphogenetic influence on thalamic regionalization. In the present study using chick and quail embryos, we have found that although Shh from the ZLI and the basal plate induces ectopic expression of diencephalic genes in the posterior prosencephalic alar plate, only Shh originating from the ZLI can induce ectopic gene expression in the anterior alar plate, indicating that the ZLI exerts specific activity in the anterior epithelium. By introducing microbarriers between the diencephalic alar neuroepithelium and either the ZLI or the basal plate, we generated local loss of Shh expression in the ZLI, leading to alterations in molecular regionalization and subsequently, in the nuclear organization of the alar diencephalic derivatives on both sides of the ZLI. We thus demonstrate in vivo that basal signals are required to induce Shh expression in the ZLI and that Shh from the ZLI plays a pivotal role in regionalizing the alar diencephalon. The structural phenotype of Shh abolition in the ZLI consisted of a progressive pattern of alterations in diencephalic organization which were associated with the observed gradient effects in the molecular regionalization of the diencephalon. We conclude that the ZLI is a secondary organizer which exerts its morphogenetic activity through Shh.

摘要

间脑是脊椎动物大脑中最复杂的区域,在羊膜动物中尤为复杂。有人提出,间脑区域化部分依赖于由音猬因子(Shh)介导的局部信号传导。然而,由于Shh基因在间脑基板和丘脑间界限带(ZLI)中均有表达,目前仍不清楚这些组织中哪一个对丘脑区域化发挥形态发生影响。在本研究中,我们使用鸡和鹌鹑胚胎发现,虽然来自ZLI和基板的Shh可诱导前脑后部翼板中间脑基因的异位表达,但只有源自ZLI的Shh能诱导前翼板中的异位基因表达,这表明ZLI在前部上皮中发挥特定活性。通过在间脑翼神经上皮与ZLI或基板之间引入微屏障,我们使ZLI中Shh表达局部缺失,导致分子区域化改变,随后使ZLI两侧的间脑翼衍生物的核组织发生改变。因此,我们在体内证明,基底信号是诱导ZLI中Shh表达所必需的,并且来自ZLI的Shh在间脑翼区域化中起关键作用。ZLI中Shh缺失的结构表型包括间脑组织的渐进性改变模式,这些改变与间脑分子区域化中观察到的梯度效应相关。我们得出结论,ZLI是一个次级组织者,它通过Shh发挥其形态发生活性。

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