首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Irx3 and Pax6 establish differential competence for Shh-mediated induction of GABAergic and glutamatergic neurons of the thalamus
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PNAS Plus: Irx3 and Pax6 establish differential competence for Shh-mediated induction of GABAergic and glutamatergic neurons of the thalamus

机译:PNAS Plus:Irx3和Pax6建立Shh介导的丘脑GABA能和谷氨酸能神经元诱导分化的能力

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摘要

During embryonic development, the presumptive GABAergic rostral thalamus (rTh) and glutamatergic caudal thalamus (cTh) are induced by Sonic hedgehog (Shh) signaling from the zona limitans intrathalamica (ZLI) at the rostral border of the thalamic primordium. We found that these inductions are limited to the neuroepithelium between the ZLI and the forebrain–midbrain boundary, suggesting a prepattern that limits thalamic competence. We hypothesized that this prepattern is established by the overlapping expression of two transcription factors: Iroquois-related homeobox gene 3 (Irx3) posterior to the ZLI, and paired box gene 6 (Pax6) anterior to the forebrain–midbrain boundary. Consistent with this assumption, we show that misexpression of Irx3 in the prethalamus or telencephalon results in ectopic induction of thalamic markers in response to Shh, that it functions as a transcriptional repressor in this context, and that antagonizing its function in the diencephalon attenuates thalamic specification. Similarly, misexpression of Pax6 in the midbrain together with Shh pathway activation results in ectopic induction of cTh markers in clusters of cells that fail to integrate into tectal layers and of atypical long-range projections, whereas antagonizing Pax6 function in the thalamus disrupts cTh formation. However, rTh markers are negatively regulated by Pax6, which itself is down-regulated by Shh from the ZLI in this area. Our results demonstrate that the combinatorial expression of Irx3 and Pax6 endows cells with the competence for cTh formation, whereas Shh-mediated down-regulation of Pax6 is required for rTh formation. Thus, thalamus induction and patterning depends both on a prepattern of Irx3 and Pax6 expression that establishes differential cellular competence and on Shh signaling from the ZLI organizer.
机译:在胚胎发育过程中,推定的GABA能级鸟嘴丘脑(rTh)和谷氨酸能尾丘脑(cTh)由丘脑原基体鸟嘴缘界带内的透明带(ZLI)发出的声波刺猬(Shh)信号诱导。我们发现,这些诱导作用仅限于ZLI与前脑-中脑边界之间的神经上皮,提示存在限制丘脑功能的前兆。我们假设这种模式是由两个转录因子的重叠表达建立的:ZLI后面的易洛魁人相关的同源盒基因3(Irx3),以及前脑-中脑边界之前的配对盒基因6(Pax6)。与此假设相符,我们表明在丘脑前或端脑中Irx3的错误表达会导致对Shh的丘脑标志物的异位诱导,在这种情况下它起着转录阻遏物的作用,并且拮抗其在二脑中的功能会减弱丘脑的功能。同样,中脑中Pax6的错误表达以及Shh途径的激活会导致异位诱导cTh标志物异位诱导成簇的细胞,这些细胞未能整合到盖层和非典型的远距离投射中,而拮抗Pax6在丘脑中的功能则破坏了cTh的形成。但是,rTh标记受Pax6负调控,而Pax6本身受ZLI在该区域的Shh负调控。我们的研究结果表明Irx3和Pax6的组合表达赋予细胞cTh形成的能力,而Shh介导的Pax6的下调是rTh形成所必需的。因此,丘脑的诱导和模式依赖于建立差异细胞能力的Irx3和Pax6表达的预模式以及ZLI组织者的Shh信号传导。

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