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Pax6 regulates boundary-cell specification in the rat hindbrain

机译:Pax6调节大鼠后脑的边界细胞规格

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摘要

The vertebrate neuroepithelium can be subdivided into non-boundary and boundary regions. The boundary regions act as signaling centers for regional specification and neurogenesis in the neighboring non-boundary regions. An important question is how boundary regions are specified and maintained during brain development. In this study, we report that Pax6, a homeodomain transcription factor, regulates boundary-cell specification between rhombomeres of the developing rat hindbrain. We compared expression patterns of four boundary-cell markers, including PLZF (Zbtb16), Ring1A (Ring1), Wnt5a, and cadherin7 (Cdh7), in wild-type and Pax6 loss-of-function mutant hindbrains and found that the expression of Zbtb16, Ring1, and Wnt5a was down-regulated in the rhombomere boundaries, while Cdh7 expression was up-regulated in the non-boundary regions of the Pax6 mutant hindbrain. Morphological observations revealed that the boundary regions were larger and that the interface between the boundary and non-boundary regions was obscured in the Pax6 mutant hindbrain. We also found ectopic neuronal differentiation in the boundary cells of the Pax6 mutant hindbrain. In addition, we observed that Hes5 was down-regulated and that Neurogenin2 (Neurog2) was up-regulated in the boundary regions of the Pax6 mutant hindbrain. Because Hes genes have been shown to inhibit neuronal differentiation by repressing proneural genes, Pax6 may act through this pathway to prevent neurogenesis in the boundary cells. Taken together, Pax6 seems to be required for coordinating boundary-cell specification and reducing neurogenesis within the hindbrain boundary region
机译:脊椎动物神经上皮可细分为非边界和边界区域。边界区域充当邻近非边界区域中区域规范和神经发生的信号中心。一个重要的问题是在大脑发育过程中如何指定和维持边界区域。在这项研究中,我们报告Pax6,一个同源域转录因子,调节发育中的大鼠后脑的菱形之间的边界细胞规格。我们比较了野生型和Pax6功能丧失的突变型后脑中PLZF(Zbtb16),Ring1A(Ring1),Wnt5a和cadherin7(Cdh7)四种边界细胞标记的表达模式,发现Zbtb16的表达,Ring1和Wnt5a在菱形边界中被下调,而Cdh7表达在Pax6突变体后脑的非边界区域中被上调。形态学观察表明,在Pax6突变体后脑中,边界区域更大,边界和非边界区域之间的界面被遮盖了。我们还发现Pax6突变后脑的边界细胞中的异位神经元分化。此外,我们观察到在Pax6突变体后脑的边界区域Hes5被下调,而Neurogenin2(Neurog2)被上调。由于已显示Hes基因可通过抑制前体神经基因来抑制神经元分化,因此Pax6可能通过该途径起作用,以防止边界细胞中的神经发生。综上所述,Pax6似乎是协调边界细胞规范和减少后脑边界区域内神经发生所必需的

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