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首页> 外文期刊>Developmental biology >Pax6 is required for delta-catenineurojugin expression during retinal, cerebellar and cortical development in mice.
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Pax6 is required for delta-catenineurojugin expression during retinal, cerebellar and cortical development in mice.

机译:Pax6是小鼠视网膜,小脑和皮质发育过程中δ-catenin/ neurojugin表达所必需的。

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摘要

The transcription factor Pax6 regulates multiple aspects of central nervous system (CNS) development. At the cellular level, the Pax6 mutation was reported to affect homophilic and heterophilic cellular adhesion, neuron polarity and neurite outgrowth. These abnormalities were observed in multiple regions of Pax6-mutant CNS, suggesting a common function for Pax6 in regulating cytoskeletal dynamics. However, target genes mediating Pax6 function in cytoskeletal dynamics remain largely unknown. Using DNA microarrays, we identified delta-catenin (delta-catenin eurojugin) as a potential direct target of Pax6 in the CNS. delta-catenin encodes a large cytoskeletal protein that localizes at adherens junction in the CNS and that can modulate neurite outgrowth and N-cadherin turnover. delta-catenin was found to be co-expressed with Pax6 in several regions of the developing CNS. In Pax6 mutant embryos, delta-catenin expression was severely reduced in the optic vesicle neural ectoderm, in the ventricular zone of the neocortex and in the external granule layer of the cerebellum. We identified a Pax6 binding site in delta-catenin promoter that is conserved between mice and humans and which is effectively bound by Pax6 in vitro. Our results suggest that Pax6 regulates delta-catenin expression during CNS development in mice.
机译:转录因子Pax6调节中枢神经系统(CNS)发育的多个方面。在细胞水平上,据报道Pax6突变会影响同型和异型细胞粘附,神经元极性和神经突生长。这些异常在Pax6突变的CNS的多个区域中观察到,表明Pax6在调节细胞骨架动力学中具有共同的功能。然而,在细胞骨架动力学中介导Pax6功能的靶基因仍然未知。使用DNA芯片,我们确定了delta-catenin(delta-catenin / neurojugin)作为中枢神经系统Pax6的潜在直接靶标。 δ-连环蛋白编码一种大的细胞骨架蛋白,该蛋白位于CNS的粘附连接处,可以调节神经突的长出和N-钙粘蛋白的更新。在发育中的CNS的多个区域发现δ-catenin与Pax6共表达。在Pax6突变体胚胎中,δ-连环蛋白的表达在视神经小外胚层,新皮层的心室区和小脑的外部颗粒层中严重降低。我们在delta-catenin启动子中确定了一个Pax6结合位点,该位点在小鼠和人类之间是保守的,并且在体外被Pax6有效结合。我们的研究结果表明Pax6在小鼠中枢神经系统发育过程中调节delta-catenin表达。

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