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Miz1 通过调节神经管发育过程中的细胞存活和顶端粘附复合物形成,对神经嵴发育产生双相影响。

Biphasic influence of Miz1 on neural crest development by regulating cell survival and apical adhesion complex formation in the developing neural tube.

机构信息

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125.

出版信息

Mol Biol Cell. 2014 Feb;25(3):347-55. doi: 10.1091/mbc.E13-06-0327. Epub 2013 Dec 4.

Abstract

Myc interacting zinc finger protein-1 (Miz1) is a transcription factor known to regulate cell cycle- and cell adhesion-related genes in cancer. Here we show that Miz1 also plays a critical role in neural crest development. In the chick, Miz1 is expressed throughout the neural plate and closing neural tube. Its morpholino-mediated knockdown affects neural crest precursor survival, leading to reduction of neural plate border and neural crest specifier genes Msx-1, Pax7, FoxD3, and Sox10. Of interest, Miz1 loss also causes marked reduction of adhesion molecules (N-cadherin, cadherin6B, and α1-catenin) with a concomitant increase of E-cadherin in the neural folds, likely leading to delayed and decreased neural crest emigration. Conversely, Miz1 overexpression results in up-regulation of cadherin6B and FoxD3 expression in the neural folds/neural tube, leading to premature neural crest emigration and increased number of migratory crest cells. Although Miz1 loss effects cell survival and proliferation throughout the neural plate, the neural progenitor marker Sox2 was unaffected, suggesting a neural crest-selective effect. The results suggest that Miz1 is important not only for survival of neural crest precursors, but also for maintenance of integrity of the neural folds and tube, via correct formation of the apical adhesion complex therein.

摘要

Myc 相互作用锌指蛋白-1(Miz1)是一种已知调节癌症中细胞周期和细胞黏附相关基因的转录因子。在这里,我们表明 Miz1 也在神经嵴发育中发挥关键作用。在鸡胚中,Miz1 在整个神经板和闭合的神经管中表达。其 morpholino 介导的敲低会影响神经嵴前体细胞的存活,导致神经板边界和神经嵴特征基因 Msx-1、Pax7、FoxD3 和 Sox10 的减少。有趣的是,Miz1 的缺失也会导致黏附分子(N-钙黏蛋白、钙黏蛋白 6B 和α1-连环蛋白)的显著减少,同时神经褶中的 E-钙黏蛋白增加,可能导致神经嵴迁移的延迟和减少。相反,Miz1 的过表达导致神经褶/神经管中 cadherin6B 和 FoxD3 表达的上调,导致过早的神经嵴迁移和迁移的神经嵴细胞数量增加。尽管 Miz1 的缺失会影响整个神经板的细胞存活和增殖,但神经祖细胞标志物 Sox2 不受影响,这表明 Miz1 具有神经嵴选择性作用。结果表明,Miz1 不仅对神经嵴前体细胞的存活很重要,而且对维持神经褶和神经管的完整性也很重要,通过正确形成其中的顶端黏附复合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1000/3907275/1e058d47dda4/347fig1.jpg

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