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首页> 外文期刊>Neurochemical research >Role of BMP, FGF, calcium signaling, and Zic proteins in vertebrate neuroectodermal differentiation.
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Role of BMP, FGF, calcium signaling, and Zic proteins in vertebrate neuroectodermal differentiation.

机译:BMP,FGF,钙信号传导和Zic蛋白在脊椎动物神经外胚层分化中的作用。

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摘要

More than a decade has passed since Zic family zinc finger proteins were discovered to be transcription factors controlling neuroectodermal differentiation (neural induction) in Xenopus laevis embryos. Although BMP-signal blocking has been shown to be a major upregulator of Zic genes in neuroectodermal differentiation, recent studies have revealed that FGF signaling and intracellular calcium elevation are also involved in regulating the expression of Zic genes. Different regulatory mechanisms have been found for the Zic1 and Zic3 genes, raising the possibility that functional synergism between them partly accounts for the integration of BMP-signal blocking and FGF signaling in neuroectodermal differentiation. Furthermore, mammalian Zic1 and Zic3 have been found to be neural-cell-fate-inducing and pluripotency-maintaining factors, respectively, leading us to the intriguing question of whether the mechanism underlying amphibian neuroectodermal differentiation is applicable to mammals. Comprehensive understanding of the Zic family genes is therefore essential for the study of the neuroectodermal differentiation and stem cell biology.
机译:自从发现Zic家族锌指蛋白是控制非洲爪蟾胚胎中神经外胚层分化(神经诱导)的转录因子以来,已经过去了十多年。尽管已显示BMP信号阻断是神经外胚层分化中Zic基因的主要上调剂,但最近的研究表明FGF信号传导和细胞内钙升高也参与了Zic基因表达的调节。对于Zic1和Zic3基因,已经发现了不同的调节机制,从而提高了它们之间的功能协同作用部分解释了神经外胚层分化中BMP信号阻断和FGF信号传导的整合的可能性。此外,已经发现哺乳动物Zic1和Zic3分别是神经细胞命运诱导因子和多能维持因子,这使我们提出了一个有趣的问题,即两栖神经外胚层分化的潜在机制是否适用于哺乳动物。因此,对Zic家族基因的全面了解对于神经外胚层分化和干细胞生物学的研究至关重要。

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