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神经转录因子使卵裂期的卵裂球倾向于分化为神经外胚层。

Neural transcription factors bias cleavage stage blastomeres to give rise to neural ectoderm.

作者信息

Gaur Shailly, Mandelbaum Max, Herold Mona, Majumdar Himani Datta, Neilson Karen M, Maynard Thomas M, Mood Kathy, Daar Ira O, Moody Sally A

机构信息

Department of Anatomy and Regenerative Biology, School of Medicine and Health Sciences, George Washington University, Washington, DC.

George Washington University Institute for Neuroscience.

出版信息

Genesis. 2016 Jun;54(6):334-49. doi: 10.1002/dvg.22943. Epub 2016 May 3.

Abstract

The decision by embryonic ectoderm to give rise to epidermal versus neural derivatives is the result of signaling events during blastula and gastrula stages. However, there also is evidence in Xenopus that cleavage stage blastomeres contain maternally derived molecules that bias them toward a neural fate. We used a blastomere explant culture assay to test whether maternally deposited transcription factors bias 16-cell blastomere precursors of epidermal or neural ectoderm to express early zygotic neural genes in the absence of gastrulation interactions or exogenously supplied signaling factors. We found that Foxd4l1, Zic2, Gmnn, and Sox11 each induced explants made from ventral, epidermis-producing blastomeres to express early neural genes, and that at least some of the Foxd4l1 and Zic2 activities are required at cleavage stages. Similarly, providing extra Foxd4l1 or Zic2 to explants made from dorsal, neural plate-producing blastomeres significantly increased the expression of early neural genes, whereas knocking down either significantly reduced them. These results show that maternally delivered transcription factors bias cleavage stage blastomeres to a neural fate. We demonstrate that mouse and human homologs of Foxd4l1 have similar functional domains compared to the frog protein, as well as conserved transcriptional activities when expressed in Xenopus embryos and blastomere explants. genesis 54:334-349, 2016. © 2016 Wiley Periodicals, Inc.

摘要

胚胎外胚层决定产生表皮衍生物还是神经衍生物,这是囊胚期和原肠胚期信号传导事件的结果。然而,在非洲爪蟾中也有证据表明,卵裂期的卵裂球含有母源分子,这些分子使它们倾向于神经命运。我们使用卵裂球外植体培养试验来测试,在没有原肠胚形成相互作用或外源提供的信号因子的情况下,母源沉积的转录因子是否会使表皮或神经外胚层的16细胞卵裂球前体表达早期合子神经基因。我们发现,Foxd4l1、Zic2、Gmnn和Sox11各自诱导由产生表皮的腹侧卵裂球制成的外植体表达早期神经基因,并且在卵裂期至少需要一些Foxd4l1和Zic2的活性。同样,向由产生神经板的背侧卵裂球制成的外植体提供额外的Foxd4l1或Zic2,显著增加了早期神经基因的表达,而敲低其中任何一个则显著降低了它们的表达。这些结果表明,母源传递的转录因子使卵裂期的卵裂球倾向于神经命运。我们证明,与青蛙蛋白相比,Foxd4l1的小鼠和人类同源物具有相似的功能结构域,并且在非洲爪蟾胚胎和卵裂球外植体中表达时具有保守的转录活性。《基因》54:334 - 349,2016年。©2016威利期刊公司

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