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母体macho-1是一种内在因子,它使得海鞘胚胎中中胚层和脊索诱导过程中细胞对相同的成纤维细胞生长因子(FGF)信号产生不同反应。

Maternal macho-1 is an intrinsic factor that makes cell response to the same FGF signal differ between mesenchyme and notochord induction in ascidian embryos.

作者信息

Kobayashi Kenji, Sawada Kaichiro, Yamamoto Hiroki, Wada Shuichi, Saiga Hidetoshi, Nishida Hiroki

机构信息

Department of Biological Sciences, Graduate School of Bioscience and Biotechnology, Tokyo Institute of Technology, Nagatsuta, Midori-ku, Yokohama 226-8501, Japan.

出版信息

Development. 2003 Nov;130(21):5179-90. doi: 10.1242/dev.00732. Epub 2003 Sep 3.

Abstract

An extracellular signaling molecule acts on several types of cells, evoking characteristic and different responses depending on intrinsic factors in the signal-receiving cells. In ascidian embryos, notochord and mesenchyme are induced in the anterior and posterior margins, respectively, of the vegetal hemisphere by the same FGF signal emanating from endoderm precursors. The difference in the responsiveness depends on the inheritance of the posterior-vegetal egg cytoplasm. We show that macho-1, first identified as a localized muscle determinant, is also required for mesenchyme induction, and that it plays a role in making the cell response differ between notochord and mesenchyme induction. A zygotic event involving snail expression downstream of maternal macho-1 mediates the suppression of notochord induction in mesenchyme precursors.

摘要

一种细胞外信号分子作用于多种类型的细胞,根据信号接收细胞中的内在因素引发特征性的不同反应。在海鞘胚胎中,来自内胚层前体的相同FGF信号分别在植物半球的前缘和后缘诱导脊索和间充质。反应性的差异取决于植物极后区卵细胞质的遗传。我们发现,最初被鉴定为局部肌肉决定因素的macho-1,对于间充质诱导也是必需的,并且它在使脊索和间充质诱导的细胞反应不同方面发挥作用。一个涉及母体macho-1下游蜗牛表达的合子事件介导了间充质前体中脊索诱导的抑制。

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