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通过激活素变体的异位表达破坏鱼类中胚层和轴的形成:母体激活素的作用。

Disruption of mesoderm and axis formation in fish by ectopic expression of activin variants: the role of maternal activin.

作者信息

Wittbrodt J, Rosa F M

机构信息

University of Basel, Department of Cell Biology, Switzerland.

出版信息

Genes Dev. 1994 Jun 15;8(12):1448-62. doi: 10.1101/gad.8.12.1448.

Abstract

Formation of mesoderm in Xenopus embryos is the result of an induction event in which peptides such as FGF or activins have been implicated. It was recently demonstrated, by the ectopic expression of a truncated activin receptor, that activin receptor signaling pathways are involved in the processes of mesoderm and axis formation in vivo. However, this approach does not directly address the role of activin itself nor the involvement of activins in the formation of mesoderm in embryos from other vertebrates. In addition, activins are expressed maternally as a protein component of the egg as well as transcribed zygotically, and it is not clear which of the two forms is involved in mesoderm formation. To address those three issues, we analyzed the role of activins in the development of fish embryos by generating two activin dominant-negative variants. One of the variants behaves as an inhibitor of activin protein. The second variant was found to deplete the activin pool when cotranslated with wild-type activin. Injection of RNA encoding these variants into the two-cell embryo of the small teleost fish Oryzias latipes (Japanese medaka) demonstrates that only the maternally provided activin protein is required for mesoderm and axis formation in fish in vivo.

摘要

非洲爪蟾胚胎中胚层的形成是诱导事件的结果,其中涉及FGF或激活素等肽类物质。最近通过截短型激活素受体的异位表达证明,激活素受体信号通路参与了体内中胚层和轴的形成过程。然而,这种方法并未直接探讨激活素本身的作用,也未涉及激活素在其他脊椎动物胚胎中胚层形成中的作用。此外,激活素在母体内作为卵子的蛋白质成分表达,同时也进行合子转录,目前尚不清楚这两种形式中的哪一种参与了中胚层的形成。为了解决这三个问题,我们通过生成两种激活素显性负变体,分析了激活素在鱼类胚胎发育中的作用。其中一种变体表现为激活素蛋白的抑制剂。发现第二种变体与野生型激活素共翻译时会耗尽激活素库。将编码这些变体的RNA注射到小型硬骨鱼青鳉(日本青鳉)的双细胞胚胎中表明,在鱼类体内,中胚层和轴的形成仅需要母源提供的激活素蛋白。

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