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非洲爪蟾Smad7抑制激活素和骨形态发生蛋白信号通路,并作为一种神经诱导因子发挥作用。

Xenopus Smad7 inhibits both the activin and BMP pathways and acts as a neural inducer.

作者信息

Casellas R, Brivanlou A H

机构信息

Laboratory of vertebrate molecular Embryology, Rockefeller University, New York, New York 10021-6399, USA.

出版信息

Dev Biol. 1998 Jun 1;198(1):1-12. doi: 10.1006/dbio.1998.8893.

Abstract

Smads are proteins that transduce signals on behalf of members of the TGF beta superfamily of growth factors. Recently, inhibitory Smads, Smad6, Smad7, and Dad, were isolated from human, mouse, and fly. These anti-Smads were shown to inhibit TGF beta signaling by stably associating to TGF beta type I receptors or, as it was shown for Smad6, by binding to receptor-activated Smad1. We report the cloning, distribution, and embryological activity of the Xenopus Smad7 (XSmad7). We report that XSmad7 inhibits signaling from the activin and BMP pathways in animal explants although at different thresholds. When expressed in the embryo, low concentrations of XSmad7 dorsalize the ventral mesoderm, thus inducing a secondary axis. At higher concentrations however, XSmad7 inhibits both mesoderm induction and primary axis specification. In addition, we show that XSmad7 acts as a direct neural inducer both in the context of ectodermal explants and in vivo. We discuss the implications of these findings in the biochemical context of the activin and BMP pathways as well as their implications in mesodermal, neural, and axis specification.

摘要

Smads是一类蛋白质,它们代表转化生长因子β(TGFβ)超家族的成员传递信号。最近,从人、小鼠和果蝇中分离出了抑制性Smads,即Smad6、Smad7和Dad。这些抗Smads被证明通过与TGFβ I型受体稳定结合来抑制TGFβ信号传导,或者如Smad6所示,通过与受体激活的Smad1结合来抑制信号传导。我们报告了非洲爪蟾Smad7(XSmad7)的克隆、分布和胚胎学活性。我们报告,XSmad7在动物外植体中抑制激活素和骨形态发生蛋白(BMP)信号通路,尽管阈值不同。当在胚胎中表达时,低浓度的XSmad7使腹侧中胚层背化,从而诱导形成第二条轴。然而,在较高浓度时,XSmad7抑制中胚层诱导和原轴形成。此外,我们表明,XSmad7在外胚层外植体和体内均作为直接的神经诱导因子发挥作用。我们讨论了这些发现对激活素和BMP信号通路生化背景的影响,以及它们对中胚层、神经和轴形成的影响。

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