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小鼠Gdf1(一种与Vg1相关的基因)诱导中内胚层并逆转左右模式。

Mesendoderm induction and reversal of left-right pattern by mouse Gdf1, a Vg1-related gene.

作者信息

Wall N A, Craig E J, Labosky P A, Kessler D S

机构信息

Biology Department, Lawrence University, Appleton, Wisconsin 54912, USA.

出版信息

Dev Biol. 2000 Nov 15;227(2):495-509. doi: 10.1006/dbio.2000.9926.

Abstract

TGFbeta signals play important roles in establishing the body axes and germ layers in the vertebrate embryo. Vg1 is a TGFbeta-related gene that, due to its maternal expression and vegetal localization in Xenopus, has received close examination as a potential regulator of development in Xenopus, zebrafish, and chick. However, a mammalian Vg1 ortholog has not been identified. To isolate mammalian Vg1 we screened a mouse expression library with a Vg1-specific monoclonal antibody and identified a single cross-reactive clone encoding mouse Gdf1. Gdf1 is expressed uniformly throughout the embryonic region at 5.5-6.5 days postcoitum and later in the node, midbrain, spinal cord, paraxial mesoderm, lateral plate mesoderm, and limb bud. When expressed in Xenopus embryos, native GDF1 is not processed, similar to Vg1. In contrast, a chimeric protein containing the prodomain of Xenopus BMP2 fused to the GDF1 mature domain is efficiently processed and signals via Smad2 to induce mesendoderm and axial duplication. Finally, right-sided expression of chimeric GDF1, but not native GDF1, reverses laterality and results in right-sided Xnr1 expression and reversal of intestinal and heart looping. Therefore, GDF1 can regulate left-right patterning, consistent with the Gdf1 loss-of-function analysis in the mouse (C. T. Rankin, T. Bunton, A. M. Lawler, and S. J. Lee, 2000, Nature Genet. 24, 262-265) and a proposed role for Vg1 in Xenopus. Our results establish that Gdf1 is posttranslationally regulated, that mature GDF1 activates a Smad2-dependent signaling pathway, and that mature GDF1 is sufficient to reverse the left-right axis. Moreover, these findings demonstrate that GDF1 and Vg1 are equivalent in biochemical and functional assays, suggesting that Gdf1 provides a Vg1-like function in the mammalian embryo.

摘要

转化生长因子β信号在脊椎动物胚胎的体轴和胚层建立过程中发挥着重要作用。Vg1是一种与转化生长因子β相关的基因,由于其在非洲爪蟾中的母源表达和植物极定位,作为非洲爪蟾、斑马鱼和鸡发育的潜在调节因子受到了密切研究。然而,尚未鉴定出哺乳动物的Vg1直系同源基因。为了分离哺乳动物的Vg1,我们用Vg1特异性单克隆抗体筛选了小鼠表达文库,并鉴定出一个单一的交叉反应性克隆,其编码小鼠Gdf1。Gdf1在妊娠后5.5 - 6.5天在整个胚胎区域均匀表达,随后在节点、中脑、脊髓、轴旁中胚层、侧板中胚层和肢芽中表达。当在非洲爪蟾胚胎中表达时,天然GDF1与Vg1类似,不进行加工处理。相反,一种包含非洲爪蟾BMP2前结构域与GDF1成熟结构域融合的嵌合蛋白能被有效加工,并通过Smad2发出信号,诱导中内胚层和轴重复。最后,嵌合GDF1的右侧表达而非天然GDF1的右侧表达会使左右不对称性反转,导致右侧Xnr1表达以及肠道和心脏环化的反转。因此,GDF1可以调节左右模式形成,这与小鼠中Gdf1功能缺失分析结果一致(C.T. Rankin、T. Bunton、A.M. Lawler和S.J. Lee,2000年,《自然遗传学》24卷,第262 - 265页)以及Vg在非洲爪蟾中所起作用的推测一致。我们的结果表明,Gdf1在翻译后受到调控,成熟的GDF1激活Smad2依赖性信号通路,并且成熟的GDF1足以反转左右轴。此外,这些发现表明,GDF1和Vg1在生化和功能分析中是等效的,这表明Gdf1在哺乳动物胚胎中提供了类似Vg1的功能。

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