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Axis patterning by BMPs: cnidarian network reveals evolutionary constraints

机译:Bmps的轴模式:cnidarian网络揭示了进化约束

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摘要

BMP signaling plays a crucial role in the establishment of the dorso-ventral body axis in bilaterally symmetric animals. However, the topologies of the bone morphogenetic protein (BMP) signaling networks vary drastically in different animal groups, raising questions about the evolutionary constraints and evolvability of BMP signaling systems. Using loss-of-function analysis and mathematical modeling, we show that two signaling centers expressing different BMPs and BMP antagonists maintain the secondary axis of the sea anemone Nematostella. We demonstrate that BMP signaling is required for asymmetric Hox gene expression and mesentery formation. Computational analysis reveals that network parameters related to BMP4 and Chordin are constrained both in Nematostella and Xenopus, while those describing the BMP signaling modulators can vary significantly. Notably, only chordin, but not bmp4 expression needs to be spatially restricted for robust signaling gradient formation. Our data provide an explanation of the evolvability of BMP signaling systems in axis formation throughout Eumetazoa.
机译:BMP信号在双侧对称动物的背腹体轴的建立中起着至关重要的作用。然而,骨形态发生蛋白(BMP)信号网络的拓扑结构在不同的动物群体中大不相同,这引发了有关BMP信号系统的进化限制和可进化性的问题。使用功能丧失分析和数学建模,我们表明表达不同BMP和BMP拮抗剂的两个信号中心维持着海葵线虫的副轴。我们证明BMP信号是不对称Hox基因表达和肠系膜形成所必需的。计算分析表明,与线粒体蛋白4和索丁蛋白有关的网络参数在线虫和爪蟾中均受到限制,而描述BMP信号传导调节剂的网络参数却有很大差异。值得注意的是,对于稳健的信号梯度形成,仅需限制chordin表达,而无需限制bmp4表达。我们的数据提供了整个Eumetazoa中BMP信号系统在轴形成中的进化能力的解释。

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