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斑马鱼胚胎背腹模式形成中骨形态发生蛋白梯度的计算分析

Computational analysis of BMP gradients in dorsal-ventral patterning of the zebrafish embryo.

作者信息

Zhang Yong-Tao, Lander Arthur D, Nie Qing

机构信息

Department of Mathematics, University of California, Irvine, CA 92697, USA.

出版信息

J Theor Biol. 2007 Oct 21;248(4):579-89. doi: 10.1016/j.jtbi.2007.05.026. Epub 2007 Jun 6.

Abstract

The genetic network controlling early dorsal-ventral (DV) patterning has been extensively studied and modeled in the fruit fly Drosophila. This patterning is driven by signals coming from bone morphogenetic proteins (BMPs), and regulated by interactions of BMPs with secreted factors such as the antagonist short gastrulation (Sog). Experimental studies suggest that the DV patterning of vertebrates is controlled by a similar network of BMPs and antagonists (such as Chordin, a homologue of Sog), but differences exist in how the two systems are organized, and a quantitative comparison of pattern formation in them has not been made. Here, we develop a computational model in three dimensions of the zebrafish embryo and use it to study molecular interactions in the formation of BMP morphogen gradients in early DV patterning. Simulation results are presented on the dynamics BMP gradient formation, the cooperative action of two feedback loops from BMP signaling to BMP and Chordin synthesis, and pattern sensitivity with respect to BMP and Chordin dosage. Computational analysis shows that, unlike the case in Drosophila, synergy of the two feedback loops in the zygotic control of BMP and Chordin expression, along with early initiation of localized Chordin expression, is critical for establishment and maintenance of a stable and appropriate BMP gradient in the zebrafish embryo.

摘要

控制早期背腹(DV)模式形成的遗传网络已在果蝇中得到广泛研究和建模。这种模式形成由来自骨形态发生蛋白(BMP)的信号驱动,并受BMP与分泌因子(如拮抗剂短原肠胚形成蛋白(Sog))的相互作用调节。实验研究表明,脊椎动物的DV模式形成由类似的BMP和拮抗剂网络(如Sog的同源物脊索蛋白(Chordin))控制,但这两个系统的组织方式存在差异,且尚未对它们的模式形成进行定量比较。在此,我们构建了斑马鱼胚胎的三维计算模型,并利用它来研究早期DV模式形成中BMP形态发生素梯度形成过程中的分子相互作用。展示了关于BMP梯度形成动力学、从BMP信号传导到BMP和Chordin合成的两个反馈回路的协同作用以及对BMP和Chordin剂量的模式敏感性的模拟结果。计算分析表明,与果蝇的情况不同,在斑马鱼胚胎中,BMP和Chordin表达的合子控制中两个反馈回路的协同作用,以及局部Chordin表达的早期启动,对于建立和维持稳定且合适的BMP梯度至关重要。

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