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调控 BMP 配体的空间分布以形成模式。

Regulation of spatial distribution of BMP ligands for pattern formation.

机构信息

Institute of Biotechnology, University of Helsinki, Helsinki, Finland.

Institute of Molecular and Cell Biology, University of Tartu, Tartu, Estonia.

出版信息

Dev Dyn. 2022 Jan;251(1):198-212. doi: 10.1002/dvdy.397. Epub 2021 Jul 17.

Abstract

Bone morphogenetic proteins (BMPs), members of the transforming growth factor-ß (TGF-ß) family, have been shown to contribute to embryogenesis and organogenesis during animal development. Relevant studies provide support for the following concepts: (a) BMP signals are evolutionarily highly conserved as a genetic toolkit; (b) spatiotemporal distributions of BMP signals are precisely controlled at the post-translational level; and (c) the BMP signaling network has been co-opted to adapt to diversified animal development. These concepts originated from the historical findings of the Spemann-Mangold organizer and the subsequent studies about how this organizer functions at the molecular level. In this Commentary, we focus on two topics. First, we review how the BMP morphogen gradient is formed to sustain larval wing imaginal disc and early embryo growth and patterning in Drosophila. Second, we discuss how BMP signal is tightly controlled in a context-dependent manner, and how the signal and tissue dynamics are coupled to facilitate complex tissue structure formation. Finally, we argue how these concepts might be developed in the future for further understanding the significance of BMP signaling in animal development.

摘要

骨形态发生蛋白(BMPs)是转化生长因子-β(TGF-β)家族的成员,已被证明在动物发育过程中有助于胚胎发生和器官发生。相关研究为以下概念提供了支持:(a)BMP 信号作为遗传工具包在进化上高度保守;(b)BMP 信号的时空分布在翻译后水平被精确控制;(c)BMP 信号网络被共同用来适应多样化的动物发育。这些概念源自 Spemann-Mangold 组织者的历史发现,以及随后关于该组织者如何在分子水平上发挥作用的研究。在这篇评论中,我们重点关注两个主题。首先,我们回顾了 BMP 形态发生素梯度是如何形成的,以维持果蝇幼虫翅膀 imaginal 盘和早期胚胎的生长和模式形成。其次,我们讨论了 BMP 信号如何以依赖于上下文的方式被紧密控制,以及信号和组织动态如何被耦合以促进复杂组织结构的形成。最后,我们论证了这些概念在未来如何进一步发展,以更好地理解 BMP 信号在动物发育中的意义。

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