发育中的小鼠神经管通过 BMP 信号的时间中继形成自组织模式

IF 10.7 1区 生物学 Q1 CELL BIOLOGY Developmental cell Pub Date : 2024-11-26 DOI:10.1016/j.devcel.2024.10.024
Stefanie Lehr, David B. Brückner, Thomas George Minchington, Martina Greunz-Schindler, Jack Merrin, Edouard Hannezo, Anna Kicheva
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引用次数: 0

摘要

发育中的组织通过解读形态发生活性的动态变化来产生细胞类型的多样性。为了定量研究小鼠神经管中骨形态发生蛋白(BMP)信号的动态变化,我们开发了一种专为生长组织定制的胚胎干细胞分化系统。分化细胞在 BMP 信号顺序阶段的驱动下形成了惊人的背侧神经管细胞类型自组织模式,这在体外和体内都能观察到。数据驱动的生物物理建模显示,这些动态变化源于内源性 BMP 信号源对信号的快速负反馈和缓慢正向调节。因此,与在空间传播形态发生器信号的中继不同,我们发现了一种在时间上运行的 BMP 信号中继。这种机制允许快速的初始浓度敏感反应,这种反应会被稳健地终止,从而调节平衡的顺序细胞类型的生成。我们的研究提供了一个实验和理论框架,以了解信号动态是如何在发育组织中被利用的。
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Self-organized pattern formation in the developing mouse neural tube by a temporal relay of BMP signaling
Developing tissues interpret dynamic changes in morphogen activity to generate cell type diversity. To quantitatively study bone morphogenetic protein (BMP) signaling dynamics in the mouse neural tube, we developed an embryonic stem cell differentiation system tailored for growing tissues. Differentiating cells form striking self-organized patterns of dorsal neural tube cell types driven by sequential phases of BMP signaling that are observed both in vitro and in vivo. Data-driven biophysical modeling showed that these dynamics result from coupling fast negative feedback with slow positive regulation of signaling by the specification of an endogenous BMP source. Thus, in contrast to relays that propagate morphogen signaling in space, we identify a BMP signaling relay that operates in time. This mechanism allows for a rapid initial concentration-sensitive response that is robustly terminated, thereby regulating balanced sequential cell type generation. Our study provides an experimental and theoretical framework to understand how signaling dynamics are exploited in developing tissues.
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来源期刊
Developmental cell
Developmental cell 生物-发育生物学
CiteScore
18.90
自引率
1.70%
发文量
203
审稿时长
3-6 weeks
期刊介绍: Developmental Cell, established in 2001, is a comprehensive journal that explores a wide range of topics in cell and developmental biology. Our publication encompasses work across various disciplines within biology, with a particular emphasis on investigating the intersections between cell biology, developmental biology, and other related fields. Our primary objective is to present research conducted through a cell biological perspective, addressing the essential mechanisms governing cell function, cellular interactions, and responses to the environment. Moreover, we focus on understanding the collective behavior of cells, culminating in the formation of tissues, organs, and whole organisms, while also investigating the consequences of any malfunctions in these intricate processes.
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