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A BMP-FGF Morphogen Toggle Switch Drives the Ultrasensitive Expression of Multiple Genes in the Developing Forebrain

机译:BMP-FGF态氧触发开关驱动发育中的前脑中多个基因的超敏感表达

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摘要

Borders are important as they demarcate developing tissue into distinct functional units. A key challenge is the discovery of mechanisms that can convert morphogen gradients into tissue borders. While mechanisms that produce ultrasensitive cellular responses provide a solution, how extracellular morphogens drive such mechanisms remains poorly understood. Here, we show how Bone Morphogenetic Protein (BMP) and Fibroblast Growth Factor (FGF) pathways interact to generate ultrasensitivity and borders in the dorsal telencephalon. BMP and FGF signaling manipulations in explants produced border defects suggestive of cross inhibition within single cells, which was confirmed in dissociated cultures. Using mathematical modeling, we designed experiments that ruled out alternative cross inhibition mechanisms and identified a cross-inhibitory positive feedback (CIPF) mechanism, or “toggle switch”, which acts upstream of transcriptional targets in dorsal telencephalic cells. CIPF explained several cellular phenomena important for border formation such as threshold tuning, ultrasensitivity, and hysteresis. CIPF explicitly links graded morphogen signaling in the telencephalon to switch-like cellular responses and has the ability to form multiple borders and scale pattern to size. These benefits may apply to other developmental systems.
机译:边界很重要,因为它们将发育中的组织划分为不同的功能单元。一个关键的挑战是发现可以将形态发生子梯度转化为组织边界的机制。尽管产生超灵敏细胞应答的机制提供了解决方案,但细胞外形态发生因子如何驱动此类机制仍知之甚少。在这里,我们显示了骨形态发生蛋白(BMP)和成纤维细胞生长因子(FGF)途径如何相互作用,以在背侧端脑产生超敏性和边界。外植体中的BMP和FGF信号转导操作产生边界缺陷,提示在单个细胞内发生交叉抑制,这在解离的培养物中得到了证实。使用数学模型,我们设计了排除其他交叉抑制机制的实验,并确定了交叉抑制正反馈(CIPF)机制或“拨动开关”,其作用于背侧脑神经细胞转录靶标的上游。 CIPF解释了对边界形成很重要的几种细胞现象,例如阈值调整,超敏性和滞后现象。 CIPF明确地将端脑中的分级形态发生信号与开关样细胞反应联系起来,并具有形成多个边界和按比例缩放大小的能力。这些好处可能适用于其他开发系统。

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