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BMPs direct sensory interneuron identity in the developing spinal cord using signal-specific not morphogenic activities

机译:BMP通过信号特异性非形态发生活动指导发育中的脊髓中的感觉神经元身份

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摘要

The Bone Morphogenetic Protein (BMP) family reiteratively signals to direct disparate cellular fates throughout embryogenesis. In the developing dorsal spinal cord, multiple BMPs are required to specify sensory interneurons (INs). Previous studies suggested that the BMPs act as concentration-dependent morphogens to direct IN identity, analogous to the manner in which sonic hedgehog patterns the ventral spinal cord. However, it remains unresolved how multiple BMPs would cooperate to establish a unified morphogen gradient. Our studies support an alternative model: BMPs have signal-specific activities directing particular IN fates. Using chicken and mouse models, we show that the identity, not concentration, of the BMP ligand directs distinct dorsal identities. Individual BMPs promote progenitor patterning or neuronal differentiation by their activation of different type I BMP receptors and distinct modulations of the cell cycle. Together, this study shows that a ‘mix and match’ code of BMP signaling results in distinct classes of sensory INs.
机译:骨形态发生蛋白(BMP)家族反复发出信号,指导整个胚胎发生过程中不同的细胞命运。在发育中的背脊髓中,需要多个BMP来指定感觉神经元(IN)。先前的研究表明,BMPs作为浓度依赖的形态发生子来指导IN的身份,类似于声波刺猬对腹侧脊髓的作用方式。但是,如何结合多个BMP建立统一的形态发生原尚不清楚。我们的研究支持一种替代模型:BMP具有指导特定IN命运的信号特异性活动。使用鸡和小鼠模型,我们表明BMP配体的身份而非浓度指导着明显的背侧身份。各个BMP通过激活不同的I型BMP受体和细胞周期的不同调节来促进祖细胞模式或神经元分化。总之,这项研究表明,BMP信号的“混合和匹配”代码会导致不同类别的感觉IN。

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