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BMP4 patterns Smad activity and generates stereotyped cell fate organization in spinal organoids

机译:BMP4模式SMAD活性并产生椎关膜有机体的陈规定型细胞命运组织

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摘要

Bone morphogenetic proteins (BMPs) are secreted regulators of cell fate in several developing tissues. In the embryonic spinal cord, they control the emergence of the neural crest, roof plate and distinct subsets of dorsal intemeurons. Although a gradient of BMP activity has been proposed to determine cell type identity in vivo, whether this is sufficient for pattern formation in vitro is unclear. Here, we demonstrate that exposure to BMP4 initiates distinct spatial dynamics of BMP signalling within the self-emerging epithelia of both mouse and human pluripotent stem cell-derived spinal organoids. The pattern of BMP signalling results in the stereotyped spatial arrangement of dorsal neural tube cell types, and concentration, timing and duration of BMP4 exposure modulate these patterns. Moreover, differences in the duration of competence time-windows between mouse and human account for the species-specific tempo of neural differentiation. Together, this study describes efficient methods for generating patterned subsets of dorsal intemeurons in spinal organoids and supports the conclusion that graded BMP activity orchestrates the spatial organization of the dorsal neural tube cellular diversity in mouse and human.
机译:骨形态发生蛋白(BMP)是在几种显影组织中的细胞命运的分泌稳压因子。在胚胎脊髓中,它们控制了神经嵴,屋顶板和不同亚内核的不同子集的出现。尽管已经提出了BMP活性的梯度来确定体内细胞型同一性,但这是否足以在体外形成模式形成。这里,我们证明暴露于BMP4在小鼠和人多能干细胞衍生的脊髓细胞体的自我新出现的上皮内启动BMP信号传导的不同空间动态。 BMP信号传导的模式导致背部神经管细胞类型的刻板空间排列,并浓度,BMP4曝光的浓度,定时和持续时间调节这些图案。此外,鼠标与人类之间的竞争力时间窗口持续时间的差异,用于神经分化的特异性节奏。该研究在一起描述了用于在脊髓有机体中产生图案化亚内核的有效方法,并支持评级BMP活动在小鼠和人中衡量背部神经管细胞多样性的空间组织的结论。

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