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Thyroid hormone signaling specifies cone subtypes in human retinal organoids

机译:甲状腺激素信号传导可确定人视网膜类器官中的视锥细胞亚型

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摘要

The mechanisms underlying specification of neuronal subtypes within the human nervous system are largely unknown. The blue (S), green (M), and red (L) cones of the retina enable high-acuity daytime and color vision. To determine the mechanism that controls S versus L/M fates, we studied the differentiation of human retinal organoids. Organoids and retinas have similar distributions, expression profiles, and morphologies of cone subtypes. S cones are specified first, followed by L/M cones, and thyroid hormone signaling controls this temporal switch. Dynamic expression of thyroid hormone-degrading and -activating proteins within the retina ensures low signaling early to specify S cones and high signaling late to produce L/M cones. This work establishes organoids as a model for determining mechanisms of human development with promising utility for therapeutics and vision repair.
机译:在人类神经系统内神经元亚型规范的基础机制尚不清楚。视网膜的蓝色(S),绿色(M)和红色(L)视锥细胞可实现白天的高敏锐度和彩色视觉。为了确定控制S对L / M命运的机制,我们研究了人类视网膜类器官的分化。类器官和视网膜具有相似的分布,表达谱和视锥细胞亚型的形态。首先指定S视锥细胞,然后指定L / M视锥细胞,甲状腺激素信号控制该时间转换。视网膜内甲状腺激素降解和激活蛋白的动态表达可确保早期低信号传导(指定S视锥细胞)和高信号延迟产生L / M视锥细胞。这项工作建立了类器官作为确定人类发展机制的模型,有望用于治疗和视力修复。

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