School of Biosciences, University of Sheffield, Sheffield, United Kingdom.
Solomon H. Snyder Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, United States.
Elife. 2023 Feb 10;12:e83133. doi: 10.7554/eLife.83133.
The tuberal hypothalamus controls life-supporting homeostatic processes, but despite its fundamental role, the cells and signalling pathways that specify this unique region of the central nervous system in embryogenesis are poorly characterised. Here, we combine experimental and bioinformatic approaches in the embryonic chick to show that the tuberal hypothalamus is progressively generated from hypothalamic floor plate-like cells. Fate-mapping studies show that a stream of tuberal progenitors develops in the anterior-ventral neural tube as a wave of neuroepithelial-derived BMP signalling sweeps from anterior to posterior through the hypothalamic floor plate. As later-specified posterior tuberal progenitors are generated, early specified anterior tuberal progenitors become progressively more distant from these BMP signals and differentiate into tuberal neurogenic cells. Gain- and loss-of-function experiments in vivo and ex vivo show that BMP signalling initiates tuberal progenitor specification, but must be eliminated for these to progress to anterior neurogenic progenitors. scRNA-Seq profiling shows that tuberal progenitors that are specified after the major period of anterior tuberal specification begin to upregulate genes that characterise radial glial cells. This study provides an integrated account of the development of the tuberal hypothalamus.
结节下丘脑控制着维持生命的体内平衡过程,但尽管它具有重要作用,但其在胚胎发生中指定中枢神经系统这一独特区域的细胞和信号通路仍未得到充分描述。在这里,我们结合胚胎鸡的实验和生物信息学方法表明,结节下丘脑是从下丘脑基板样细胞逐渐产生的。命运图谱研究表明,随着 BMP 信号从前到后穿过下丘脑基板传播,在前-腹侧神经管中形成了一波结节前体祖细胞。随着后来指定的后部结节前体祖细胞的产生,早期指定的前部结节前体祖细胞逐渐远离这些 BMP 信号,并分化为结节神经发生细胞。体内和体外的增益和损失功能实验表明,BMP 信号启动了结节前体祖细胞的指定,但必须消除这些信号才能使它们向前神经发生祖细胞发展。scRNA-Seq 分析表明,在主要的前结节指定时期之后指定的结节前体祖细胞开始上调表征放射状胶质细胞的基因。这项研究提供了一个关于结节下丘脑发育的综合描述。