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Her9控制后脑边界细胞的干性特性。

Her9 controls the stemness properties of hindbrain boundary cells.

作者信息

Engel-Pizcueta Carolyn, Hevia Covadonga F, Voltes Adrià, Livet Jean, Pujades Cristina

机构信息

Department of Medicine and Life Sciences, Universitat Pompeu Fabra, 08003 Barcelona, Spain.

Sorbonne Université, INSERM, CNRS, Institut de la Vision, 75012 Paris, France.

出版信息

Development. 2025 Jan 1;152(1). doi: 10.1242/dev.203164. Epub 2025 Jan 2.

Abstract

The different spatiotemporal distribution of progenitor and neurogenic capacities permits that brain regions engage asynchronously in neurogenesis. In the hindbrain, rhombomere progenitor cells contribute to neurons during the first neurogenic phase, whereas boundary cells participate later. To analyze what maintains boundary cells as non-neurogenic progenitors, we addressed the role of Her9, a zebrafish Hes1-related protein. her9 expression is temporarily sustained in boundary cells independently of Notch at early embryonic stages, while they are non-neurogenic progenitors. Complementary functional approaches show that Her9 inhibits the onset of Notch signaling and the neurogenic program, keeping boundary cells as progenitors. Multicolor clonal analysis combined with genetic perturbations reveal that Her9 expands boundary progenitors by promoting symmetric proliferative and preventing neurogenic cell divisions. Her9 also regulates the proliferation of boundary cells by inhibiting the cell cycle arrest gene cdkn1ca and interplaying with Cyclin D1. Moreover, her9 is enriched in hindbrain radial glial cells at late embryonic stages independently of Notch. Together these data demonstrate that Her9 maintains the stemness properties of hindbrain boundary progenitors and late radial glial cells, ensuring the different temporal distribution of neurogenic capacities within the hindbrain.

摘要

祖细胞和神经发生能力的不同时空分布使得脑区在神经发生过程中异步参与。在后脑中,菱脑节祖细胞在第一个神经发生阶段对神经元有贡献,而边界细胞则在稍后阶段参与。为了分析是什么维持边界细胞作为非神经发生祖细胞,我们研究了斑马鱼中与Hes1相关的蛋白Her9的作用。在胚胎早期阶段,her9表达在边界细胞中暂时独立于Notch信号持续存在,此时它们是非神经发生祖细胞。互补的功能研究方法表明,Her9抑制Notch信号的启动和神经发生程序,使边界细胞保持为祖细胞。多色克隆分析结合基因扰动揭示,Her9通过促进对称增殖和阻止神经发生细胞分裂来扩大边界祖细胞。Her9还通过抑制细胞周期停滞基因cdkn1ca并与细胞周期蛋白D1相互作用来调节边界细胞的增殖。此外,在胚胎后期阶段,her9在独立于Notch信号的后脑放射状胶质细胞中富集。这些数据共同表明,Her9维持后脑边界祖细胞和后期放射状胶质细胞的干性特性,确保后脑中神经发生能力的不同时间分布。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7454/11829766/4d718a629189/develop-152-203164-g1.jpg

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