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不同组合的 Notch 配体和受体调节 V2 中间神经元祖细胞的增殖和 V2a/V2b 细胞命运的决定。

Different combinations of Notch ligands and receptors regulate V2 interneuron progenitor proliferation and V2a/V2b cell fate determination.

机构信息

Graduate School of Science, Nagoya University, Nagoya, Aichi 464-8602, Japan.

Graduate School of Pharmaceutical Sciences, Chiba University, Chiba 260-8675, Japan.

出版信息

Dev Biol. 2014 Jul 15;391(2):196-206. doi: 10.1016/j.ydbio.2014.04.011. Epub 2014 Apr 24.

DOI:10.1016/j.ydbio.2014.04.011
PMID:24768892
Abstract

The broad diversity of neurons is vital to neuronal functions. During vertebrate development, the spinal cord is a site of sensory and motor tasks coordinated by interneurons and the ongoing neurogenesis. In the spinal cord, V2-interneuron (V2-IN) progenitors (p2) develop into excitatory V2a-INs and inhibitory V2b-INs. The balance of these two types of interneurons requires precise control in the number and timing of their production. Here, using zebrafish embryos with altered Notch signaling, we show that different combinations of Notch ligands and receptors regulate two functions: the maintenance of p2 progenitor cells and the V2a/V2b cell fate decision in V2-IN development. Two ligands, DeltaA and DeltaD, and three receptors, Notch1a, Notch1b, and Notch3 redundantly contribute to p2 progenitor maintenance. On the other hand, DeltaA, DeltaC, and Notch1a mainly contribute to the V2a/V2b cell fate determination. A ubiquitin ligase Mib, which activates Notch ligands, acts in both functions through its activation of DeltaA, DeltaC, and DeltaD. Moreover, p2 progenitor maintenance and V2a/V2b fate determination are not distinct temporal processes, but occur within the same time frame during development. In conclusion, V2-IN cell progenitor proliferation and V2a/V2b cell fate determination involve signaling through different sets of Notch ligand-receptor combinations that occur concurrently during development in zebrafish.

摘要

神经元的广泛多样性对神经元功能至关重要。在脊椎动物发育过程中,脊髓是感觉和运动任务的协调部位,由中间神经元和持续的神经发生组成。在脊髓中,V2 中间神经元(V2-IN)祖细胞(p2)发育为兴奋性 V2a-INs 和抑制性 V2b-INs。这两种中间神经元的平衡需要在它们的产生数量和时间上进行精确控制。在这里,我们使用改变了 Notch 信号的斑马鱼胚胎,表明不同的 Notch 配体和受体组合调节两种功能:p2 祖细胞的维持和 V2-IN 发育中 V2a/V2b 细胞命运决定。两种配体 DeltaA 和 DeltaD,以及三种受体 Notch1a、Notch1b 和 Notch3,冗余地促进 p2 祖细胞的维持。另一方面,DeltaA、DeltaC 和 Notch1a 主要有助于 V2a/V2b 细胞命运的确定。一种泛素连接酶 Mib 通过激活 Notch 配体,在这两个功能中起作用,通过其激活 DeltaA、DeltaC 和 DeltaD。此外,p2 祖细胞的维持和 V2a/V2b 命运决定不是不同的时间过程,而是在发育过程中同时发生。总之,V2-IN 细胞祖细胞增殖和 V2a/V2b 细胞命运决定涉及通过不同的 Notch 配体-受体组合进行信号传递,这些组合在斑马鱼发育过程中同时发生。

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