D'Gama Percival P, Jeong Inyoung, Nygård Andreas Moe, Trinh Anh-Tuan, Yaksi Emre, Jurisch-Yaksi Nathalie
Department of Clinical and Molecular Medicine, Norwegian University of Science and Technology, Erling Skalgssons gate 1, 7030 Trondheim, Norway.
Kavli Institute for Systems Neuroscience and Centre for Algorithms in the Cortex, Norwegian University of Science and Technology, Olav Kyrres Gate 9, 7030 Trondheim, Norway.
iScience. 2024 May 22;27(6):110078. doi: 10.1016/j.isci.2024.110078. eCollection 2024 Jun 21.
Cilia are slender, hair-like structures extending from cell surfaces and playing essential roles in diverse physiological processes. Within the nervous system, primary cilia contribute to signaling and sensory perception, while motile cilia facilitate cerebrospinal fluid flow. Here, we investigated the impact of ciliary loss on neural circuit development using a zebrafish line displaying ciliogenesis defects. We found that cilia defects after neurulation affect neurogenesis and brain morphology, especially in the cerebellum, and lead to altered gene expression profiles. Using whole brain calcium imaging, we measured reduced light-evoked and spontaneous neuronal activity in all brain regions. By shedding light on the intricate role of cilia in neural circuit formation and function in the zebrafish, our work highlights their evolutionary conserved role in the brain and sets the stage for future analysis of ciliopathy models.
纤毛是从细胞表面伸出的细长毛发状结构,在多种生理过程中发挥着重要作用。在神经系统中,初级纤毛有助于信号传导和感官感知,而运动性纤毛则促进脑脊液流动。在此,我们利用一条表现出纤毛发生缺陷的斑马鱼品系,研究了纤毛缺失对神经回路发育的影响。我们发现,神经胚形成后纤毛缺陷会影响神经发生和脑形态,尤其是在小脑中,并导致基因表达谱改变。通过全脑钙成像,我们测量了所有脑区光诱发和自发神经元活动的减少。通过揭示纤毛在斑马鱼神经回路形成和功能中的复杂作用,我们的工作突出了它们在大脑中进化保守的作用,并为未来对纤毛病模型的分析奠定了基础。