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在斑马鱼神经回路中对星形胶质细胞形态发生和功能的实时成像。

Live-imaging of astrocyte morphogenesis and function in zebrafish neural circuits.

机构信息

Vollum Institute, Oregon Health & Science University, Portland, OR, USA.

Department of Biochemistry & Biophysics, University of California, San Francisco, San Francisco, CA, USA.

出版信息

Nat Neurosci. 2020 Oct;23(10):1297-1306. doi: 10.1038/s41593-020-0703-x. Epub 2020 Sep 7.

Abstract

How astrocytes grow and integrate into neural circuits remains poorly defined. Zebrafish are well suited for such investigations, but bona fide astrocytes have not been described in this system. Here we characterize a zebrafish cell type that is remarkably similar to mammalian astrocytes that derive from radial glial cells and elaborate processes to establish their territories at early larval stages. Zebrafish astrocytes associate closely with synapses, tile with one another and express markers, including Glast and glutamine synthetase. Once integrated into circuits, they exhibit whole-cell and microdomain Ca transients, which are sensitive to norepinephrine. Finally, using a cell-specific CRISPR-Cas9 approach, we demonstrate that fgfr3 and fgfr4 are required for vertebrate astrocyte morphogenesis. This work provides the first visualization of astrocyte morphogenesis from stem cell to post-mitotic astrocyte in vivo, identifies a role for Fgf receptors in vertebrate astrocytes and establishes zebrafish as a valuable new model system to study astrocyte biology in vivo.

摘要

星形胶质细胞如何生长并整合到神经回路中仍不清楚。斑马鱼非常适合此类研究,但在该系统中尚未描述真正的星形胶质细胞。在这里,我们描述了一种与哺乳动物星形胶质细胞非常相似的斑马鱼细胞类型,这种细胞来源于放射状胶质细胞,并在早期幼虫阶段延伸出突起以建立其领地。斑马鱼星形胶质细胞与突触紧密相连,彼此平铺,并表达 Glast 和谷氨酰胺合成酶等标记物。一旦整合到回路中,它们就会表现出全细胞和微区钙瞬变,对去甲肾上腺素敏感。最后,我们使用一种细胞特异性的 CRISPR-Cas9 方法证明了 fgfr3 和 fgfr4 对于脊椎动物星形胶质细胞形态发生是必需的。这项工作首次在体内从干细胞到有丝分裂后星形胶质细胞可视化了星形胶质细胞形态发生,确定了 Fgf 受体在脊椎动物星形胶质细胞中的作用,并确立了斑马鱼作为研究体内星形胶质细胞生物学的有价值的新模型系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b64d/7530038/575eddf68ca4/nihms-1615024-f0006.jpg

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