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神经元和内皮细胞对星形胶质细胞转录组的合作和竞争调控:对星形胶质细胞成熟的影响。

Cooperative and competitive regulation of the astrocytic transcriptome by neurons and endothelial cells: Impact on astrocyte maturation.

机构信息

Departments of Pediatrics and Systems Pharmacology & Translational Therapeutics, The Children's Hospital of Philadelphia, University of Pennsylvania, Philadelphia, Pennsylvania, USA.

Centre for Research in Neuroscience, Department of Neurology & Neurosurgery, Brain Repair and Integrative Neuroscience Program, The Research Institute of the McGill University Health Centre, Montreal General Hospital, Montreal, Quebec, Canada.

出版信息

J Neurochem. 2023 Oct;167(1):52-75. doi: 10.1111/jnc.15908. Epub 2023 Jul 31.

Abstract

Astrocytes have essential roles in central nervous system (CNS) health and disease. During development, immature astrocytes show complex interactions with neurons, endothelial cells, and other glial cell types. Our work and that of others have shown that these interactions are important for astrocytic maturation. However, whether and how these cells work together to control this process remains poorly understood. Here, we test the hypothesis that cooperative interactions of astrocytes with neurons and endothelial cells promote astrocytic maturation. Astrocytes were cultured alone, with neurons, endothelial cells, or a combination of both. This was followed by astrocyte sorting, RNA sequencing, and bioinformatic analysis to detect transcriptional changes. Across culture configurations, 7302 genes were differentially expressed by 4 or more fold and organized into 8 groups that demonstrate cooperative and antagonist effects of neurons and endothelia on astrocytes. We also discovered that neurons and endothelial cells caused splicing of 200 and 781 mRNAs, respectively. Changes in gene expression were validated using quantitative PCR, western blot (WB), and immunofluorescence analysis. We found that the transcriptomic data from the three-culture configurations correlated with protein expression of three representative targets (FAM107A, GAT3, and GLT1) in vivo. Alternative splicing results also correlated with cortical tissue isoform representation of a target (Fibronectin 1) at different developmental stages. By comparing our results to published transcriptomes of immature and mature astrocytes, we found that neurons or endothelia shift the astrocytic transcriptome toward a mature state and that the presence of both cell types has a greater effect on maturation than either cell alone. These results increase our understanding of cellular interactions/pathways that contribute to astrocytic maturation. They also provide insight into how alterations to neurons and/or endothelial cells may alter astrocytes with implications for astrocytic changes in CNS disorders and diseases.

摘要

星形胶质细胞在中枢神经系统 (CNS) 的健康和疾病中起着至关重要的作用。在发育过程中,未成熟的星形胶质细胞与神经元、内皮细胞和其他神经胶质细胞类型之间存在复杂的相互作用。我们和其他人的工作表明,这些相互作用对于星形胶质细胞的成熟很重要。然而,这些细胞是否以及如何协同工作来控制这个过程仍然知之甚少。在这里,我们测试了一个假设,即星形胶质细胞与神经元和内皮细胞的合作相互作用促进星形胶质细胞的成熟。星形胶质细胞单独培养,与神经元、内皮细胞或两者的组合培养。然后对星形胶质细胞进行分选,进行 RNA 测序和生物信息学分析,以检测转录变化。在所有的培养条件下,有 7302 个基因的表达水平发生了 4 倍或更多的差异,并被分为 8 组,显示了神经元和内皮细胞对星形胶质细胞的协同和拮抗作用。我们还发现神经元和内皮细胞分别导致 200 和 781 个 mRNA 的剪接。使用定量 PCR、western blot (WB) 和免疫荧光分析验证了基因表达的变化。我们发现,三种培养条件下的转录组数据与三种代表性靶标(FAM107A、GAT3 和 GLT1)在体内的蛋白质表达相关。替代剪接的结果也与目标(纤连蛋白 1)在不同发育阶段的皮质组织同工型表达相关。将我们的结果与未成熟和成熟星形胶质细胞的已发表转录组进行比较,我们发现神经元或内皮细胞将星形胶质细胞的转录组向成熟状态转移,并且两种细胞类型的存在比单独一种细胞类型对成熟的影响更大。这些结果增加了我们对促进星形胶质细胞成熟的细胞相互作用/途径的理解。它们还为神经元和/或内皮细胞的改变如何改变星形胶质细胞提供了深入的了解,这对中枢神经系统疾病和病症中星形胶质细胞的变化具有重要意义。

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