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胶质细胞中免疫相关基因的异染色质沉默对于血脑屏障完整性和果蝇的正常寿命是必需的。

Heterochromatic silencing of immune-related genes in glia is required for BBB integrity and normal lifespan in drosophila.

机构信息

Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai, China.

University of Chinese Academy of Sciences, Beijing, China.

出版信息

Aging Cell. 2023 Oct;22(10):e13947. doi: 10.1111/acel.13947. Epub 2023 Aug 18.

Abstract

Glia and neurons face different challenges in aging and may engage different mechanisms to maintain their morphology and functionality. Here, we report that adult-onset downregulation of a Drosophila gene CG32529/GLAD led to shortened lifespan and age-dependent brain degeneration. This regulation exhibited cell type and subtype-specificity, involving mainly surface glia (comprising the BBB) and cortex glia (wrapping neuronal soma) in flies. In accordance, pan-glial knockdown of GLAD disrupted BBB integrity and the glial meshwork. GLAD expression in fly heads decreased with age, and the RNA-seq analysis revealed that the most affected transcriptional changes by RNAi-GLAD were associated with upregulation of immune-related genes. Furthermore, we conducted a series of lifespan rescue experiments and the results indicated that the profound upregulation of immune and related pathways was not the consequence but cause of the degenerative phenotypes of the RNAi-GLAD flies. Finally, we showed that GLAD encoded a heterochromatin-associating protein that bound to the promoters of an array of immune-related genes and kept them silenced during the cell cycle. Together, our findings demonstrate a previously unappreciated role of heterochromatic gene silencing in repressing immunity in fly glia, which is required for maintaining BBB and brain integrity as well as normal lifespan.

摘要

神经胶质细胞和神经元在衰老过程中面临不同的挑战,可能会采用不同的机制来维持其形态和功能。在这里,我们报告果蝇中的一个基因 CG32529/GLAD 的成年后下调会导致寿命缩短和年龄依赖性的大脑退化。这种调节表现出细胞类型和亚型特异性,主要涉及表面神经胶质细胞(包括 BBB)和皮层神经胶质细胞(包裹神经元体)。相应地,神经胶质细胞的广泛敲低会破坏 BBB 的完整性和神经胶质细胞网格。随着年龄的增长,果蝇头部的 GLAD 表达减少,RNA-seq 分析显示,由 RNAi-GLAD 引起的受转录变化影响最大的与免疫相关基因的上调有关。此外,我们进行了一系列寿命挽救实验,结果表明,免疫和相关途径的深刻上调不是 RNAi-GLAD 果蝇退行性表型的结果,而是原因。最后,我们表明 GLAD 编码一种异染色质相关蛋白,它与一系列免疫相关基因的启动子结合,并在细胞周期中使它们沉默。总之,我们的研究结果表明,异染色质基因沉默在抑制果蝇神经胶质细胞中的免疫反应方面发挥了以前未被认识的作用,这对于维持 BBB 和大脑完整性以及正常寿命是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65b1/10577565/7011a0517816/ACEL-22-e13947-g004.jpg

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