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TREX1 对于人神经类器官中的小胶质细胞胆固醇稳态和少突胶质细胞终末分化是必需的。

TREX1 is required for microglial cholesterol homeostasis and oligodendrocyte terminal differentiation in human neural assembloids.

机构信息

Department of Pediatrics, School of Medicine, University of California San Diego, La Jolla, CA, 92093, USA.

Department of Cellular & Molecular Medicine, School of Medicine, University of California San Diego, La Jolla, CA, 92093, USA.

出版信息

Mol Psychiatry. 2024 Mar;29(3):566-579. doi: 10.1038/s41380-023-02348-w. Epub 2023 Dec 21.

Abstract

Three Prime Repair Exonuclease 1 (TREX1) gene mutations have been associated with Aicardi-Goutières Syndrome (AGS) - a rare, severe pediatric autoimmune disorder that primarily affects the brain and has a poorly understood etiology. Microglia are brain-resident macrophages indispensable for brain development and implicated in multiple neuroinflammatory diseases. However, the role of TREX1 - a DNase that cleaves cytosolic nucleic acids, preventing viral- and autoimmune-related inflammatory responses - in microglia biology remains to be elucidated. Here, we leverage a model of human embryonic stem cell (hESC)-derived engineered microglia-like cells, bulk, and single-cell transcriptomics, optical and transmission electron microscopy, and three-month-old assembloids composed of microglia and oligodendrocyte-containing organoids to interrogate TREX1 functions in human microglia. Our analyses suggest that TREX1 influences cholesterol metabolism, leading to an active microglial morphology with increased phagocytosis in the absence of TREX1. Notably, regulating cholesterol metabolism with an HMG-CoA reductase inhibitor, FDA-approved atorvastatin, rescues these microglial phenotypes. Functionally, TREX1 in microglia is necessary for the transition from gliogenic intermediate progenitors known as pre-oligodendrocyte precursor cells (pre-OPCs) to precursors of the oligodendrocyte lineage known as OPCs, impairing oligodendrogenesis in favor of astrogliogenesis in human assembloids. Together, these results suggest routes for therapeutic intervention in pathologies such as AGS based on microglia-specific molecular and cellular mechanisms.

摘要

三引物修复外切酶 1(TREX1)基因突变与 Aicardi-Goutières 综合征(AGS)有关 - 一种罕见的严重儿科自身免疫性疾病,主要影响大脑,其发病机制尚不清楚。小胶质细胞是脑驻留巨噬细胞,对大脑发育必不可少,并与多种神经炎症性疾病有关。然而,TREX1 的作用 - 一种切割细胞质核酸的 DNase,可防止病毒和自身免疫相关的炎症反应 - 在小胶质细胞生物学中的作用仍有待阐明。在这里,我们利用人胚胎干细胞(hESC)衍生的工程化小胶质样细胞、批量和单细胞转录组学、光学和透射电子显微镜以及由小胶质细胞和包含少突胶质细胞的类器官组成的三个月大的组装体来研究 TREX1 在人类小胶质细胞中的功能。我们的分析表明,TREX1 影响胆固醇代谢,导致在没有 TREX1 的情况下,小胶质细胞形态活跃,吞噬作用增加。值得注意的是,用 HMG-CoA 还原酶抑制剂阿托伐他汀调节胆固醇代谢可挽救这些小胶质细胞表型。功能上,小胶质细胞中的 TREX1 对于从称为少突胶质前体细胞(pre-OPC)的神经胶质中间祖细胞到称为少突胶质细胞前体细胞(OPC)的少突胶质谱系前体的转变是必要的,这会损害少突胶质细胞生成并有利于人类组装体中的星形胶质细胞生成。总之,这些结果表明,基于小胶质细胞特异性分子和细胞机制,可以为 AGS 等疾病提供治疗干预途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe7f/11153142/2f145bd9390c/41380_2023_2348_Fig1_HTML.jpg

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