Disease-associated astrocyte epigenetic memory promotes CNS pathology

疾病 表观遗传学 星形胶质细胞 神经科学 病理 医学 生物 遗传学 中枢神经系统 基因
作者
Hong-Gyun Lee,Joseph M. Rone,Zhaorong Li,Camilo Faust Akl,Seung Won Shin,Joon-Hyuk Lee,Lucas E. Flausino,Florian Pernin,Chun‐Cheih Chao,Kilian Kleemann,Lena Srun,Tomer Illouz,Federico Giovannoni,Marc Charabati,Liliana M. Sanmarco,Jessica E. Kenison,Gavin Piester,Stéphanie Zandee,Jack P. Antel,Veit Rothhammer,Michael A. Wheeler,Alexandre Prat,Iain C. Clark,Francisco J. Quintana
标识
DOI:10.1101/2024.01.04.574196
摘要

Astrocytes play important roles in the central nervous system (CNS) physiology and pathology. Indeed, astrocyte subsets defined by specific transcriptional activation states contribute to the pathology of neurologic diseases, including multiple sclerosis (MS) and its preclinical model experimental autoimmune encephalomyelitis (EAE). However, little is known about the stability of these disease-associated astrocyte subsets, their regulation, and whether they integrate past stimulation events to respond to subsequent challenges. Here, we describe the identification of an epigenetically controlled memory astrocyte subset which exhibits exacerbated proinflammatory responses upon re-challenge. Specifically, using a combination of single-cell RNA sequencing (scRNA-seq), assay for transposase-accessible chromatin with sequencing (ATACseq), chromatin immunoprecipitation with sequencing (ChIPseq), focused interrogation of cells by nucleic acid detection and sequencing (FINDseq), and cell-specific in vivo CRISPR/Cas9 based genetic perturbation studies we established that astrocyte memory is controlled by the metabolic enzyme ATP citrate lyase (ACLY), which produces acetyl coenzyme A (acetylCoA) used by the histone acetyltransferase p300 to control chromatin accessibility. ACLY+p300+ memory astrocytes are increased in acute and chronic EAE models; the genetic targeting of ACLY+ p300+ astrocytes using CRISPR/Cas9 ameliorated EAE. We also detected responses consistent with a pro-inflammatory memory phenotype in human astrocytes in vitro; scRNAseq and immunohistochemistry studies detected increased ACLY+ p300+ astrocytes in chronic MS lesions. In summary, these studies define an epigenetically controlled memory astrocyte subset that promotes CNS pathology in EAE and, potentially, MS. These findings may guide novel therapeutic approaches for MS and other neurologic diseases.
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