cGAS–STING drives ageing-related inflammation and neurodegeneration

小胶质细胞 老化 炎症 神经退行性变 神经毒性 先天免疫系统 生物 神经科学 细胞生物学 免疫系统 免疫学 医学 遗传学 病理 毒性 疾病 内科学 工程类 航空航天工程
作者
Muhammet F. Gülen,Natasha Samson,Alexander Keller,Marius Schwabenland,Chong Liu,Selene Glück,Vivek V. Thacker,Lucie Favre,Bastien Mangeat,Lona J. Kroese,Paul Krimpenfort,Marco Prinz,Andrea Ablasser
出处
期刊:Nature [Nature Portfolio]
卷期号:620 (7973): 374-380 被引量:908
标识
DOI:10.1038/s41586-023-06373-1
摘要

Abstract Low-grade inflammation is a hallmark of old age and a central driver of ageing-associated impairment and disease 1 . Multiple factors can contribute to ageing-associated inflammation 2 ; however, the molecular pathways that transduce aberrant inflammatory signalling and their impact in natural ageing remain unclear. Here we show that the cGAS–STING signalling pathway, which mediates immune sensing of DNA 3 , is a critical driver of chronic inflammation and functional decline during ageing. Blockade of STING suppresses the inflammatory phenotypes of senescent human cells and tissues, attenuates ageing-related inflammation in multiple peripheral organs and the brain in mice, and leads to an improvement in tissue function. Focusing on the ageing brain, we reveal that activation of STING triggers reactive microglial transcriptional states, neurodegeneration and cognitive decline. Cytosolic DNA released from perturbed mitochondria elicits cGAS activity in old microglia, defining a mechanism by which cGAS–STING signalling is engaged in the ageing brain. Single-nucleus RNA-sequencing analysis of microglia and hippocampi of a cGAS gain-of-function mouse model demonstrates that engagement of cGAS in microglia is sufficient to direct ageing-associated transcriptional microglial states leading to bystander cell inflammation, neurotoxicity and impaired memory capacity. Our findings establish the cGAS–STING pathway as a driver of ageing-related inflammation in peripheral organs and the brain, and reveal blockade of cGAS–STING signalling as a potential strategy to halt neurodegenerative processes during old age.
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