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Inhibition of the cGAS-STING pathway ameliorates the premature senescence hallmarks of Ataxia-Telangiectasia brain organoids

机译:抑制CGAS-Sting途径改善了Ataxia-Telanciectasia脑有机体的过早衰老标志

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Ataxia-telangiectasia (A-T) is a genetic disorder caused by the lack of functional ATM kinase. A-T is characterized by chronic inflammation, neurodegeneration and premature ageing features that are associated with increased genome instability, nuclear shape alterations, micronuclei accumulation, neuronal defects and premature entry into cellular senescence. The causal relationship between the detrimental inflammatory signature and the neurological deficiencies of A-T remains elusive. Here, we utilize human pluripotent stem cell-derived cortical brain organoids to study A-T neuropathology. Mechanistically, we show that the cGAS-STING pathway is required for the recognition of micronuclei and induction of a senescence-associated secretory phenotype (SASP) in A-T olfactory neurosphere-derived cells and brain organoids. We further demonstrate that cGAS and STING inhibition effectively suppresses self-DNA-triggered SASP expression in A-T brain organoids, inhibits astrocyte senescence and neurodegeneration, and ameliorates A-T brain organoid neuropathology. Our study thus reveals that increased cGAS and STING activity is an important contributor to chronic inflammation and premature senescence in the central nervous system of A-T and constitutes a novel therapeutic target for treating neuropathology in A-T patients.
机译:Ataxia-Telanciectasia(A-T)是由于缺乏功能atm激酶引起的遗传疾病。 A-T的特征在于慢性炎症,神经变性和过早的老化特征,与增加的基因组不稳定性,核形状改变,微核积累,神经元缺陷和过早进入细胞衰老相关。 A-T有害炎症特征与神经缺陷之间的因果关系仍然难以捉摸。在这里,我们利用人多能干细胞衍生的皮质脑有机体来研究A-T神经病理学。机械地,我们表明CGAS-Sting途径是识别微核和诱导A-T嗅觉神经圈衍生细胞和脑器细胞体中衰老相关的分泌表型(SASP)的诱导。我们进一步证明CGA和刺痛抑制有效地抑制了A-T脑器有机体中的自我DNA触发的SaSP表达,抑制星形胶质细胞衰老和神经变性,以及改善A-T脑有机体神经病理学。因此,我们的研究表明,CGA和Sting活性的增加是A-T的中枢神经系统中慢性炎症和过早衰老的重要因素,并构成了用于治疗A-T患者神经病理学的新疗法靶标。

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