Michael Schuliga, Jane Read, Kaj E C Blokland, David W Waters, Janette Burgess, Cecilia Prêle, Steven E Mutsaers, Jade Jaffar, Glen Westall, Andrew Reid, Allen James, Christopher Grainge, Darryl A Knight
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Pharmacological inhibition of cGAS or its knockdown by silencing RNA (siRNA) diminished the escalation of IPF-LF senescence in culture over 7 days as measured by decreased p21 and p16 expression, histone 2AXγ phosphorylation and/or IL-6 production (P < 0.05, n = 5-8). The targeting of cGAS also attenuated etoposide-induced senescence in Ctrl-LFs (P < 0.05, n = 5-8). Levels of mitochondrial DNA (mDNA) detected by qPCR in the cytosol and medium of IPF-LFs or senescence-induced Ctrl-LFs were higher than Ctrl-LFs at baseline (P < 0.05, n = 5-7). The addition of DNAse I (100 U/ml) deaccelerated IPF-LF senescence (P < 0.05, n = 5), whereas ectopic mDNA or the induction of endogenous mDNA release augmented Ctrl-LF senescence in a cGAS-dependent manner (P < 0.05, n = 5). In conclusion, we provide evidence that cGAS reinforces lung fibroblast senescence involving damaged self DNA. 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Whilst evidence is accumulating that GMP-AMP synthase (cGAS) is crucial in perpetuating senescence by binding damaged DNA released into the cytosol, its role in IPF is not known. The present study examines the contributions of cGAS and self DNA to the senescence of lung fibroblasts from IPF patients (IPF-LFs) and age-matched controls (Ctrl-LFs). cGAS immunoreactivity was observed in regions of fibrosis associated with fibroblasts in lung tissue of IPF patients. Pharmacological inhibition of cGAS or its knockdown by silencing RNA (siRNA) diminished the escalation of IPF-LF senescence in culture over 7 days as measured by decreased p21 and p16 expression, histone 2AXγ phosphorylation and/or IL-6 production (P < 0.05, n = 5-8). The targeting of cGAS also attenuated etoposide-induced senescence in Ctrl-LFs (P < 0.05, n = 5-8). 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引用次数: 21
摘要
衰老和线粒体应激是相互加强的年龄相关过程,有助于特发性肺纤维化(IPF);一种主要发生在老年人身上的致命疾病。虽然越来越多的证据表明,GMP-AMP合成酶(cGAS)通过结合释放到细胞质中的受损DNA,在延缓衰老中起着至关重要的作用,但其在IPF中的作用尚不清楚。本研究探讨了cGAS和自身DNA对IPF患者(IPF- lfs)和年龄匹配对照组(Ctrl-LFs)肺成纤维细胞衰老的贡献。在IPF患者肺组织中与成纤维细胞相关的纤维化区域观察到cGAS的免疫反应性。通过降低p21和p16表达、组蛋白2AXγ磷酸化和/或IL-6产生,通过沉默RNA (siRNA)抑制cGAS或敲低cGAS可减少培养物中IPF-LF衰老的升级(P < 0.05, n = 5-8)。靶向cGAS也能减轻依托泊苷诱导的Ctrl-LFs衰老(P < 0.05, n = 5-8)。IPF-LFs和衰老诱导的Ctrl-LFs的细胞质和培养基中qPCR检测到的线粒体DNA (mDNA)水平高于基线时的Ctrl-LFs (P < 0.05, n = 5-7)。添加DNAse I (100 U/ml)能减缓IPF-LF的衰老(P < 0.05, n = 5),而异位mDNA或诱导内源性mDNA释放以cGAS依赖的方式增强Ctrl-LF的衰老(P < 0.05, n = 5)。总之,我们提供的证据表明,cGAS促进了涉及受损自身DNA的肺成纤维细胞衰老。靶向cGAS抑制衰老样反应可能在IPF治疗中具有潜在的重要治疗意义。
Self DNA perpetuates IPF lung fibroblast senescence in a cGAS-dependent manner.
Senescence and mitochondrial stress are mutually reinforcing age-related processes that contribute to idiopathic pulmonary fibrosis (IPF); a lethal disease that manifests primarily in the elderly. Whilst evidence is accumulating that GMP-AMP synthase (cGAS) is crucial in perpetuating senescence by binding damaged DNA released into the cytosol, its role in IPF is not known. The present study examines the contributions of cGAS and self DNA to the senescence of lung fibroblasts from IPF patients (IPF-LFs) and age-matched controls (Ctrl-LFs). cGAS immunoreactivity was observed in regions of fibrosis associated with fibroblasts in lung tissue of IPF patients. Pharmacological inhibition of cGAS or its knockdown by silencing RNA (siRNA) diminished the escalation of IPF-LF senescence in culture over 7 days as measured by decreased p21 and p16 expression, histone 2AXγ phosphorylation and/or IL-6 production (P < 0.05, n = 5-8). The targeting of cGAS also attenuated etoposide-induced senescence in Ctrl-LFs (P < 0.05, n = 5-8). Levels of mitochondrial DNA (mDNA) detected by qPCR in the cytosol and medium of IPF-LFs or senescence-induced Ctrl-LFs were higher than Ctrl-LFs at baseline (P < 0.05, n = 5-7). The addition of DNAse I (100 U/ml) deaccelerated IPF-LF senescence (P < 0.05, n = 5), whereas ectopic mDNA or the induction of endogenous mDNA release augmented Ctrl-LF senescence in a cGAS-dependent manner (P < 0.05, n = 5). In conclusion, we provide evidence that cGAS reinforces lung fibroblast senescence involving damaged self DNA. The targeting of cGAS to supress senescent-like responses may have potential important therapeutic implications in the treatment of IPF.