功能失调的自噬触发STING1激活,加剧肥胖相关性骨关节炎的软骨变性。

IF 14.3
Xiaomin Kang, Wenjuan Liu, Xiao Ma, Dongxu Feng, Hongzhi Sun, Shufang Wu
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引用次数: 0

摘要

肥胖是骨关节炎(OA)的主要危险因素,与游离脂肪酸(FFAs)循环水平的增加有关。然而,这种代谢性OA表型的分子机制尚不清楚。我们发现,喂食高脂肪饮食(HFD)的小鼠变得肥胖,并在膝关节出现OA。大细胞自噬/自噬活性在喂食HFD的小鼠关节软骨或暴露于FFAs的软骨细胞中显著降低。我们利用条件敲除(cKO)软骨特异性缺失Atg7的小鼠来抑制体内自噬和体外由shatg7慢病毒转导的软骨细胞,发现自噬缺乏加剧了hfd诱导的OA进展和软骨细胞外基质(ECM)降解。在机制上,STING1以自噬依赖的方式降解。自噬缺陷增加了STING1水平,进而激活STING1- tbk1 - irf3和MAP2K3/MKK3-MAPK/p38信号通路,从而触发软骨ECM降解。这些发现表明,hfd -自噬- sting1轴在OA的发展中起着关键作用,为肥胖相关OA提供了潜在的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dysfunctional autophagy triggers STING1 activation to exacerbate cartilage degeneration in obesity-associated osteoarthritis.

Obesity, a major risk factor for osteoarthritis (OA), is related to increased circulating levels of free fatty acids (FFAs). However, the molecular mechanism underlying this metabolic OA phenotype remains unknown. We found that mice fed a high-fat diet (HFD) became obese and developed OA in their knee joints. Macroautophagy/autophagy activity was significantly reduced in articular cartilage of mice fed an HFD or in chondrocytes exposed to FFAs. Using conditional knockout (cKO) mice with cartilage-specific deletion of Atg7 to inhibit autophagy in vivo and shAtg7-lentiviral-transduced chondrocytes in vitro, we showed that autophagy deficiency aggravated HFD-induced OA progression and chondrocyte extracellular matrix (ECM) degradation. Mechanistically, STING1 was degraded in an autophagy-dependent manner. Autophagy deficiency increased STING1 levels, in turn activating the STING1-TBK1-IRF3 and MAP2K3/MKK3-MAPK/p38 signaling pathways, thereby triggering cartilage ECM degradation. These findings suggested that the HFD-autophagy-STING1 axis played a pivotal role in OA development, providing a potential therapeutic strategy for obesity-associated OA.Abbreviation: 3-MA: 3-methyladenine; ACAN: aggrecan; AOD: average optical density; ATG7: autophagy related 7; BafA1: bafilomycin A1; CGAS: cyclic GMP-AMP synthase; cKO: conditional knockout; COL2A1: collagen, type II, alpha 1; DMM: destabilizing the medial meniscus; DMXAA: 5.

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