Fatty acid synthesis promotes mtDNA release via ETS1-mediated oligomerization of VDAC1 facilitating endothelial dysfunction in sepsis-induced lung injury

IF 13.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Shiyuan He, Tingting Pan, Rui Tian, Qian He, Decui Cheng, Hongping Qu, Ranran Li, Ruoming Tan
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Abstract

Sepsis involves endothelial cell dysfunction leading to the development of lung injury. Fatty acid synthesis contributes to the development of inflammatory injury in sepsis. However, the regulatory mechanisms of fatty acid synthesis-related endothelial activation remain unclear. In this study, we found that fatty acid synthesis in patients with sepsis was greatly disordered. Inhibition of fatty acid synthesis significantly alleviated sepsis-induced endothelial damage and lung injury both in vitro and in vivo. We further found that the release of mtDNA participated in fatty acid synthesis-related regulation of endothelial inflammatory and coagulation activation. Mechanistically, fatty acid synthesis promoted the oligomerization of voltage-dependent anion channel 1 (VDAC1) via ETS proto-oncogene 1 (ETS1)-mediated inhibition of VDAC1 ubiquitination, thereby leading to the increased release of mtDNA and subsequent activation of cGAS-STING signaling and pyroptosis in endothelial cells. Our findings revealed that fatty acid synthesis promoted endothelial dysfunction through mtDNA release, providing new insight into the therapeutic strategies for treating sepsis-associated lung injury.

Abstract Image

脂肪酸合成通过ets1介导的VDAC1寡聚化促进mtDNA释放,促进败血症诱导的肺损伤中内皮功能障碍
脓毒症涉及内皮细胞功能障碍,导致肺损伤的发展。脂肪酸合成有助于败血症中炎症性损伤的发展。然而,脂肪酸合成相关的内皮细胞活化的调控机制尚不清楚。在这项研究中,我们发现脓毒症患者的脂肪酸合成严重紊乱。抑制脂肪酸合成可显著减轻脓毒症诱导的内皮损伤和肺损伤。我们进一步发现mtDNA的释放参与了脂肪酸合成相关的内皮炎症和凝血激活的调控。在机制上,脂肪酸合成通过ETS原癌基因1 (ETS1)介导的VDAC1泛素化抑制,促进电压依赖性阴离子通道1 (VDAC1)的寡聚化,从而导致内皮细胞mtDNA释放增加,随后激活cGAS-STING信号和热亡。我们的研究结果表明,脂肪酸合成通过mtDNA释放促进内皮功能障碍,为治疗败血症相关肺损伤的治疗策略提供了新的见解。
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来源期刊
Cell Death and Differentiation
Cell Death and Differentiation 生物-生化与分子生物学
CiteScore
24.70
自引率
1.60%
发文量
181
审稿时长
3 months
期刊介绍: Mission, vision and values of Cell Death & Differentiation: To devote itself to scientific excellence in the field of cell biology, molecular biology, and biochemistry of cell death and disease. To provide a unified forum for scientists and clinical researchers It is committed to the rapid publication of high quality original papers relating to these subjects, together with topical, usually solicited, reviews, meeting reports, editorial correspondence and occasional commentaries on controversial and scientifically informative issues.
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