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铁蛋白缺乏促进肺动脉高压中的内皮细胞衰老。

Frataxin deficiency promotes endothelial senescence in pulmonary hypertension.

机构信息

Center for Pulmonary Vascular Biology and Medicine, Pittsburgh Heart, Lung, Blood Vascular Medicine Institute, Divisions of Cardiology, Pulmonary, Allergy, and Critical Care Medicine and Rheumatology, Department of Medicine, University of Pittsburgh School of Medicine and University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania, USA.

University of Iowa Carver College of Medicine, Iowa City, Iowa, USA.

出版信息

J Clin Invest. 2021 Jun 1;131(11). doi: 10.1172/JCI136459.

Abstract

The dynamic regulation of endothelial pathophenotypes in pulmonary hypertension (PH) remains undefined. Cellular senescence is linked to PH with intracardiac shunts; however, its regulation across PH subtypes is unknown. Since endothelial deficiency of iron-sulfur (Fe-S) clusters is pathogenic in PH, we hypothesized that a Fe-S biogenesis protein, frataxin (FXN), controls endothelial senescence. An endothelial subpopulation in rodent and patient lungs across PH subtypes exhibited reduced FXN and elevated senescence. In vitro, hypoxic and inflammatory FXN deficiency abrogated activity of endothelial Fe-S-containing polymerases, promoting replication stress, DNA damage response, and senescence. This was also observed in stem cell-derived endothelial cells from Friedreich's ataxia (FRDA), a genetic disease of FXN deficiency, ataxia, and cardiomyopathy, often with PH. In vivo, FXN deficiency-dependent senescence drove vessel inflammation, remodeling, and PH, whereas pharmacologic removal of senescent cells in Fxn-deficient rodents ameliorated PH. These data offer a model of endothelial biology in PH, where FXN deficiency generates a senescent endothelial subpopulation, promoting vascular inflammatory and proliferative signals in other cells to drive disease. These findings also establish an endothelial etiology for PH in FRDA and left heart disease and support therapeutic development of senolytic drugs, reversing effects of Fe-S deficiency across PH subtypes.

摘要

肺动脉高压(PH)中内皮病理表型的动态调节仍未确定。细胞衰老与心内分流的 PH 有关;然而,其在 PH 各亚型中的调节尚不清楚。由于铁硫(Fe-S)簇在内皮中的缺陷是 PH 的致病因素,我们假设一种 Fe-S 生物发生蛋白,即 frataxin(FXN),可以控制内皮细胞衰老。在 PH 各亚型的啮齿动物和患者肺中的一个内皮细胞亚群中,FXN 减少,衰老增加。在体外,缺氧和炎症 FXN 缺乏会破坏内皮细胞中含有 Fe-S 的聚合酶的活性,从而促进复制应激、DNA 损伤反应和衰老。在弗里德里希共济失调症(FRDA)的干细胞衍生的内皮细胞中也观察到了这种情况,FRDA 是一种 FXN 缺乏、共济失调和心肌病的遗传疾病,常伴有 PH。在体内,FXN 缺乏依赖性衰老驱动血管炎症、重塑和 PH,而在 FXN 缺陷的啮齿动物中用药物去除衰老细胞可改善 PH。这些数据提供了 PH 中内皮生物学的模型,其中 FXN 缺乏会产生衰老的内皮细胞亚群,从而促进其他细胞中的血管炎症和增殖信号,进而导致疾病。这些发现还为 FRDA 和左心疾病中的 PH 确立了内皮病因,并支持开发针对衰老细胞的治疗药物,从而逆转 PH 各亚型中的 Fe-S 缺乏。

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