Interferon-stimulated gene 15 pathway is a novel mediator of endothelial dysfunction and aneurysms development in angiotensin II infused mice through increased oxidative stress

干扰素刺激基因 15 通路是血管紧张素 II 注入小鼠中通过增加氧化应激导致内皮功能障碍和动脉瘤发展的一种新介质

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作者:María González-Amor, Ana B García-Redondo, Inmaculada Jorge, Guillermo Zalba, Martina Becares, María J Ruiz-Rodríguez, Cristina Rodríguez, Hugo Bermeo, Raquel Rodrigues-Díez, Francisco J Rios, Augusto C Montezano, Jose Martínez-González, Jesús Vázquez, Juan Miguel Redondo, Rhian M Touyz, Susana Guer

Aims

Interferon-stimulated gene 15 (ISG15) encodes a ubiquitin-like protein that induces a reversible post-translational modification (ISGylation) and can also be secreted as a free form. ISG15 plays an essential role as host-defence response to microbial infection; however, its contribution to vascular damage associated with hypertension is unknown.

Conclusion

ISG15 is a novel mediator of vascular damage in hypertension through oxidative stress and inflammation.

Results

Bioinformatics identified ISG15 as a mediator of hypertension-associated vascular damage. ISG15 expression positively correlated with systolic and diastolic blood pressure and carotid intima-media thickness in human peripheral blood mononuclear cells. Consistently, Isg15 expression was enhanced in aorta from hypertension models and in angiotensin II (AngII)-treated vascular cells and macrophages. Proteomics revealed differential expression of proteins implicated in cardiovascular function, extracellular matrix and remodelling, and vascular redox state in aorta from AngII-infused ISG15-/- mice. Moreover, ISG15-/- mice were protected against AngII-induced hypertension, vascular stiffness, elastin remodelling, endothelial dysfunction, and expression of inflammatory and oxidative stress markers. Conversely, mice with excessive ISGylation (USP18C61A) show enhanced AngII-induced hypertension, vascular fibrosis, inflammation and reactive oxygen species (ROS) generation along with elastin breaks, aortic dilation, and rupture. Accordingly, human and murine abdominal aortic aneurysms showed augmented ISG15 expression. Mechanistically, ISG15 induces vascular ROS production, while antioxidant treatment prevented ISG15-induced endothelial dysfunction and vascular remodelling.

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