Nitric oxide mediates aortic disease in mice deficient in the metalloprotease Adamts1 and in a mouse model of Marfan syndrome

作者:Oller Jorge; Mendez Barbero Nerea; Josue Ruiz E; Villahoz Silvia; Renard Marjolijn; Canelas Lizet I; Briones Ana M; Alberca Rut; Lozano Vidal Noelia; Hurle Maria A; Milewicz Dianna; Evangelista Arturo; Salaices Mercedes; Nistal J Francisco; Jesus Jimenez Borreguero Luis; De Backer Julie; Campanero Miguel R*; Miguel Redondo Juan
来源:Nature Medicine, 2017, 23(2): 200-212.
DOI:10.1038/nm.4266

摘要

Heritable thoracic aortic aneurysms and dissections (TAAD), including Marfan syndrome (MFS), currently lack a cure, and causative mutations have been identified for only a fraction of affected families. Here we identify the metalloproteinase ADAMTS1 and inducible nitric oxide synthase (NOS2) as therapeutic targets in individuals with TAAD. We show that Adamts1 is a major mediator of vascular homeostasis, given that genetic haploinsufficiency of Adamts1 in mice causes TAAD similar to MFS. Aortic nitric oxide and Nos2 levels were higher in Adamts1-deficient mice and in a mouse model of MFS (hereafter referred to as MFS mice), and Nos2 inactivation protected both types of mice from aortic pathology. Pharmacological inhibition of Nos2 rapidly reversed aortic dilation and medial degeneration in young Adamts1-deficient mice and in young or old MFS mice. Patients with MFS showed elevated NOS2 and decreased ADAMTS1 protein levels in the aorta. These findings uncover a possible causative role for the ADAMTS1 NOS2 axis in human TAAD and warrant evaluation of NOS2 inhibitors for therapy.

  • 出版日期2017-2