Selenoprotein P Promotes the Development of Pulmonary Arterial Hypertension

医学 缺氧(环境) 肺动脉高压 肺动脉 基因剔除小鼠 右心室肥大 内科学 生物标志物 肌肉肥大 病理 内分泌学 心脏病学 受体 化学 氧气 生物化学 有机化学
作者
Nobuhiro Kikuchi,Kimio Satoh,Ryo Kurosawa,Nobuhiro Yaoita,Md. Elias-Al-Mamun,Mohammad Abdul Hai Siddique,Junichi Omura,Taijyu Satoh,Masamichi Nogi,Shinichiro Sunamura,Satoshi Miyata,Yoshiro Saito,Yasushi Hoshikawa,Yoshinori Okada,Hiroaki Shimokawa
出处
期刊:Circulation [Lippincott Williams & Wilkins]
卷期号:138 (6): 600-623 被引量:95
标识
DOI:10.1161/circulationaha.117.033113
摘要

BACKGROUND: Excessive proliferation and apoptosis resistance of pulmonary artery smooth muscle cells (PASMCs) are key mechanisms of pulmonary arterial hypertension (PAH). Despite the multiple combination therapy, a considerable number of patients develop severe pulmonary hypertension (PH) because of the lack of diagnostic biomarker and antiproliferative therapies for PASMCs. METHODS: Microarray analyses were used to identify a novel therapeutic target for PAH. In vitro experiments, including lung and serum samples from patients with PAH, cultured PAH-PASMCs, and high-throughput screening of 3336 low-molecular-weight compounds, were used for mechanistic study and exploring a novel therapeutic agent. Five genetically modified mouse strains, including PASMC-specific selenoprotein P (SeP) knockout mice and PH model rats, were used to study the role of SeP and therapeutic capacity of the compounds for the development of PH in vivo. RESULTS: mice showed reduced hypoxia-induced PH compared with controls, whereas neither liver-specific SeP knockout nor liver-specific SeP-overexpressing mice showed significant differences with controls. Altogether, protein levels of SeP in the lungs were associated with the development of PH. Mechanistic experiments demonstrated that SeP promotes PASMC proliferation and resistance to apoptosis through increased oxidative stress and mitochondrial dysfunction, which were associated with activated hypoxia-inducible factor-1α and dysregulated glutathione metabolism. It is important to note that the high-throughput screening of 3336 compounds identified that sanguinarine, a plant alkaloid with antiproliferative effects, reduced SeP expression and proliferation in PASMCs and ameliorated PH in mice and rats. CONCLUSIONS: These results indicate that SeP promotes the development of PH, suggesting that it is a novel biomarker and therapeutic target of the disorder.
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