ATP7A型
蛋白激酶B
下调和上调
内科学
内分泌学
超氧化物歧化酶
生物
化学
细胞生物学
磷酸化
生物化学
医学
ATP酶
氧化应激
酶
基因
作者
Sudhahar Varadarajan,Mustafa Nazir Okur,Zsolt Bagi,John P. O’Bryan,Nissim Hay,Ayako Makino,Vijay Patel,Shane A. Phillips,David W. Stepp,Masuko Ushio‐Fukai,Tohru Fukai
标识
DOI:10.1161/atvbaha.117.309819
摘要
OBJECTIVE: Copper transporter ATP7A (copper-transporting/ATPase) is required for full activation of SOD3 (extracellular superoxide dismutase), which is secreted from vascular smooth muscle cells (VSMCs) and anchors to endothelial cell surface to preserve endothelial function by scavenging extracellular superoxide. We reported that ATP7A protein expression and SOD3 activity are decreased in insulin-deficient type 1 diabetes mellitus vessels, thereby, inducing superoxide-mediated endothelial dysfunction, which are rescued by insulin treatment. However, it is unknown regarding the mechanism by which insulin increases ATP7A expression in VSMCs and whether ATP7A downregulation is observed in T2DM (type2 diabetes mellitus) mice and human in which insulin-Akt (protein kinase B) pathway is selectively impaired. APPROACH AND RESULTS: vessels or VSMCs, which is rescued by ATP7A overexpression. CONCLUSION: Akt2 plays a critical role in ATP7A protein stabilization and translocation to plasma membrane in VSMCs, which contributes to full activation of vascular SOD3 that protects against endothelial dysfunction in T2DM.
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