分泌物
硒蛋白P
硒蛋白
铜
化学
细胞生物学
医学
生物
生物化学
氧化应激
有机化学
谷胱甘肽过氧化物酶
过氧化氢酶
作者
Maria Schwarz,C. Meyer,Alina Löser,Kristina Lossow,Julian Hackler,Christiane Ott,Susanne Jäger,Isabelle Mohr,Ella Ä. Eklund,Angana A.H. Patel,Nadia Gul,Samantha Alvarez,Ilayda Altinonder,Clotilde Wiel,Maria Maares,Hajo Haase,Anetta Härtlová,Tilman Grune,Matthias B. Schulze,Tanja Schwerdtle
标识
DOI:10.1038/s41467-023-39245-3
摘要
Selenium homeostasis depends on hepatic biosynthesis of selenoprotein P (SELENOP) and SELENOP-mediated transport from the liver to e.g. the brain. In addition, the liver maintains copper homeostasis. Selenium and copper metabolism are inversely regulated, as increasing copper and decreasing selenium levels are observed in blood during aging and inflammation. Here we show that copper treatment increased intracellular selenium and SELENOP in hepatocytes and decreased extracellular SELENOP levels. Hepatic accumulation of copper is a characteristic of Wilson's disease. Accordingly, SELENOP levels were low in serum of Wilson's disease patients and Wilson's rats. Mechanistically, drugs targeting protein transport in the Golgi complex mimicked some of the effects observed, indicating a disrupting effect of excessive copper on intracellular SELENOP transport resulting in its accumulation in the late Golgi. Our data suggest that hepatic copper levels determine SELENOP release from the liver and may affect selenium transport to peripheral organs such as the brain.
科研通智能强力驱动
Strongly Powered by AbleSci AI