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Niemann-Pick C1 protein transports copper to the secretory compartment from late endosomes where ATP7B resides
Authors:Chikatoshi Yanagimoto  Masaru Harada  Hiroto Kumemura  Takumi Kawaguchi  Shinichiro Hanada  Yukio Koizumi  Haruaki Ninomiya  Toshihiro Sugiyama
Institution:a Division of Gastroenterology, Department of Medicine and Research Center for Innovative Cancer Therapy of the 21st Century COE Program for Medical Science, Kurume University School of Medicine, 67 Asahi-Machi, Kurume 830-0011, Japan
b The Third Department of Internal Medicine, University of Occupational and Environmental Health, Japan
c Department of Medicine, Onoba Hospital, Akita, Japan
d Biochemistry, Akita University School of Medicine, Akita, Japan
e Department of Neurobiology, Tottori University Faculty of Medicine, Japan
Abstract:Wilson disease is a genetic disorder characterized by the accumulation of copper in the body by defective biliary copper excretion. Wilson disease gene product (ATP7B) functions in copper incorporation to ceruloplasmin (Cp) and biliary copper excretion. However, copper metabolism in hepatocytes has been still unclear. Niemann-Pick disease type C (NPC) is a lipid storage disorder and the most commonly mutated gene is NPC1 and its gene product NPC1 is a late endosome protein and regulates intracellular vesicle traffic. In the present study, we induced NPC phenotype and examined the localization of ATP7B and secretion of holo-Cp, a copper-binding mature form of Cp. The vesicle traffic was modulated using U18666A, which induces NPC phenotype, and knock down of NPC1 by RNA interference. ATP7B colocalized with the late endosome markers, but not with the trans-Golgi network markers. U18666A and NPC1 knock down decreased holo-Cp secretion to culture medium, but did not affect the secretion of other secretory proteins. Copper accumulated in the cells after the treatment with U18666A. These findings suggest that ATP7B localizes in the late endosomes and that copper in the late endosomes is transported to the secretory compartment via NPC1-dependent pathway and incorporated into apo-Cp to form holo-Cp.
Keywords:AFP  α-fetoprotein  Cp  ceruloplasmin  FITC  fluorescence isothiocyanate  GFP  green fluorescent protein  Lamp  lysosome-associated membrane protein  MPR  mannose 6-phosphate receptor  NPC  Niemann-Pick disease type C  PBS  phosphate buffered saline  TGN  trans-Golgi network  TRITC  tetramethylrhodamine isothiocyanate
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