bafilomycin-a1 and Cholestasis--Intrahepatic

bafilomycin-a1 has been researched along with Cholestasis--Intrahepatic* in 1 studies

Other Studies

1 other study(ies) available for bafilomycin-a1 and Cholestasis--Intrahepatic

ArticleYear
Functional characterization of ABCB4 mutations found in progressive familial intrahepatic cholestasis type 3.
    Scientific reports, 2016, 06-03, Volume: 6

    Multidrug resistance 3 (MDR3), encoded by the ATP-binding cassette, subfamily B, member 4 gene (ABCB4), localizes to the canalicular membrane of hepatocytes and translocates phosphatidylcholine from the inner leaflet to the outer leaflet of the canalicular membrane. Progressive familial intrahepatic cholestasis type 3 (PFIC3) is a rare hepatic disease caused by genetic mutations of ABCB4. In this study, we characterized 8 ABCB4 mutations found in PFIC3 patients, using in vitro molecular assays. First, we examined the transport activity of each mutant by measuring its ATPase activity using paclitaxel or phosphatidylcholine. Then, the pathogenic mechanisms by which these mutations affect MDR3 were examined through immunoblotting, cell surface biotinylation, and immunofluorescence. As a result, three ABCB4 mutants showed significantly reduced transport activity. Among these mutants, one mutation A364V, located in intracellular domains, markedly decreased MDR3 expression on the plasma membrane, while the others did not affect the expression. The expression of MDR3 on the plasma membrane and transport activity of A364V was rescued by a pharmacological chaperone, cyclosporin A. Our study provides the molecular mechanisms of ABCB4 mutations and may contribute to the understanding of PFIC3 pathogenesis and the development of a mutation-specific targeted treatment for PFIC3.

    Topics: ATP Binding Cassette Transporter, Subfamily B; Cholestasis, Intrahepatic; Cyclosporine; Gene Expression; Genetic Association Studies; Genetic Predisposition to Disease; HEK293 Cells; Humans; Kinetics; Leupeptins; Macrolides; Mutation, Missense; Paclitaxel; Protein Transport

2016