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Cross-linking and lipid efflux properties of apoA-I mutants suggest direct association between apoA-I helices and ABCA1
Authors:Chroni Angeliki  Liu Tong  Fitzgerald Michael L  Freeman Mason W  Zannis Vassilis I
Institution:Molecular Genetics, Whitaker Cardiovascular Institute, Department of Medicine, Boston University School of Medicine, 715 Albany Street W509, Boston, Massachusetts 02118, USA.
Abstract:To explore the functional interactions between apoA-I and ABCA1, we correlated the cross-linking properties of several apoA-I mutants with their ability to promote cholesterol efflux. In a competitive cross-linking assay, amino-terminal deletion and double amino- and carboxy-terminal deletion mutants of apoA-I competed effectively the cross-linking of WT (125)I-apoA-I to ABCA1, while the carboxy-terminal deletion mutant apoA-IDelta(220-243)] competed poorly. Direct cross-linking of WT apoA-I, amino-terminal, and double deletion mutants of apoA-I to ABCA1 showed similar apparent K(d) values (49-74 nM), whereas the apparent K(d) values of the carboxy-terminal deletion mutants apoA-IDelta(185-243)] and apoA-IDelta(220-243)] were increased 3-fold. Analysis of several internal deletions and point mutants of apoA-I showed that apoA-IDelta(61-78)], apoA-IDelta(89-99)], apoA-IDelta(136-143)], apoA-IDelta(144-165)], apoA-ID102A/D103A], apoA-IE125K/E128K/K133E/E139K], apoA-IL141R], apoA-IR160V/H162A], and WT apoA-I had similar ABCA1-mediated lipid efflux, and all competed efficiently the cross-linking of WT (125)I-apoA-I to ABCA1. WT apoA-I and ABCA1 could be cross-linked with a 3 A cross-linker. The WT apoA-I, amino, carboxy and double deletion mutants of apoA-I showed differences in the cross-linking to WT ABCA1 and the mutant ABCA1W590S]. The findings are consistent with a direct association of different combinations of apoA-I helices with a complementary ABCA1 domain. Mutations that alter ABCA1/apoA-I association affect cholesterol efflux and inhibit biogenesis of HDL.
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