The ABCA1 domain responsible for interaction with HIV-1 Nef is conformational and not linear
•HIV-1 protein Nef interacts with cellular cholesterol transporter ABCA1.•The C-terminal cytoplasmic tail of ABCA1 is necessary for ABCA1-Nef interaction.•The C-terminal cytoplasmic tail of ABCA1 does not bind Nef.•Molecular modeling predicts a conformational epitope responsible for Nef binding. HIV...
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Veröffentlicht in: | Biochemical and biophysical research communications 2014-01, Vol.444 (1), p.19-23 |
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Sprache: | eng |
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Zusammenfassung: | •HIV-1 protein Nef interacts with cellular cholesterol transporter ABCA1.•The C-terminal cytoplasmic tail of ABCA1 is necessary for ABCA1-Nef interaction.•The C-terminal cytoplasmic tail of ABCA1 does not bind Nef.•Molecular modeling predicts a conformational epitope responsible for Nef binding.
HIV-1 Nef is an accessory protein responsible for inactivation of a number of host cell proteins essential for anti-viral immune responses. In most cases, Nef binds to the target protein and directs it to a degradation pathway. Our previous studies demonstrated that Nef impairs activity of the cellular cholesterol transporter, ABCA1, and that Nef interacts with ABCA1. Mutation of the 2226DDDHLK motif in the C-terminal cytoplasmic tail of ABCA1 disrupted interaction with Nef. Here, we tested Nef interaction with the ABCA1 C-terminal cytoplasmic fragment using yeast 2-hybrid system assay and co-immunoprecipitation analysis in human cells. Surprisingly, analysis in a yeast 2-hybrid system did not reveal any interaction between Nef and the C-terminal cytoplasmic fragment of ABCA1. Using co-immunoprecipitation from HEK 293T cells expressing these polypeptides, only a very weak interaction could be detected. The 2226DDDHLK motif in the C-terminal cytoplasmic tail of ABCA1 found previously to be essential for interaction between ABCA1 and Nef is insufficient to bestow strong binding to Nef. Molecular modeling suggested that interaction with Nef may be mediated by a conformational epitope composed of the sequences within the cytoplasmic loop of ABCA1 and the C-terminal cytoplasmic domain. Studies are now underway to characterize this epitope. |
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ISSN: | 0006-291X 1090-2104 |
DOI: | 10.1016/j.bbrc.2013.12.141 |