The Nef Protein of Human Immunodeficiency Virus Is a Broad-Spectrum Modulator of Chemokine Receptor Cell Surface Levels That Acts Independently of Classical Motifs for Receptor Endocytosis and G alpha sub(i) Signaling

Chemokine receptors (CKRs) are important physiological mediators of immune defense, inflammatory responses, and angiogenesis, and they have also been implicated in a number of viral disease processes. Here, we report that the Nef protein of human immunodeficiency virus (HIV) reduces cell surface lev...

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Veröffentlicht in:Molecular biology of the cell 2006-08, Vol.17 (8)
Hauptverfasser: Michel, Nico, Ganter, Kerstin, Venzke, Stephanie, Bitzegeio, Julia, Fackler, Oliver T, Keppler, Oliver T
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Sprache:eng
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Zusammenfassung:Chemokine receptors (CKRs) are important physiological mediators of immune defense, inflammatory responses, and angiogenesis, and they have also been implicated in a number of viral disease processes. Here, we report that the Nef protein of human immunodeficiency virus (HIV) reduces cell surface levels of eight different members of the CC- and CXC-family of CKRs by up to 92%. This broad-range activity required specific elements in HIV sub(SF2) Nef, including the proline-rich motif P sub(73)P sub(76)P sub(79)P sub(82) as well as the acidic cluster motif E sub(66)E sub(67)E sub(68)E sub(69), and Nef expression induced a marked perinuclear accumulation of CKRs. Surprisingly, receptor mutagenesis demonstrated that the cytoplasmic tail of CCR5 and CXCR4, which is critical for basal and ligand-mediated endocytosis, was completely dispensable for this Nef activity. In contrast, triple-mutation of the highly conserved DRY motif in the second intracellular CKR loop abolished the Nef-mediated down-regulation of CXCR4 independently of this motif's role in CKR binding to heterotrimeric G proteins and signaling via the G alpha sub(i) subunit. Thus, we identify the lentiviral pathogenicity factor Nef as a unique and broad-range modulator of CKR cell surface levels. Nef uses a mechanism that is distinct from well-established pathways orchestrating CKR metabolism and offers an interesting tool to study the multifaceted biology of CKRs.
ISSN:1059-1524
1059-1524
DOI:10.1091/mbc.E06-02-0117