Abstract
The C-terminal tail (CTT) of the HIV-1 gp41 envelope (Env) protein is increasingly recognized as an important determinant of Env structure and functional properties, including fusogenicity and antigenicity. While the CTT has been commonly referred to as the intracytoplasmic domain based on the assumption of an exclusive localization inside the membrane lipid bilayer, early antigenicity studies and recent biochemical analyses have produced a credible case for surface exposure of specific CTT sequences, including the classical Kennedy (KE) of gp41, leading to an alternative model of gp41 topology with multiple membrane-spanning domains. The current study was designed to test these conflicting models of CTT topology by characterizing the exposure of native CTT sequences and substituted VSV-G epitope tags in cell- and virionassociated Env to reference monoclonal antibodies (MAbs). Surface staining and FACS analysis of intact, Env-expressing cells demonstrated that the KE is accessible to binding by MAbs directed to both an inserted VSV-G epitope tag and the native KE sequence. Importantly, the VSV-G tag was only reactive when inserted into the KE; no reactivity was observed in cells expressing Env with the VSV-G tag inserted into the LLP2 domain. In contrast to cell-surface expressed Env, no binding of KE-directed MAbs was observed to Env on the surface of intact virions using either immune precipitation or surface plasmon resonance spectroscopy. These data indicate apparently distinct CTT topologies for virion- and cell-associated Env species and add to the case for a reconsideration of CTT topology that is more complex than currently envisioned. © 2010 Steckbeck et al.
Highlights
The HIV-1 envelope (Env) transmembrane protein, gp41, is typically considered a type I membrane protein with an extracellular N-terminus, a single membrane spanning domain, and a C-terminus forming a ~150 residue intracytoplasmic tail
Published studies have indicated an alternative or dynamic topology for portions of the C-terminal tail (CTT) that results in exposure of specific CTT segments on the membrane surface
To distinguish between these alternative CTT models, we evaluated the accessibility of a reference CTT sequence, the ''Kennedy epitope'' (KE), in viral and cellular membranes to map CTT topology relative to the lipid bilayer
Summary
Topology of the C-terminal tail of HIV-1 gp: Differential exposure of the Kennedy epitope on cell and viral membranes. Address: Center for Vaccine Research, University of Pittsburgh, Pittsburgh, PA, USA * Corresponding author from AIDS Vaccine 2009 Paris, France. Published: 22 October 2009 Retrovirology 2009, 6(Suppl 3):P170 doi:10.1186/1742-4690-6-S3-P170. AIDS Vaccine 2009 Anna Laura Ross Meeting abstracts – A single PDF containing all abstracts in this Supplement is available here. http://www.biomedcentral.com/content/pdf/1471-2105-10-S12-info.pdf
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