Abstract

BackgroundHIV infection is enhanced by cell adhesions that form between infected and uninfected T cells called virological synapses (VS). VS are initiated by an interaction between Env and CD4 on cell surfaces and result in the recruitment of virus assembly to the site of cell–cell contact. However, the recruitment of Env to the VS and its relationship to Gag recruitment is not well defined.ResultsTo study the trafficking of HIV-1 Env through the VS, we constructed a molecular clone of HIV carrying a green fluorescent protein-Env fusion protein called, HIV Env-isfGFP-∆V1V2. The Env-isfGFP-∆V1V2 fusion protein does not produce virus particles on its own, but can be rescued by cotransfection with full-length HIV constructs and produce virus particles that package the fluorescent Env. These rescued fluorescent Env can participate in VS formation and can be used to directly image CD4-dependent Env transfer across VS from donor to target cells. The movements of fluorescently tagged Gag and Env to the VS and transfer into target cells can be also tracked through live imaging. Time lapse live imaging reveals evidence of limited Env accumulation at the site of cell–cell contact shortly after cell adhesion, followed by Gag re-distribution to contact area. Both Gag and Env can be recruited to form button-like spots characteristic of VS.ConclusionsEnv and Gag are recruited to the VS in a coordinated temporal sequence and subsequently transfer together across the synapse into the target cell. Env accumulations, when observed, are earlier than Gag re-distribution to the contact area during formation of VS.

Highlights

  • HIV infection is enhanced by cell adhesions that form between infected and uninfected T cells called virological synapses (VS)

  • As a strategy to minimize the disruption of Env trafficking signals, a superfolder allele of green fluorescent protein (GFP) [14], superfolder GFP (sfGFP), was inserted directly into HIV-1 envelope coding sequences to replace the V1V2 domain of Env (Fig. 1a)

  • Since the V1V2 domain is not required to generate infectious virus [11, 12], it is plausible that insertion of GFP into the base of this peptide loop could be compatible with infectivity

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Summary

Introduction

HIV infection is enhanced by cell adhesions that form between infected and uninfected T cells called virological synapses (VS). VS are initiated by an interaction between Env and CD4 on cell surfaces and result in the recruitment of virus assembly to the site of cell–cell contact. Fluorescent labeling of Env using enzymatically-coupled fluorophores has been employed to measure the conformational state of Env with single molecule FRET on virus particles [7]. These methods are well suited to track Env trafficking inside living cells.

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