Tyrosine-sulfated V2 peptides inhibit HIV-1 infection via coreceptor mimicry

EBioMedicine. 2016 Aug:10:45-54. doi: 10.1016/j.ebiom.2016.06.037. Epub 2016 Jun 26.

Abstract

Tyrosine sulfation is a post-translational modification that facilitates protein-protein interaction. Two sulfated tyrosines (Tys173 and Tys177) were recently identified within the second variable (V2) loop of the major HIV-1 envelope glycoprotein, gp120, and shown to contribute to stabilizing the intramolecular interaction between V2 and the third variable (V3) loop. Here, we report that tyrosine-sulfated peptides derived from V2 act as structural and functional mimics of the CCR5 N-terminus and potently block HIV-1 infection. Nuclear magnetic and surface plasmon resonance analyses indicate that a tyrosine-sulfated V2 peptide (pV2α-Tys) adopts a CCR5-like helical conformation and directly interacts with gp120 in a CD4-dependent fashion, competing with a CCR5 N-terminal peptide. Sulfated V2 mimics, but not their non-sulfated counterparts, inhibit HIV-1 entry and fusion by preventing coreceptor utilization, with the highly conserved C-terminal sulfotyrosine, Tys177, playing a dominant role. Unlike CCR5 N-terminal peptides, V2 mimics inhibit a broad range of HIV-1 strains irrespective of their coreceptor tropism, highlighting the overall structural conservation of the coreceptor-binding site in gp120. These results document the use of receptor mimicry by a retrovirus to occlude a key neutralization target site and provide leads for the design of therapeutic strategies against HIV-1.

Keywords: Coreceptors; Envelope; HIV-1; Immune evasion; Inhibitors; Molecular mimicry; Peptides; Trimer.

MeSH terms

  • Amino Acid Sequence
  • Anti-HIV Agents / chemistry
  • Anti-HIV Agents / metabolism
  • Anti-HIV Agents / pharmacology
  • Binding Sites
  • CD4 Antigens / chemistry
  • CD4 Antigens / metabolism
  • HIV Envelope Protein gp120 / chemistry
  • HIV Envelope Protein gp120 / metabolism*
  • HIV Infections / drug therapy
  • HIV Infections / metabolism*
  • HIV Infections / virology*
  • HIV-1 / drug effects
  • HIV-1 / physiology*
  • Humans
  • Molecular Docking Simulation
  • Molecular Dynamics Simulation
  • Molecular Mimicry*
  • Nuclear Magnetic Resonance, Biomolecular
  • Peptide Fragments / chemistry
  • Peptide Fragments / metabolism*
  • Peptide Fragments / pharmacology
  • Protein Binding
  • Protein Conformation
  • Receptors, CCR5 / chemistry
  • Receptors, CCR5 / metabolism*
  • Tyrosine / analogs & derivatives
  • Tyrosine / chemistry

Substances

  • Anti-HIV Agents
  • CD4 Antigens
  • HIV Envelope Protein gp120
  • Peptide Fragments
  • Receptors, CCR5
  • tyrosine O-sulfate
  • Tyrosine