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Activation of a cell entry pathway common to type C mammalian retroviruses by soluble envelope fragments

D Lavillette1, A Ruggieri, S J Russell

  • 1Laboratoire de Vectorologie Rétrovirale et Thérapie Génique, Unité de Virologie Humaine, INSERM U412, Ecole Normale Supérieure de Lyon, Lyon, France.

Journal of Virology
|December 10, 1999
PubMed

Insights

Murine leukemia virus (MLV) envelope mutations block cell entry. Restoring fusion requires specific receptor interactions, revealing a common entry pathway for type C mammalian retroviruses.

Area of Science:

  • Virology
  • Molecular Biology
  • Cell Biology

Background:

  • Murine leukemia viruses (MLVs) utilize envelope glycoproteins (SU and TM) for cell entry.
  • Mutations in MLV envelope subdomains affect viral fusion properties, but inter-region communication remains unclear.

Purpose of the Study:

  • To investigate the role of the amino-terminal PHQV motif in the SU domain of MLV envelopes.
  • To elucidate the mechanism of cell entry and fusion in MLVs, particularly the interaction between viral envelope and target cells.

Main Methods:

  • Generated fusion-defective MLV envelope mutants (AdelH, MOdelH) by deleting a conserved histidine residue.
  • Assessed viral binding and fusion capabilities of mutant envelopes.
  • Investigated the effect of soluble SU or receptor-binding domain (RBD) polypeptides on restoring fusion.

Main Results:

  • Deletion of the histidine residue in the PHQV motif abolished MLV envelope-mediated cell-cell and virus-cell fusion, despite normal binding.
  • Fusion defects were rescued by soluble SU or RBD polypeptides that specifically interacted with target cell receptors.
  • Cross-activation of fusion was observed using RBDs from different type C mammalian retroviruses, indicating a conserved entry mechanism.

Conclusions:

  • The conserved amino-terminal region of MLV SU is critical for fusion.
  • MLV cell entry relies on target cell activation via specific retrovirus receptor interactions.
  • Type C mammalian retroviruses share a common cell entry pathway activated by conserved features of their envelope glycoproteins.

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