Related Experiment Videos
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.
Abstract:
Mutations that negatively or positively affect the fusion properties of murine leukemia viruses (MLVs) have been found within all subdomains of their SU (surface) and TM (transmembrane) envelope units. Yet, the interrelations between these different regions of the envelope complex during the cell entry process are still elusive. Deletion of the histidine residue of the conserved PHQV motif at the amino terminus of the amphotropic or the ecotropic MLV SU resulted in the AdelH or the MOdelH fusion-defective mutant envelope, respectively. These delH mutant envelopes are incorporated on retroviral particles at normal densities and normally mediate virion binding to cells expressing the retroviral receptors. However, both their cell-cell and virus-cell fusogenicities were fully prevented at an early postbinding stage. We show here that the fusion defect of AdelH or MOdelH envelopes was also almost completely reverted by providing either soluble SU or a polypeptide encompassing the receptor-binding domain (RBD) to the target cells, provided that the integrity of the amino-terminal end of either polypeptide was preserved. Restoration of delH envelope fusogenicity was caused by activation of the target cells via specific interaction of the latter polypeptides with the retrovirus receptor rather than by their association with the delH envelope complexes. Moreover crossactivation of the target cells, leading to fusion activation of AdelH or MOdelH envelopes, was achieved by polypeptides containing various type C mammalian retrovirus RBDs, irrespective of the type of entry-defective glycoprotein that was used for infection. Our results indicate that although they recognize different receptors for binding to the cell surface, type C mammalian retroviruses use a common entry pathway which is activated by a conserved feature of their envelope glycoproteins.
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.