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Published on: March 8, 2012
Association between disruption of CD4 receptor dimerization and increased human immunodeficiency virus type 1 entry
Rachel Bourgeois1, Johanne Mercier, Isabelle Paquette-Brooks
1Department of Microbiology and Immunology, Université de Montréal, Montreal, Quebec, Canada. rachel.bourgeois@umontreal.ca
Insights
Monomeric forms of the CD4 receptor are preferred by the human immunodeficiency virus (HIV) for cell entry. Altering the CD4 dimer/monomer ratio may influence HIV entry efficiency into target cells.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Human immunodeficiency virus (HIV) entry into target cells involves interactions between envelope glycoproteins, CD4 receptors, and coreceptors (CXCR4/CCR5).
- CD4 molecules exist as monomers and dimers on lymphocyte and monocyte surfaces.
- Extracellular domains D1 and D4 of CD4 are implicated in receptor dimerization.
Purpose of the Study:
- To investigate the role of CD4 dimerization in HIV-1 entry.
- To analyze the impact of CD4 dimerization defects on viral entry efficiency.
Main Methods:
- Utilized A201 cell lines expressing CD4 mutants with dimerization defects (D1 and D4 mutants).
- Employed HIV-1 entry assays using beta-lactamase-Vpr or luciferase reporter activities.
- Tested viruses with envelope glycoproteins from primary and laboratory-adapted strains.
Main Results:
- Disruption of CD4 dimerization was associated with increased HIV-1 entry efficiency.
- Evidence suggests a link between impaired CD4 dimerization and enhanced viral entry.
Conclusions:
- Monomeric CD4 forms appear to be preferentially utilized by HIV-1 for cellular entry.
- The ratio of CD4 dimers to monomers on target cell surfaces may modulate HIV-1 entry efficiency.
Background:
Human immunodeficiency virus (HIV) enters target cells by a membrane fusion process that involves a series of sequential interactions between its envelope glycoproteins, the CD4 receptor and CXCR4/CCR5 coreceptors. CD4 molecules are expressed at the cell surface of lymphocytes and monocytes mainly as monomers, but basal levels of CD4 dimers are also present at the cell surface of these cells. Previous evidence indicates that the membrane distal and proximal extracellular domains of CD4, respectively D1 and D4, are involved in receptor dimerization.
Results:
Here, we have used A201 cell lines expressing two CD4 mutants, CD4-E91K, E92K (D1 mutant) and CD4-Q344E (D4 mutant), harboring dimerization defects to analyze the role of CD4 dimerization in HIV-1 entry. Using entry assays based on beta-lactamase-Vpr or luciferase reporter activities, as well as virus encoding envelope glycoproteins derived from primary or laboratory-adapted strains, we obtained evidence suggesting an association between disruption of CD4 dimerization and increased viral entry efficiency.
Conclusion:
Taken together, our results suggest that monomeric forms of CD4 are preferentially used by HIV-1 to gain entry into target cells, thus implying that the dimer/monomer ratio at the cell surface of HIV-1 target cells may modulate the efficiency of HIV-1 entry.
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