Modulation of CD4 lateral interaction with lymphocyte surface molecules induced by HIV-1 gp120

U Dianzani1, M Bragardo, D Buonfiglio

  • 1Dipartimento di Scienze Mediche, Università di Torino, Italy.

Insights

The human immunodeficiency virus (HIV) envelope protein gp120 alters CD4+ T cell function by changing how CD4 molecules associate with other cell surface proteins. This gp120/CD4 interaction is crucial for HIV infection and T cell dysfunction.

Area of Science:

  • Immunology
  • Virology
  • Cell Biology

Background:

  • CD4 is a lymphocyte surface glycoprotein acting as a co-receptor for the T cell receptor (TCR) and the primary receptor for HIV via gp120 binding.
  • CD4-gp120 interaction is essential for HIV entry but not sufficient, and recombinant gp120 affects CD4+ T cell activation.
  • Optimal CD4 co-receptor function requires lateral association with TCR and CD45 to form signaling complexes.

Purpose of the Study:

  • To investigate if gp120/CD4 binding alters CD4's lateral associations with other lymphocyte surface molecules.
  • To determine if abnormal multi-molecular complex assembly contributes to gp120-induced CD4+ T cell dysfunction and viral entry.

Main Methods:

  • Assessed CD4 lateral associations with various surface molecules in the presence and absence of gp120.
  • Utilized co-capping assays and blocking antibodies (Leu3 mAb) to confirm specificity and the requirement for direct gp120/CD4 interaction.
  • Investigated potential mediating factors for gp120-induced associations, such as complement components.

Main Results:

  • In the absence of gp120, CD4 showed high association with CD3, CD5, CD45RC, CD25, CD28, CD44, and CD53.
  • gp120 treatment significantly increased CD4 association with CD3, CD45RA, CD45RB, CD59, CD38, CD26, and HLA class I, while decreasing association with CD45RC.
  • Specificity was confirmed as gp120 did not affect HLA class II associations, Leu3 mAb binding induced different associations, and blocking gp120/CD4 interaction inhibited these changes.

Conclusions:

  • gp120 binding to CD4 induces significant alterations in CD4's lateral associations with other cell surface molecules.
  • These gp120-induced changes in molecular complex formation may underlie CD4+ T cell dysfunction and contribute to HIV viral entry.
  • Potential mechanisms include inside-out signaling, gp120-induced conformational changes in CD4, or bridging molecules, with complement mediation suggested for CD59 association.