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CD4 ligands inhibit the formation of multifunctional transduction complexes involved in T cell activation
N Jabado1, A Pallier, F Le Deist
1INSERM Unit 429, Necker-Enfants Malades Hospital, Paris, France.
Abstract:
Ligands binding to the CD4 molecule can inhibit TCR-mediated T cell activation. We have previously reported that transcription factors regulating the expression of the IL-2 gene, NF-AT, NF-kappaB, and AP-1, are targets of this inhibitory effect in an in vitro model using peripheral human CD4+ T cells activated by a CD3 mAb. Two T cell activation pathways involved in the regulation of these transcription factors, calcium flux and the p21ras pathway, were investigated as potential targets. Binding of HIV envelope glycoprotein gp160/gp120 or a CD4 mAb to the CD4+ T cells, prior to TCR/CD3 activation, inhibited the intracellular calcium elevation. This event strongly suggested an inhibition of PLCgamma1 activity. Tyrosine phosphorylation of PLCgamma1, induced by CD3 activation, was not affected, but its association with tyrosine-phosphorylated proteins, including a 62-kDa protein, was disrupted. This PLCgamma1-associated p62 was found to be immunoreactive to p62-Sam68 Abs. The activation-induced phosphorylation of two p21ras effectors, Raf-1 and Erk2, was inhibited by the CD4 ligands, indirectly pointing to inhibition of the p21ras activation pathway. In addition, we demonstrate that TCR activation of normal CD4+ T cells induced the formation of p120GAP and PLCgamma1-containing complexes. These complexes also contain other unidentified proteins. CD4 ligand binding induced a defective formation of these transduction complexes. This may result in inefficient signaling, partially accounting for the inhibitory effects of the CD4 ligands on both p21ras and calcium-activation pathways.
Insights
CD4 ligands inhibit T cell activation by disrupting signaling pathways. This study reveals CD4 binding interferes with calcium flux and p21ras pathways, impacting transcription factor regulation.
Area of Science:
- Immunology
- Molecular Biology
Background:
- CD4 molecule ligands inhibit T cell activation.
- Transcription factors NF-AT, NF-kappaB, and AP-1 are targets of this inhibition.
- Two key T cell activation pathways, calcium flux and p21ras, were investigated.
Purpose of the Study:
- To investigate how CD4 ligands inhibit T cell activation.
- To determine the effects on calcium flux and p21ras pathways.
- To elucidate the molecular mechanisms of CD4-mediated T cell inhibition.
Main Methods:
- Used peripheral human CD4+ T cells activated by CD3 mAb.
- Investigated intracellular calcium elevation and PLCgamma1 activity.
- Analyzed p21ras pathway effectors (Raf-1, Erk2) and protein complex formation.
Main Results:
- CD4 ligands inhibited intracellular calcium elevation and PLCgamma1 association with p62.
- Activation-induced phosphorylation of Raf-1 and Erk2 was inhibited.
- CD4 ligand binding disrupted the formation of p120GAP and PLCgamma1-containing complexes.
Conclusions:
- CD4 ligands inhibit T cell activation by disrupting calcium and p21ras signaling pathways.
- Defective formation of signaling complexes contributes to T cell inhibition.
- Understanding these mechanisms is crucial for T cell-mediated immunity research.