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Rapid and Robust Analysis of Cellular and Molecular Polarization Induced by Chemokine Signaling
Published on: December 12, 2014
Reduced GRK2 level in T cells potentiates chemotaxis and signaling in response to CCL4
Anne Vroon1, Cobi J Heijnen, Maria Stella Lombardi
1Laboratory for Psychoneuroimmunology, University Medical Center Utrecht, The Netherlands.
Abstract:
Chemokine receptors belong to the family of G-protein-coupled receptors (GPCR). Phosphorylation of GPCR by GPCR kinases (GRKs) is considered to play an important role in desensitization of these receptors. We have recently shown in patients with rheumatoid arthritis that the level of GRK2 in lymphocytes is reduced by approximately 50%. However, the physiological relevance of reduced GRK2 levels in lymphocytes is not known. Here, we investigated whether reduced GRK2 expression changes the chemotactic response of T cells to the chemokines CCL3, CCL4, and CCL5. Activated T cells from GRK2+/- mice, which have a 50% reduction in GRK2 protein levels, showed a significant 40% increase in chemotaxis toward the CCR5 ligand CCL4. In addition, chemotaxis toward the CCR1 and CCR5 ligands CCL3 and CCL5 was also increased. Binding of CCL4 to activated T cells from GRK2+/- and wild-type (WT) mice was similar, but agonist-induced CCR5 phosphorylation was attenuated in GRK2+/- cells. Moreover, the calcium response and phosphorylation of protein kinase B and extracellular-regulated kinase in response to CCL4 were significantly increased in GRK2+/- T cells, showing that signaling is increased when the level of GRK2 is reduced. GRK2+/- and WT cells do become refractory to restimulation with CCL4. In conclusion, a 50% decrease in T cell GRK2 expression results in increased responsiveness to CCL3, CCL4, and CCL5, suggesting that the 50% reduction in lymphocyte GRK2 level as observed during inflammation can have functional consequences for the response of these cells to chemokines.
Insights
Reduced GRK2 levels in T cells increase their chemotaxis to chemokines like CCL3, CCL4, and CCL5. This suggests inflammation-induced reductions in GRK2 have functional consequences for T cell responses.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Chemokine receptors are G-protein-coupled receptors (GPCRs) crucial for immune cell migration.
- GPCR kinases (GRKs) mediate GPCR phosphorylation, a key step in receptor desensitization.
- Reduced GRK2 levels were observed in lymphocytes of rheumatoid arthritis patients.
Purpose of the Study:
- To investigate the physiological relevance of reduced GRK2 expression in lymphocytes.
- To determine if decreased GRK2 affects T cell chemotaxis towards specific chemokines.
- To elucidate the impact of reduced GRK2 on T cell signaling pathways.
Main Methods:
- Utilized GRK2+/- mice with a 50% reduction in GRK2 protein levels.
- Assessed chemotaxis of activated T cells towards chemokines CCL3, CCL4, and CCL5.
- Measured chemokine binding, receptor phosphorylation, and downstream signaling (calcium, Akt, ERK).
Main Results:
- Activated T cells from GRK2+/- mice exhibited a 40% increase in chemotaxis to CCL4.
- Chemotaxis towards CCL3 and CCL5 was also significantly enhanced in GRK2+/- T cells.
- Reduced GRK2 led to attenuated CCR5 phosphorylation but increased calcium and downstream kinase signaling in response to CCL4.
Conclusions:
- A 50% decrease in T cell GRK2 expression enhances chemotactic responsiveness to CCL3, CCL4, and CCL5.
- The observed reduction in GRK2 during inflammation has functional implications for T cell chemokine responses.
- This suggests a role for GRK2 in regulating T cell migration and immune responses.
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