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Imaging G-protein Coupled Receptor (GPCR)-mediated Signaling Events that Control Chemotaxis of Dictyostelium Discoideum
Published on: September 20, 2011
Chemokine receptor CCR5 functionally couples to inhibitory G proteins and undergoes desensitization
1Shanghai Institute of Cell Biology, Chinese Academy of Sciences, People's Republic of China.
Abstract:
Chemokine receptor CCR5 is not only essential for chemotaxis of leukocytes but also has been shown to be a key coreceptor for HIV-1 infection. In the present study, hemagglutinin epitope-tagged human CCR5 receptor was stably expressed in Chinese hamster ovary cells or transiently expressed in NG108-15 cells to investigate CCR5-mediated signaling events. The surface expression of CCR5 was confirmed by flow cytometry analysis. The CCR5 agonist RANTES stimulated [35S]GTPgammaS binding to the cell membranes and induced inhibition on adenylyl cyclase activity in cells expressing CCR5. The effects of RANTES were CCR5 dependent and could be blocked by pertussis toxin. Furthermore, overexpression of Gialpha2 strongly increased both RANTES-dependent G-protein activation and inhibition on adenylyl cyclase in cells cotransfected with CCR5. These data demonstrated directly that activation of CCR5 stimulated membrane-associated inhibitory G proteins and indicated that CCR5 could functionally couple to G-protein subtype Gialpha2. The abilities of CCR5 to activate G protein and to inhibit cellular cAMP accumulation were significantly diminished after a brief prechallenge with RANTES, showing rapid desensitization of the receptor-mediated responsiveness. Prolonged exposure of the cells to RANTES caused significant reduction of surface CCR5 as measured by flow cytometry, indicative of agonist-dependent receptor internalization. Our data thus demonstrated that CCR5 functionally couples to membrane-associated inhibitory G proteins and undergoes agonist-dependent desensitization and internalization.
Insights
Chemokine receptor 5 (CCR5) couples to inhibitory G proteins, mediating leukocyte chemotaxis and HIV-1 entry. This study shows CCR5 activation leads to G-protein signaling, desensitization, and internalization.
Area of Science:
- Cellular signaling
- Molecular biology
- Immunology
Background:
- Chemokine receptor CCR5 is crucial for leukocyte migration.
- CCR5 also serves as a key coreceptor for HIV-1 infection.
- Understanding CCR5 signaling is vital for therapeutic development.
Purpose of the Study:
- To investigate CCR5-mediated signaling events.
- To determine the G-protein coupling of CCR5.
- To characterize CCR5 desensitization and internalization.
Main Methods:
- Stable and transient expression of hemagglutinin epitope-tagged human CCR5.
- Flow cytometry for surface receptor expression analysis.
- Assays for G-protein activation ([35S]GTPgammaS binding) and adenylyl cyclase activity.
- Pertussis toxin treatment and Gialpha2 overexpression studies.
Main Results:
- CCR5 agonist RANTES stimulated G-protein activation and inhibited adenylyl cyclase activity in a CCR5-dependent manner.
- RANTES-induced signaling was blocked by pertussis toxin, indicating involvement of inhibitory G proteins.
- Overexpression of Gialpha2 enhanced RANTES-dependent signaling.
- CCR5 signaling exhibited rapid desensitization and agonist-dependent receptor internalization upon prolonged RANTES exposure.
Conclusions:
- CCR5 functionally couples to membrane-associated inhibitory G proteins, specifically Gialpha2.
- CCR5 signaling is subject to rapid agonist-dependent desensitization and internalization.
- These findings provide insights into CCR5 regulation and its role in HIV-1 infection.
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