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Published on: October 4, 2017
CysLT1 receptor is a target for extracellular nucleotide-induced heterologous desensitization: a possible feedback
Valérie Capra1, Saula Ravasi, Maria Rosa Accomazzo
1Laboratory of Molecular Pharmacology, Section of Eicosanoid Pharmacology, Department of Pharmacological Sciences, University of Milan, Via Balzaretti 9, 20133 Milan, Italy.
Abstract:
Both cysteinyl-leukotrienes and extracellular nucleotides mediate inflammatory responses via specific G-protein-coupled receptors, the CysLT and the P2Y receptors, respectively. Since these mediators accumulate at sites of inflammation, and inflammatory cells express both classes of receptors, their responses are likely to be crossregulated. We investigated the molecular basis of desensitization and trafficking of the CysLT1 receptor constitutively and transiently expressed in the human monocyte/macrophage-like U937 or COS-7 cells in response to LTD4 or nucleotides. Exposure to agonist induced a rapid homologous desensitization of the CysLT1 receptor [as measured by the reduction in the maximal agonist-induced intracellular cytosolic Ca2+ ([Ca2+]i) transient], followed by receptor internalization (as assessed by equilibrium binding and confocal microscopy). Activation of P2Y receptors with ATP or UDP induced heterologous desensitization of the CysLT1 receptor. Conversely, LTD4-induced CysLT1 receptor activation had no effect on P2Y receptor responses, which suggests that the latter have a hierarchy in producing desensitizing signals. Furthermore, ATP/UDP-induced CysLT1 receptor desensitization was unable to cause receptor internalization, induced a faster recovery of CysLT1 functionality and was dependent upon protein kinase C. By contrast, homologous desensitization, which is probably dependent upon G-protein-receptor kinase 2 activation, induced a fast receptor downregulation and, accordingly, a slower recovery of CysLT1 functionality. Hence, CysLT1 receptor desensitization and trafficking are differentially regulated by the CysLT1 cognate ligand or by extracellular nucleotides. This crosstalk may have a profound physiological implication in the regulation of responses at sites of inflammation, and may represent just an example of a feedback mechanism used by cells to fine-tune their responses.
Insights
Extracellular nucleotides and cysteinyl-leukotrienes differentially regulate CysLT1 receptor desensitization and trafficking. This crosstalk impacts inflammatory responses and cellular feedback mechanisms.
Area of Science:
- Immunology
- Cell Biology
- Pharmacology
Background:
- Cysteinyl-leukotrienes (CysLTs) and extracellular nucleotides are key mediators of inflammation.
- Both signal through G-protein-coupled receptors (GPCRs), CysLT and P2Y receptors, respectively.
- Cross-regulation of these receptors is likely due to their co-expression on inflammatory cells.
Purpose of the Study:
- To investigate the molecular mechanisms of CysLT1 receptor desensitization and trafficking.
- To examine the cross-regulation between CysLT1 receptors and P2Y receptors.
- To elucidate the differential regulation of CysLT1 receptor responses by its cognate ligand and extracellular nucleotides.
Main Methods:
- Studied CysLT1 receptor desensitization and internalization in U937 and COS-7 cells.
- Utilized intracellular calcium ([Ca2+]i) measurements to assess agonist-induced responses.
- Employed equilibrium binding and confocal microscopy to evaluate receptor trafficking.
- Investigated the role of protein kinase C and G-protein-receptor kinase 2.
Main Results:
- Homologous desensitization by LTD4 led to CysLT1 receptor internalization and slower functional recovery.
- P2Y receptor activation by ATP/UDP caused heterologous CysLT1 receptor desensitization without internalization.
- Nucleotide-induced desensitization was faster, PKC-dependent, and allowed quicker CysLT1 receptor recovery.
- LTD4 did not affect P2Y receptor responses, indicating a signaling hierarchy.
Conclusions:
- CysLT1 receptor desensitization and trafficking are differentially regulated by LTD4 and extracellular nucleotides.
- This receptor crosstalk provides a feedback mechanism to fine-tune cellular responses at inflammatory sites.
- Understanding these interactions is crucial for developing targeted anti-inflammatory therapies.
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