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Characterization of Immune Cells in Human Adipose Tissue by Using Flow Cytometry
Published on: March 6, 2018
C5L2 and C5aR interaction in adipocytes and macrophages: insights into adipoimmunology
Pegah Poursharifi1, Marc Lapointe, Darlaine Pétrin
1Centre de Recherche de Institut Universitaire de Cardiologie et de Pneumologie de Québec (CRIUCPQ), Québec, QC, Canada.
Abstract:
Obesity is associated with inflammation characterized by increased infiltration of macrophages into adipose tissue. C5aR-like receptor 2 (C5L2) has been identified as a receptor for acylation-stimulating protein (ASP) and the inflammatory factor C5a, which also binds C5aR. The present study examines the effects of ligands ASP and C5a on interactions between the receptors C5L2 and C5aR in 3T3-L1 adipocytes and J774 macrophages. BRET experiments indicate that C5L2 and C5aR form homo- and heterodimers in transfected HEK 293 cells, which were stable in the presence of ligand. Cell surface receptor levels of C5L2 and C5aR increased during 3T3-L1 adipocyte differentiation; both receptors are also highly expressed in J774 macrophages. Using confocal microscopy to evaluate endogenous receptors in adipocytes following stimulation with ASP or C5a, C5L2 is internalized with increasing perinuclear colocalization with C5aR. There is little C5a-dependent colocalization in macrophages. While adipocyte-conditioned medium (ACM) increased C5L2-C5aR colocalization in macrophages, this was blocked by C5a. ASP stimulation increased Akt (Ser(473)) phosphorylation in both cell types; C5a induced slight Akt phosphorylation in adipocytes with less effect in macrophages. ASP, but not C5a, increased fatty acid uptake/esterification in adipocytes. C5L2-C5aR homodimerization versus heterodimerization may thus contribute to differential responses obtained following ASP vs C5a stimulation of adipocytes and macrophages, providing new insights into the complex interaction between these two cell types within adipose tissue. Studying the mechanisms involved in the differential responses of C5L2-C5aR activation based on cell type will further our understanding of inflammatory processes in obesity.
Insights
Obesity involves inflammation and macrophage infiltration. This study shows acylation-stimulating protein (ASP) and C5a ligands influence C5L2 and C5aR receptor interactions differently in adipocytes and macrophages, impacting inflammatory responses.
Area of Science:
- Biochemistry
- Cell Biology
- Immunology
Background:
- Obesity is linked to inflammation and macrophage infiltration in adipose tissue.
- C5aR-like receptor 2 (C5L2) binds acylation-stimulating protein (ASP) and inflammatory factor C5a, which also interacts with C5aR.
Purpose of the Study:
- To investigate the effects of ASP and C5a on C5L2 and C5aR interactions in 3T3-L1 adipocytes and J774 macrophages.
- To explore how these interactions influence cellular responses and signaling pathways.
Main Methods:
- Bioluminescence resonance energy transfer (BRET) experiments in HEK 293 cells to study receptor dimerization.
- Confocal microscopy to evaluate endogenous receptor localization in adipocytes and macrophages.
- Western blotting to assess Akt phosphorylation.
- Measurement of fatty acid uptake and esterification in adipocytes.
Main Results:
- C5L2 and C5aR form stable homo- and heterodimers in HEK 293 cells.
- Receptor levels increased during adipocyte differentiation; both receptors are highly expressed in macrophages.
- ASP stimulation led to C5L2 internalization and perinuclear colocalization with C5aR in adipocytes, with less C5a-dependent colocalization in macrophages.
- ASP increased Akt phosphorylation and fatty acid uptake in adipocytes, while C5a had minimal effects.
- Adipocyte-conditioned medium enhanced C5L2-C5aR colocalization in macrophages, but C5a blocked this effect.
Conclusions:
- C5L2-C5aR dimerization patterns differ between adipocytes and macrophages, contributing to distinct cellular responses to ASP and C5a.
- These findings offer new insights into the interplay between adipocytes and macrophages in adipose tissue inflammation during obesity.
- Understanding cell-type-specific C5L2-C5aR activation mechanisms is crucial for comprehending obesity-related inflammatory processes.
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