Monitoring C5aR2 Expression Using a Floxed tdTomato-C5aR2 Knock-In Mouse

Christian M Karsten1, Anna V Wiese2, Fabian Mey2

  • 1Institute for Systemic Inflammation Research, University of Lübeck, Lübeck 23562, Germany; joerg.koehl@uksh.de christian.karsten@uksh.de.

Insights

This study maps the expression of C5a receptor 2 (C5aR2) in mouse immune cells, revealing its presence in myeloid cells, B cells, and NK cells. The findings provide a foundation for understanding C5aR2's role in inflammation.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • The biological role of C5a receptor 2 (C5aR2/C5L2) is not fully understood.
  • C5aR2 is known to bind C5a and C5adesArg and may regulate C5aR1-mediated functions.
  • A comprehensive understanding of C5aR2 expression in murine immune cells and tissues is lacking.

Purpose of the Study:

  • To generate a C5aR2 reporter mouse model for tracking C5aR2 expression.
  • To map the expression patterns of C5aR2 in various immune cell types and tissues.
  • To investigate the functional consequences of C5aR2 ligation in reporter mice.

Main Methods:

  • Generation of a floxed tandem dye (td)Tomato-C5aR2 knock-in mouse.
  • Analysis of C5aR2 expression in circulating and tissue-resident immune cells using the reporter mouse.
  • Assessment of C5aR2 functionality via ERK1/2 phosphorylation and cytokine production assays.
  • Evaluation of C5aR2 expression changes during pulmonary inflammation.

Main Results:

  • C5aR2 is highly expressed in myeloid cells (neutrophils, eosinophils, macrophages, dendritic cells), B cells, and NK cells, with varying intensities and tissue-specific patterns.
  • Neutrophil C5aR2 ligation inhibited C5a-induced ERK1/2 phosphorylation, confirming reporter mouse functionality.
  • NK cell C5aR2 activation suppressed IFN-γ production.
  • Pulmonary IL-33 challenge led to decreased C5aR2 expression in specific immune cell subsets.

Conclusions:

  • This study provides a detailed expression map of murine C5aR2 in immune cells under homeostatic and inflammatory conditions.
  • The generated C5aR2 knock-in mouse model is a valuable tool for future research on C5aR2's role in inflammation.
  • Findings highlight C5aR2's diverse expression and functional roles across different immune cell types.

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