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Updated: Jun 21, 2025

Visualizing Antigen Specific CD4+ T Cells using MHC Class II Tetramers
Published on: March 6, 2009
CD74 is a functional MIF receptor on activated CD4+ T cells
Lin Zhang1, Iris Woltering1, Mathias Holzner1
1Division of Vascular Biology, Institute for Stroke and Dementia Research (ISD), LMU University Hospital (LMU Klinikum), Ludwig-Maximilians-Universität (LMU) München, Feodor-Lynen-Straße 17, 81377, Munich, Germany.
Insights
CD74, a receptor for macrophage migration inhibitory factor (MIF), is upregulated on activated T cells and plays a role in MIF-induced T-cell migration. Its surface expression correlates with severe COVID-19 disease.
Area of Science:
- Immunology
- Cell Biology
- Molecular Medicine
Background:
- CD74 traditionally functions in MHC II antigen presentation.
- CD74 is a high-affinity receptor for macrophage migration inhibitory factor (MIF).
- The role of CD74 in T cells and its interaction with MIF is poorly understood.
Purpose of the Study:
- To investigate CD74 expression and MIF receptor regulation during human CD4+ T cell activation.
- To determine the functional relevance of CD74 in MIF-induced T cell migration and function.
- To explore the link between CD74 expression and COVID-19 disease severity.
Main Methods:
- Flow cytometry for receptor profiling of T cells.
- Western blot, immunohistochemistry, and analysis of omics data for CD74 expression.
- 3D-matrix live cell imaging and receptor inhibitors to study T cell migration.
- Proximity ligation assay to visualize receptor heterocomplexes.
- Analysis of T cell samples from COVID-19 patients.
Main Results:
- Resting CD4+ T cells express intracellular CD74 and surface CXCR4; activated T cells upregulate cell surface CD74.
- CD74 and CXCR4 are causally involved in MIF-induced CD4+ T cell migration.
- MIF treatment leads to diminished CD74/CXCR4 heterocomplexes, suggesting internalization.
- Increased CD74 surface expression on CD4+ and CD8+ T cells correlates with severe COVID-19.
Conclusions:
- CD74 is a novel, functional MIF receptor on activated human T cells.
- CD74 acts as an MHC II-independent activation marker for CD4+ T cells.
- The MIF-T cell receptor network is dynamically regulated during T cell activation and is relevant in COVID-19 pathogenesis.
Abstract:
Next to its classical role in MHC II-mediated antigen presentation, CD74 was identified as a high-affinity receptor for macrophage migration inhibitory factor (MIF), a pleiotropic cytokine and major determinant of various acute and chronic inflammatory conditions, cardiovascular diseases and cancer. Recent evidence suggests that CD74 is expressed in T cells, but the functional relevance of this observation is poorly understood. Here, we characterized the regulation of CD74 expression and that of the MIF chemokine receptors during activation of human CD4+ T cells and studied links to MIF-induced T-cell migration, function, and COVID-19 disease stage. MIF receptor profiling of resting primary human CD4+ T cells via flow cytometry revealed high surface expression of CXCR4, while CD74, CXCR2 and ACKR3/CXCR7 were not measurably expressed. However, CD4+ T cells constitutively expressed CD74 intracellularly, which upon T-cell activation was significantly upregulated, post-translationally modified by chondroitin sulfate and could be detected on the cell surface, as determined by flow cytometry, Western blot, immunohistochemistry, and re-analysis of available RNA-sequencing and proteomic data sets. Applying 3D-matrix-based live cell-imaging and receptor pathway-specific inhibitors, we determined a causal involvement of CD74 and CXCR4 in MIF-induced CD4+ T-cell migration. Mechanistically, proximity ligation assay visualized CD74/CXCR4 heterocomplexes on activated CD4+ T cells, which were significantly diminished after MIF treatment, pointing towards a MIF-mediated internalization process. Lastly, in a cohort of 30 COVID-19 patients, CD74 surface expression was found to be significantly upregulated on CD4+ and CD8+ T cells in patients with severe compared to patients with only mild disease course. Together, our study characterizes the MIF receptor network in the course of T-cell activation and reveals CD74 as a novel functional MIF receptor and MHC II-independent activation marker of primary human CD4+ T cells.
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