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Published on: December 7, 2019
T Cell Activation Induces Synthesis of CD47 Proteoglycan Isoforms and Their Release in Extracellular Vesicles
Sukhbir Kaur1,2, Svetlana A Kuznetsova1, John M Sipes1
1Laboratory of Pathology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD 20982, USA.
Abstract:
Thrombospondin-1 potently inhibits T cell activation by engaging its cell surface receptor CD47. This inhibitory signal requires glycosaminoglycan modification of CD47. CD47 also regulates the composition of RNAs in extracellular vesicles released by T cells and their functional activities. Because CD47 is also present in extracellular vesicles, we examined the effect of T cell activation on CD47 glycoforms in T cells and extracellular vesicles released by these cells. Activation increased both heparan and chondroitin sulfate biosynthesis by globally inducing mRNA levels of the respective glycosaminoglycan synthases and sulfotransferases. T cell activation in the presence of thrombospondin-1 inhibited induction of these biosynthetic enzymes, but not in cells lacking CD47. Therefore, CD47 signaling controls its own post-translational modification by glycosaminoglycans that are required for thrombospondin-1 signaling. Activation of Jurkat T lymphoblasts and primary CD4 and CD8 T cells increased the release of proteoglycan isoforms of CD47 and amyloid precursor-like protein-2 associated with extracellular vesicles and smaller macromolecular complexes. However, cell surface levels of CD47 were minimally changed during activation. BJAB and RAJI B cell lines also produced CD47+ extracellular vesicles and showed increased release of highly glycosylated CD47 following B cell receptor engagement. Therefore, T and B lymphocyte activation results in a selective increase in the synthesis and release of extracellular vesicles containing proteoglycan isoforms of CD47.
Insights
T cell activation increases CD47 proteoglycan forms in extracellular vesicles. This process is controlled by CD47 signaling, impacting thrombospondin-1 inhibition and T cell function.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Thrombospondin-1 inhibits T cell activation via CD47.
- Glycosaminoglycan modification of CD47 is crucial for this inhibition.
- CD47 influences extracellular vesicle (EV) RNA content and T cell function.
Purpose of the Study:
- To investigate the impact of T cell activation on CD47 glycoforms in T cells and released EVs.
- To understand how CD47 signaling regulates its own glycosaminoglycan modification.
Main Methods:
- Analysis of glycosaminoglycan biosynthesis enzymes and sulfotransferases.
- Flow cytometry and Western blotting to assess CD47 expression and glycoforms.
- Characterization of EVs released by activated T and B lymphocytes.
Main Results:
- T cell activation upregulated heparan and chondroitin sulfate biosynthesis.
- Thrombospondin-1, via CD47 signaling, inhibited this upregulation.
- Activated T and B cells released more EVs containing proteoglycan CD47 isoforms.
Conclusions:
- CD47 signaling regulates its glycosaminoglycan modification, essential for thrombospondin-1 signaling.
- Lymphocyte activation selectively increases the release of EVs carrying proteoglycan CD47.
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