Inhibition of CD83 cell surface expression during dendritic cell maturation by interference with nuclear export of CD83 mRNA

M Kruse, O Rosorius, F Krätzer, D Bevec… - The Journal of …, 2000 - rupress.org
M Kruse, O Rosorius, F Krätzer, D Bevec, C Kuhnt, A Steinkasserer, G Schuler, J Hauber
The Journal of experimental medicine, 2000rupress.org
Dendritic cells (DCs), nature's adjuvant, must mature to sensitize T cells. However, although
the maturation process is essential, it is not yet fully understood at the molecular level. In this
study, we investigated the course of expression of the unique hypusine-containing protein
eukaryotic initiation factor 5A (eIF-5A), which is part of a particular RNA nuclear export
pathway, during in vitro generation of human DCs. We show that eIF-5A expression is
significantly upregulated during DC maturation. Furthermore, an inhibitor of the hypusine …
Dendritic cells (DCs), nature's adjuvant, must mature to sensitize T cells. However, although the maturation process is essential, it is not yet fully understood at the molecular level. In this study, we investigated the course of expression of the unique hypusine-containing protein eukaryotic initiation factor 5A (eIF-5A), which is part of a particular RNA nuclear export pathway, during in vitro generation of human DCs. We show that eIF-5A expression is significantly upregulated during DC maturation. Furthermore, an inhibitor of the hypusine modification, GC7 (N1-guanyl-1,7-diaminoheptane), prevents CD83 surface expression by apparently interfering with nucleocytoplasmic translocation of the CD83 mRNA and, importantly, significantly inhibits DC-mediated T lymphocyte activation. The data presented suggest that CD83 mRNA is transported from the nucleus to the cytoplasm via a specific nuclear export pathway and that hypusine formation appears to be essential for the maturation of functional DCs. Therefore, pharmacological interference with hypusine formation may provide a new possibility to modulate DC function.
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