Costimulation by B7-1 and LFA-3 Targets Distinct Nuclear Factors That Bind to the Interleukin-2 Promoter: B7-1 Negatively Regulates LFA-3-Induced NF-AT DNA Binding
Open Access
- 1 March 1997
- journal article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 17 (3) , 1314-1323
- https://doi.org/10.1128/mcb.17.3.1314
Abstract
We have characterized the regulation of nuclear factors involved in transcriptional control of the interleukin-2 (IL-2) promoter-enhancer activity in Jurkat T cells stimulated with superantigen presented on HLA-DR transfectants combined with the ligands LFA-3 (CD58) and B7-1 (CD80). Gel shift analyses showed that NF-AT was strongly induced in LFA-3-costimulated Jurkat T cells, suggesting that NF-AT is a key target nuclear factor for the CD2-LFA-3 pathway. Studies using HLA-DR-B7-1-LFA-3 triple transfectants showed that the LFA-3-induced NF-AT DNA binding activity was negatively regulated by B7-1 costimulation. In contrast, induction of a CD28 response complex containing only c-Rel proteins was seen after B7-1 costimulation. Both LFA-3 costimulation and B7-1 costimulation induced the AP-1 and NF-kappaB nuclear factors. Distinct compositions of the NF-AT complexes were seen in B7-1- and LFA-3-costimulated cells. LFA-3 induced primarily Jun-D, Fra-1, and Fra-2, while B7-1 induced June-D-Fos complexes. In contrast, AP-1 and NF-kappaB complexes induced in B7-1- and LFA-3-costimulated T cells showed similar contents. Transient transfection of Jurkat T cells with a construct encoding the IL-2 enhancer-promoter region (position -500 to +60) linked to a luciferase reporter gene revealed that B7-1 costimulation was required to induce strong transcriptional activity. Combined B7-1-LFA-3 costimulation resulted in a synergistic increase in IL-2 transcriptional activity. Multimers of the AP-1, NF-AT, NF-kappaB, and CD28 response elements showed distinct kinetics and activity after LFA-3 and B7-1 costimulation and revealed that B7-1 and LFA-3 converge to superinduce transcriptional activity of the AP-1, NF-AT, and CD28 response elements. Transcriptional studies with an IL-2 enhancer-promoter carrying a mutation in the CD28 response element site revealed that the activity was reduced by 80% after B7-1 and B7-1-LFA-3 costimulation whereas the transcriptional activity induced by LFA-3 was unaffected. Our data strongly suggest a selectivity in induction of nuclear factors by the CD2-LFA-3 and CD28-B7-1 pathways. This selectivity may contribute to regulation of the levels of IL-2 induced by LFA-3 and B7-1 costimulation and favor autocrine and paracrine T-cell responses, respectively.Keywords
This publication has 57 references indexed in Scilit:
- CD28:B7 interactions promote T cell adhesionEuropean Journal of Immunology, 1995
- Cyclosporin-a sensitive induction of NF-AT in murine B cellsImmunity, 1994
- NF-ATp: a transcription factor required for the co-ordinate induction of several cytokine genesImmunology Today, 1994
- Lymphocyte activation and effector functions: The role of cell surface moleculesCurrent Opinion in Immunology, 1993
- Regulation of the NF-ηB/rel transcription factor and IηB inhibitor systemCurrent Opinion in Cell Biology, 1993
- Molecular Regulation of the IL‐2 Gene: Rheostatic Control of the Immune SystemImmunological Reviews, 1993
- The oncoprotein Bcl-3 directly transactivates through κB motifs via association with DNA-binding p50B homodimersCell, 1993
- The LFA‐3 Adhesion Pathway is Differently Utilized by Superantigen‐Activated Human CD4+ T‐Cell SubsetsScandinavian Journal of Immunology, 1992
- Role of the CD28 receptor in T-cell activationImmunology Today, 1990
- Immunogenecity signals 1,2,3... and 0Immunology Today, 1989