IFN-γ protects short-term ovarian carcinoma cell lines from CTL lysis via a CD94/NKG2A-dependent mechanism

Karl‐Johan Malmberg(Gene Therapy Laboratory), Victor Levitsky(Karolinska Institutet), Håkan Norell(Gene Therapy Laboratory), Cristina Teixeira de Matos(Karolinska Institutet), Mattias Carlsten(Gene Therapy Laboratory), Kjell Schedvins(Karolinska University Hospital), Hodjattallah Rabbani(Gene Therapy Laboratory), Alessandro Moretta(University of Genoa), Kalle Söderström(Karolinska Institutet), Jelena Levitskaya(Gene Therapy Laboratory), Rolf Kiessling(Gene Therapy Laboratory)
Journal of Clinical Investigation
November 15, 2002
Cited by 145

Abstract

IFN-γ regulates the immunogenicity of target cells by increasing their expression of HLA class I molecules. This facilitates the T cell receptor–mediated recognition by CD8+ T cells but decreases target cell sensitivity to lysis by NK cells due to engagement of inhibitory NK receptors. In this study, short-term tumor cell lines from patients with advanced ovarian carcinomas were established. We demonstrate the paradoxical finding that IFN-γ treatment of these short-term ovarian carcinoma cell lines (OVACs) resulted in resistance of tumor cells to lysis by peptide- and allospecific CD8+ T cells. Blocking experiments revealed that this phenomenon was dependent on enhanced inhibitory signalling via CD94/NKG2A receptors expressed on the effector cells. This was associated with increased expression of HLA-E mRNA and HLA-G at the protein level in IFN-γ–treated OVACs. Furthermore, pulsing of untreated OVACs with the leader sequence peptide of HLA-G protected these cells from lysis by CTLs, thus mimicking the inhibitory effect of IFN-γ. This study provides evidence that CD94/NKG2A receptors play an important role in regulating T cell activity against tumors and shows that IFN-γ modulation of target cells may shift the balance of triggering and inhibitory signals to T cells, turning off their cytolytic activity.


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