Elevated HLA-E and NKG2A as a consequence of chronic immune activation defines resistance to M. bovis BCG immunotherapy in Non-Muscle-Invasive Bladder Cancer
Ranti, D.; Wang, Y.-S.; Daza, J.; Bieber, C.; Salome, B.; Merritt, E.; Cavallo, J.-A.; Hegewisch-Solloa, E.; Mace, E. M.; Farkas, A. M.; Schroff, S.; Lee, B.; Tran, M.; Strandgaard, T.; Lindskrog, S. V.; Dyrskjot, L.; Qi, J.; Patel, M.; Geanon, D.; Kelly, G.; Dereal, R.; Lee, B.; Kim-Schulze, S.; Thin, T. H.; Garcia-Barros, M.; Beaumont, K. G.; Lee, Y.; LaRoche, D.; Sebra, R.; Brody, R.; Tocheva, A.; Hopkins, B.; Wiklund, P.; Galsky, M. D.; Bhardwaj, N.; Sfakianos, J. P.; Horowitz, A.
Show abstract
Mycobacterium bovis Bacillus Calmette-Guerin (BCG), the first-line treatment for non-muscle invasive bladder cancer (NMIBC), promotes the production of inflammatory cytokines, particularly interferon (IFN)-{gamma}. Prolonged inflammation and IFN-{gamma} exposure are known to cause an adaptive immune response, enabling immune escape and proliferation by tumor cells. We investigated HLA-E and NKG2A, a novel T and NK cell checkpoint pathway, as a driver of adaptive resistance in BCG unresponsive NMIBC. We observed ubiquitous inflammation in all patients after BCG immunotherapy, regardless of recurrence status. IFN-{gamma} was shown to drive tumor expression of HLA-E and PD-L1. Further, NKG2A-expressing NK and CD8 T cells were enriched in BCG unresponsive tumors and with enhanced capacity for cytolytic functions. Strikingly, in situ spatial analyses revealed that HLA-EHIGH tumors are activated to recruit NK and T cells via chemokine production, potentially sparing HLA-ELOW tumors that would otherwise be susceptible to lysis. Finally, blood-derived NK cells retained anti-tumor functions at the time of tumor recurrence. These data support combined NKG2A and PD-L1 blockade for BCG unresponsive disease.
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