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Mutational landscape determines sensitivity to PD-1 blockade in non–small cell lung cancer

Science · 2015 · Vol. 348(6230) · pp. 124–128
Naiyer A. RizviMatthew D. HellmannAlexandra SnyderPia KvistborgVladimir MakarovJonathan J. HavelWilliam LeeJianda YuanPhillip WongTeresa HoMartin L. MillerNatasha RekhtmanAndré L. MoreiraFawzia K. IbrahimCameron BruggemanBillel GasmiRoberta ZappasodiYuka MaedaChris SanderEdward B. GaronTaha MerghoubJedd D. WolchokTon N. SchumacherTimothy A. Chan

Abstract

Immune checkpoint inhibitors, which unleash a patient's own T cells to kill tumors, are revolutionizing cancer treatment. To unravel the genomic determinants of response to this therapy, we used whole-exome sequencing of non-small cell lung cancers treated with pembrolizumab, an antibody targeting programmed cell death-1 (PD-1). In two independent cohorts, higher nonsynonymous mutation burden in tumors was associated with improved objective response, durable clinical benefit, and progression-free survival. Efficacy also correlated with the molecular smoking signature, higher neoantigen burden, and DNA repair pathway mutations; each factor was also associated with mutation burden. In one responder, neoantigen-specific CD8+ T cell responses paralleled tumor regression, suggesting that anti-PD-1 therapy enhances neoantigen-specific T cell reactivity. Our results suggest that the genomic landscape of lung cancers shapes response to anti-PD-1 therapy.

Cancer Immunotherapy and BiomarkersCancer Genomics and DiagnosticsLung Cancer Treatments and MutationsPembrolizumabNonsynonymous substitutionImmune checkpointMutationLung cancerExome sequencingImmunotherapyBiologyPD-L1Exome

MeSH terms

Antineoplastic AgentsCarcinoma, Non-Small-Cell LungDNA RepairHumansLung NeoplasmsMutationSmokingCohort StudiesCD8-Positive T-LymphocytesDisease-Free SurvivalDrug Resistance, NeoplasmProgrammed Cell Death 1 ReceptorAntibodies, Monoclonal, Humanized

Funding

  • Lung Cancer Research Foundation
  • Memorial Sloan-Kettering Cancer Center
  • Starr Foundation
  • Geoffrey Beene Cancer Research Center
Citations
7,864
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References
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