Genomic and transcriptomic analysis of checkpoint blockade response in advanced non-small cell lung cancer.
Arvind RaviMatthew D HellmannMonica B ArniellaMark HoltonSamuel S FreemanVivek NaranbhaiChip StewartIgnaty LeshchinerJaegil KimYo AkiyamaAaron T GriffinNatalie I VokesMustafa SakhiVashine KamesanHira RizviBiagio RicciutiPatrick M FordeValsamo AnagnostouJonathan W RiessDon L GibbonsNathan A PennellVamsidhar VelchetiSubba R DigumarthyMari A Mino-KenudsonAndrea CalifanoJohn Victor HeymachRoy S HerbstJulie R BrahmerKurt A SchalperVictor E VelculescuBrian S HenickNaiyer RizviPasi A JanneMark M AwadAndrew ChowBenjamin D GreenbaumMarta LukszaAlice T ShawJedd D WolchokNir HacohenGad A GetzJustin F GainorPublished in: Nature genetics (2023)
Anti-PD-1/PD-L1 agents have transformed the treatment landscape of advanced non-small cell lung cancer (NSCLC). To expand our understanding of the molecular features underlying response to checkpoint inhibitors in NSCLC, we describe here the first joint analysis of the Stand Up To Cancer-Mark Foundation cohort, a resource of whole exome and/or RNA sequencing from 393 patients with NSCLC treated with anti-PD-(L)1 therapy, along with matched clinical response annotation. We identify a number of associations between molecular features and outcome, including (1) favorable (for example, ATM altered) and unfavorable (for example, TERT amplified) genomic subgroups, (2) a prominent association between expression of inducible components of the immunoproteasome and response and (3) a dedifferentiated tumor-intrinsic subtype with enhanced response to checkpoint blockade. Taken together, results from this cohort demonstrate the complexity of biological determinants underlying immunotherapy outcomes and reinforce the discovery potential of integrative analysis within large, well-curated, cancer-specific cohorts.
Keyphrases
- advanced non small cell lung cancer
- epidermal growth factor receptor
- dna damage
- papillary thyroid
- cell cycle
- copy number
- single cell
- small cell lung cancer
- poor prognosis
- gene expression
- high throughput
- small molecule
- stem cells
- type diabetes
- dna repair
- dna damage response
- replacement therapy
- newly diagnosed
- long non coding rna
- lymph node metastasis
- climate change
- smoking cessation