Genome and Transcriptome Biomarkers of Response to Immune Checkpoint Inhibitors in Advanced Solid Tumors
Pender, Alexandra; Titmuss, Emma; Pleasance, Erin D; Fan, Kevin Y; Pearson, Hillary; Brown, Scott D; Grisdale, Cameron J; Topham, James T; Shen, Yaoqing; Bonakdar, Melika; Taylor, Gregory A; Williamson, Laura M; Mungall, Karen L; Chuah, Eric; Mungall, Andrew J; Moore, Richard A; Lavoie, Jean-Michel; Yip, Stephen; Lim, Howard; Renouf, Daniel J; Sun, Sophie; Holt, Robert A; Jones, Steven J M; Marra, Marco A; Laskin, Janessa
PURPOSE:Immune checkpoint inhibitors (ICI) have revolutionized the treatment of solid tumors with dramatic and durable responses seen across multiple tumor types. However, identifying patients who will respond to these drugs remains challenging, particularly in the context of advanced and previously treated cancers. EXPERIMENTAL DESIGN:We characterized fresh tumor biopsies from a heterogeneous pan-cancer cohort of 98 patients with metastatic predominantly pretreated disease through the Personalized OncoGenomics program at BC Cancer (Vancouver, Canada) using whole genome and transcriptome analysis (WGTA). Baseline characteristics and follow-up data were collected retrospectively. RESULTS:= 0.00071, OS), and also present a case study of possible acquired resistance to pembrolizumab in a patient with non-small cell lung cancer. CONCLUSIONS:Interpreting the tumor-immune interface to predict ICI efficacy remains challenging. WGTA allows for identification of multiple biomarkers simultaneously that in combination may help to identify responders, particularly in the context of a heterogeneous population of advanced and previously treated cancers, thus precluding tumor type-specific testing.
PMID: 33020056
ISSN: 1557-3265
CID: 5994112
Pan-cancer analysis of advanced patient tumors reveals interactions between therapy and genomic landscapes
Pleasance, Erin; Titmuss, Emma; Williamson, Laura; Kwan, Harwood; Culibrk, Luka; Zhao, Eric Y; Dixon, Katherine; Fan, Kevin; Bowlby, Reanne; Jones, Martin R; Shen, Yaoqing; Grewal, Jasleen K; Ashkani, Jahanshah; Wee, Kathleen; Grisdale, Cameron J; Thibodeau, My Linh; Bozoky, Zoltan; Pearson, Hillary; Majounie, Elisa; Vira, Tariq; Shenwai, Reva; Mungall, Karen L; Chuah, Eric; Davies, Anna; Warren, Mya; Reisle, Caralyn; Bonakdar, Melika; Taylor, Gregory A; Csizmok, Veronika; Chan, Simon K; Zong, Zusheng; Bilobram, Steve; Muhammadzadeh, Amir; D'Souza, Darryl; Corbett, Richard D; MacMillan, Daniel; Carreira, Marcus; Choo, Caleb; Bleile, Dustin; Sadeghi, Sara; Zhang, Wei; Wong, Tina; Cheng, Dean; Brown, Scott D; Holt, Robert A; Moore, Richard A; Mungall, Andrew J; Zhao, Yongjun; Nelson, Jessica; Fok, Alexandra; Ma, Yussanne; Lee, Michael K C; Lavoie, Jean-Michel; Mendis, Shehara; Karasinska, Joanna M; Deol, Balvir; Fisic, Ana; Schaeffer, David F; Yip, Stephen; Schrader, Kasmintan; Regier, Dean A; Weymann, Deirdre; Chia, Stephen; Gelmon, Karen; Tinker, Anna; Sun, Sophie; Lim, Howard; Renouf, Daniel J; Laskin, Janessa; Jones, Steven J M; Marra, Marco A
Advanced and metastatic tumors with complex treatment histories drive cancer mortality. Here we describe the POG570 cohort, a comprehensive whole-genome, transcriptome and clinical dataset, amenable for exploration of the impacts of therapies on genomic landscapes. Previous exposure to DNA-damaging chemotherapies and mutations affecting DNA repair genes, including POLQ and genes encoding Polζ, were associated with genome-wide, therapy-induced mutagenesis. Exposure to platinum therapies coincided with signatures SBS31 and DSB5 and, when combined with DNA synthesis inhibitors, signature SBS17b. Alterations in ESR1, EGFR, CTNNB1, FGFR1, VEGFA and DPYD were consistent with drug resistance and sensitivity. Recurrent noncoding events were found in regulatory region hotspots of genes including TERT, PLEKHS1, AP2A1 and ADGRG6. Mutation burden and immune signatures corresponded with overall survival and response to immunotherapy. Our data offer a rich resource for investigation of advanced cancers and interpretation of whole-genome and transcriptome sequencing in the context of a cancer clinic.
PMID: 35121966
ISSN: 2662-1347
CID: 5994122
MHC class I-associated peptides derive from selective regions of the human genome
Pearson, Hillary; Daouda, Tariq; Granados, Diana Paola; Durette, Chantal; Bonneil, Eric; Courcelles, Mathieu; Rodenbrock, Anja; Laverdure, Jean-Philippe; Côté, Caroline; Mader, Sylvie; Lemieux, Sébastien; Thibault, Pierre; Perreault, Claude
MHC class I-associated peptides (MAPs) define the immune self for CD8+ T lymphocytes and are key targets of cancer immunosurveillance. Here, the goals of our work were to determine whether the entire set of protein-coding genes could generate MAPs and whether specific features influence the ability of discrete genes to generate MAPs. Using proteogenomics, we have identified 25,270 MAPs isolated from the B lymphocytes of 18 individuals who collectively expressed 27 high-frequency HLA-A,B allotypes. The entire MAP repertoire presented by these 27 allotypes covered only 10% of the exomic sequences expressed in B lymphocytes. Indeed, 41% of expressed protein-coding genes generated no MAPs, while 59% of genes generated up to 64 MAPs, often derived from adjacent regions and presented by different allotypes. We next identified several features of transcripts and proteins associated with efficient MAP production. From these data, we built a logistic regression model that predicts with good accuracy whether a gene generates MAPs. Our results show preferential selection of MAPs from a limited repertoire of proteins with distinctive features. The notion that the MHC class I immunopeptidome presents only a small fraction of the protein-coding genome for monitoring by the immune system has profound implications in autoimmunity and cancer immunology.
PMID: 27841757
ISSN: 1558-8238
CID: 5994102