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Published on: October 9, 2014
Noncanonical Transcription and Splicing Shape the Colorectal Cancer Immunopeptidome in MSI and MSS Tumors
Mathieu Courcelles1, Marie-Pierre Hardy1, Chantal Durette1
1Institute for Research in Immunology and Cancer, Université de Montréal, Montreal, Quebec, Canada.
Abstract:
Treatment with immune checkpoint inhibitors in colorectal cancer (CRC) has largely benefited patients with microsatellite instability-high (MSI-H) and not the larger proportion of patient with microsatellite-stable (MSS) tumors. This clinical dichotomy has fueled the view that high mutational burden is the dominant driver of tumor immunogenicity and that MSS CRC fails to respond because it is "antigen poor". To directly test this premise and define the origins of presented tumor antigens, we integrated HLA class I immunopeptidomics and matched RNA-seq from 26 primary CRC tumors spanning MSI-H and MSS subtypes. Using patient-specific canonical and cancer-specific proteogenomic databases, we identified 115,292 unique major histocompatibility complex (MHC)-associated peptides (MAPs) across 61 HLA alleles, with a mean of 9292 MAPs per tumor and no significant difference in MAP counts between MSI-H and MSS tumors. In toto, we identified 266 tumor antigens, all coded by unmutated genomic sequences, comprising 70 aberrantly expressed tumor-specific antigens (aeTSAs) and 196 tumor-associated antigens (TAAs). In our cohort, MSS tumors presented more TAAs and a comparable number of aeTSAs per tumor relative to MSI-H tumors. In TCGA-COAD stratified analyses (483 tumors), MSS tumors yielded more presentable aeTSAs and TAAs per patient than MSI-H tumors. Across both subtypes, aeTSAs arose predominantly from intronic translation, UTR usage, retroelement activation, and germline-like transcription, including recurrent aeTSAs from PIWIL1, L1TD1, and endogenous retroviral loci. Together, these data demonstrate that MSS CRC is not antigen poor and highlight noncanonical translation as a major, previously underappreciated contributor to the CRC immunopeptidome.
Insights
Microsatellite-stable colorectal cancer (CRC) is not antigen poor, contrary to previous beliefs. Non-canonical translation significantly contributes to tumor antigens in both microsatellite-stable and microsatellite-instability-high CRC tumors.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- Immune checkpoint inhibitors benefit microsatellite instability-high (MSI-H) colorectal cancer (CRC) but not microsatellite-stable (MSS) CRC.
- MSS CRC is often considered "antigen poor," limiting its response to immunotherapy.
- The dominant driver of tumor immunogenicity and antigen presentation in MSS CRC remains unclear.
Purpose of the Study:
- To challenge the "antigen poor" premise of MSS CRC.
- To define the origins and characteristics of presented tumor antigens in both MSI-H and MSS CRC.
- To investigate the immunopeptidome of colorectal cancer subtypes.
Main Methods:
- Integrated HLA class I immunopeptidomics and RNA-sequencing from 26 primary CRC tumors (MSI-H and MSS).
- Utilized patient-specific canonical and cancer-specific proteogenomic databases.
- Analyzed 115,292 unique MHC-associated peptides (MAPs) across 61 HLA alleles.
Main Results:
- Identified 266 tumor antigens coded by unmutated sequences: 70 aberrantly expressed tumor-specific antigens (aeTSAs) and 196 tumor-associated antigens (TAAs).
- No significant difference in MAP counts between MSI-H and MSS tumors.
- MSS tumors presented more TAAs and a comparable number of aeTSAs per tumor versus MSI-H tumors; TCGA-COAD data confirmed MSS tumors yielded more presentable aeTSAs and TAAs per patient.
Conclusions:
- MSS colorectal cancer is not antigen poor.
- Non-canonical translation (intronic, UTR, retroelements, germline-like transcription) is a major, underappreciated source of CRC tumor antigens.
- Aberrantly expressed tumor-specific antigens (aeTSAs) arise from diverse non-canonical translation mechanisms.
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