<p>Complete supplementary figures containing: Suppl. Fig. 1: HLA-coverage (Caucasian); Suppl. Fig. 2: Maximum attainable quantities of source proteins; Suppl. Fig. 3: Comparsion with complete benign dataset; Suppl. Fig. 4: Legend PANTHER analysis; Suppl. Fig. 5: Legend KEGG analysis; Suppl. Fig. 6: Representation analysis HLA class II</p>
<p>Supplementary Tables 1-5, 7, 9-12 containing: Suppl. Table 1: Sample characteristics; Suppl. Table 2: Patient characteristics; Suppl. Table 3: Control peptides Suppl. Table 4: Peptide-specific properties Suppl. Table 5: Over-represented Peptides HLA class I; Suppl. Table 7: Over-represented Peptides HLA class II; Suppl. Table 9: STRING results Suppl. Table 9: Protein-protein interactions (STRING) Suppl. Table 10: Over-represented pathways (STRING) Suppl. Table 11: Vaccine peptide selection Suppl. Table 12: Candidate vaccine peptides</p>
Abstract Immune cell infiltrates have proven highly relevant for colorectal carcinoma prognosis, making colorectal cancer a promising candidate for immunotherapy. Because tumors interact with the immune system via HLA-presented peptide ligands, exact knowledge of the peptidome constitution is fundamental for understanding this relationship. Here, we comprehensively describe the naturally presented HLA ligandome of colorectal carcinoma and corresponding nonmalignant colon (NMC) tissue. Mass spectrometry identified 35,367 and 28,132 HLA class I ligands on colorectal carcinoma and NMC, attributable to 7,684 and 6,312 distinct source proteins, respectively. Cancer-exclusive peptides were assessed on source protein level using the Kyoto Encyclopedia of Genes and Genomes (KEGG) and protein analysis through evolutionary relationships (PANTHER), revealing pathognomonic colorectal carcinoma–associated pathways, including Wnt, TGFβ, PI3K, p53, and RTK-RAS. Relative quantitation of peptide presentation on paired colorectal carcinoma and NMC tissue further identified source proteins from cancer- and infection-associated pathways to be overrepresented merely within the colorectal carcinoma ligandome. From the pool of tumor-exclusive peptides, a selected HLA-ligand subset was assessed for immunogenicity, with the majority exhibiting an existing T-cell repertoire. Overall, these data show that the HLA ligandome reflects cancer-associated pathways implicated in colorectal carcinoma oncogenesis, suggesting that alterations in tumor cell metabolism could result in cancer-specific, albeit not mutation-derived, tumor antigens. Hence, a defined pool of unique tumor peptides, attributable to complex cellular alterations that are exclusive to malignant cells, might comprise promising candidates for immunotherapeutic applications. Significance: Cancer-associated pathways are reflected in the antigenic landscape of colorectal cancer, suggesting that tumor-specific antigens do not necessarily have to be mutation-derived but may also originate from other alterations in cancer cells. Cancer Res; 78(16); 4627–41. ©2018 AACR.
Background: Immunotherapy with checkpoint-inhibitors has shown spectacular results in the treatment of certain cancer types including microsatellite instable colorectal cancer (CRC). Applicability is believed to be dependent on the number of potential neo-epitopes derived from genetic mutations that are presented on cancer cells. In case of most microsatellite-stable CRC however, clinical responses to immune checkpoint blockade are so far disappointing. Therefore, we analyzed the non-mutant HLA immunopeptidome of CRC in order to provide an extensive dataset for the development of immunotherapeutic strategies in this very common malignancy.
Introduction: Peptide-basedcancer vaccines targeting tumor-associated antigens comprised of synthetic peptides have shown promising clinical results and have progressed to Phase III clinical testing in several tumor entities, including colorectal carcinoma (CRC). As of yet, these vaccines have typically been limited to HLA-A*02 positive patients, which means that more than half of the patient pool will not be eligible for those treatment strategies. The development of novel strategies for vaccine design, which are applicable to a larger fraction of potential patients, is therefore required. CRC seems to be particularly suitable for antigen-specific immunotherapy as it is among those cancers with highest rates of genetic mutations leading to alterations in protein metabolism. In this study, we aimed to identify HLA class I and II tumor-associated antigens from CRC covering the most frequent HLA-allotypes, in order to develop a peptide warehouse containing HLA-specific peptide panels that can be compiled in a patient-individualized manner, according to the respective patient's HLA-typing.