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Updated: Jan 22, 2026

Colorectal Cancer Cell Surface Protein Profiling Using an Antibody Microarray and Fluorescence Multiplexing
Published on: September 25, 2011
Evolving neoantigen profiles in colorectal cancers with DNA repair defects
Giuseppe Rospo1, Annalisa Lorenzato1,2, Nabil Amirouchene-Angelozzi3
1Candiolo Cancer Institute, FPO-IRCCS, 10060, Candiolo (TO), Italy.
Background:
Neoantigens that arise as a consequence of tumor-specific mutations can be recognized by T lymphocytes leading to effective immune surveillance. In colorectal cancer (CRC) and other tumor types, a high number of neoantigens is associated with patient response to immune therapies. The molecular processes governing the generation of neoantigens and their turnover in cancer cells are poorly understood. We exploited CRC as a model system to understand how alterations in DNA repair pathways modulate neoantigen profiles over time.
Methods:
We performed whole exome sequencing (WES) and RNA sequencing (RNAseq) in CRC cell lines, in vitro and in vivo, and in CRC patient-derived xenografts (PDXs) to track longitudinally genomic profiles, clonal evolution, mutational signatures, and predicted neoantigens.
Results:
The majority of CRC models showed remarkably stable mutational and neoantigen profiles; however, those carrying defects in DNA repair genes continuously diversified. Rapidly evolving and evolutionary stable CRCs displayed characteristic genomic signatures and transcriptional profiles. Downregulation of molecules implicated in antigen presentation occurred selectively in highly mutated and rapidly evolving CRC.
Conclusions:
These results indicate that CRCs carrying alterations in DNA repair pathways display dynamic neoantigen patterns that fluctuate over time. We define CRC subsets characterized by slow and fast evolvability and link this phenotype to downregulation of antigen-presenting cellular mechanisms. Longitudinal monitoring of the neoantigen landscape could be relevant in the context of precision medicine.
Insights
Colorectal cancer (CRC) with DNA repair defects shows dynamic neoantigen profiles. Understanding this evolution is key for predicting response to cancer immunotherapies.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Neoantigens, derived from tumor mutations, are crucial for T cell recognition and immune surveillance.
- High neoantigen load correlates with patient response to cancer immunotherapies, particularly in colorectal cancer (CRC).
- The molecular mechanisms driving neoantigen generation and turnover in cancer remain largely unknown.
Purpose of the Study:
- To investigate how alterations in DNA repair pathways influence neoantigen profiles over time in colorectal cancer.
- To characterize the dynamics of neoantigen landscapes in different CRC models.
Main Methods:
- Whole exome sequencing (WES) and RNA sequencing (RNAseq) were employed.
- Analysis was performed on CRC cell lines (in vitro and in vivo) and patient-derived xenografts (PDXs).
- Longitudinal tracking of genomic profiles, clonal evolution, mutational signatures, and predicted neoantigens was conducted.
Main Results:
- Most CRC models exhibited stable mutational and neoantigen profiles.
- CRCs with DNA repair defects demonstrated continuous diversification of neoantigens.
- Rapidly evolving CRCs showed distinct genomic and transcriptional signatures, with downregulated antigen presentation molecules.
Conclusions:
- Colorectal cancers with DNA repair alterations display fluctuating neoantigen patterns.
- CRC subsets with distinct evolvability (slow vs. fast) were identified, linked to antigen presentation mechanisms.
- Longitudinal neoantigen monitoring may hold significance for precision medicine strategies.
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