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Updated: Feb 9, 2026

Orthotopic Mouse Model of Colorectal Cancer
Published on: December 4, 2007
Complex pattern of immune evasion in MSI colorectal cancer
Mine Ozcan1,2,3, Jonas Janikovits1,2,3, Magnus von Knebel Doeberitz1,2,3
1Department of Applied Tumour Biology, Institute of Pathology, University of Heidelberg, Heidelberg, Germany.
Abstract:
Mismatch repair (MMR)-deficient cancers accumulate multiple insertion/deletion mutations at coding microsatellites (cMS), which give rise to frameshift peptide neoantigens. The high mutational neoantigen load of MMR-deficient cancers is reflected by pronounced anti-tumoral immune responses of the host and high responsiveness towards immune checkpoint blockade. However, immune evasion mechanisms can interfere with the immune response against MMR-deficient tumors. We here performed a comprehensive analysis of immune evasion in MMR-deficient colorectal cancers, focusing on HLA class I-mediated antigen presentation. 72% of MMR-deficient colorectal cancers of the DFCI database harbored alterations affecting genes involved in HLA class I-mediated antigen presentation, and 54% of these mutations were predicted to abrogate function. Mutations affecting the HLA class I transactivator NLRC5 were observed as a potential new immune evasion mechanism in 26% (6% abrogating) of the analyzed tumors. NLRC5 mutations in MMR-deficient cancers were associated with decreased levels of HLA class I antigen expression. In summary, the majority of MMR-deficient cancers display mutations interfering with HLA class I antigen presentation that reflect active immune surveillance and immunoselection during tumor development. Clinical studies focusing on immune checkpoint blockade in MSI cancer should account for the broad variety of immune evasion mechanisms as potential biomarkers of therapy success.
Insights
Mismatch repair-deficient (MMR-D) cancers have high neoantigen loads, yet immune evasion can hinder anti-tumor responses. This study reveals frequent mutations affecting HLA class I antigen presentation in MMR-D colorectal cancers, impacting immune surveillance.
Area of Science:
- Oncology
- Immunology
- Genetics
Background:
- Mismatch repair (MMR)-deficient cancers exhibit high mutational burdens, generating neoantigens that elicit anti-tumor immunity.
- Despite this, immune evasion mechanisms can limit the effectiveness of host immune responses and immune checkpoint blockade therapies.
Purpose of the Study:
- To comprehensively analyze immune evasion strategies in MMR-deficient colorectal cancers, with a specific focus on alterations in HLA class I antigen presentation pathways.
Main Methods:
- Analysis of a DFCI database of MMR-deficient colorectal cancers.
- Identification and functional prediction of mutations in genes involved in HLA class I antigen presentation, including NLRC5.
Main Results:
- 72% of MMR-deficient colorectal cancers harbored alterations in HLA class I antigen presentation genes, with 54% predicted to impair function.
- Mutations in NLRC5, a key HLA class I transactivator, were found in 26% of tumors (6% abrogating), correlating with reduced HLA class I expression.
Conclusions:
- The majority of MMR-deficient cancers possess mutations that disrupt HLA class I antigen presentation, indicating active immune surveillance and selection.
- These findings highlight diverse immune evasion mechanisms in MMR-deficient cancers, crucial for understanding immunotherapy response and developing biomarkers.
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