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Identification of mechanisms underlying transporter associated with antigen processing deficiency in metastatic
A Francesca Setiadi1, Muriel D David, Susan S Chen
1Biomedical Research Centre and Michael Smith Laboratories, Department of Zoology, University of British Columbia, Vancouver, British Columbia.
Abstract:
Expression of transporter associated with antigen processing (TAP) is often lost in metastatic carcinomas, resulting in defective antigen processing and presentation and escape of the cancer cells from immune surveillance. In this study, the nature of TAP deficiencies in tumors was investigated. By chromatin immunoprecipitation assay, we showed that the recruitment of RNA polymerase II to the TAP-1 gene was impaired in TAP-deficient cells derived from murine melanoma, prostate, and lung carcinomas, compared with TAP-expressing fibroblasts and lymphoma cells. This suggested that the deficiency in TAP-1 expression resulted, at least partially, from a relatively low level of transcription of the TAP-1 gene. Furthermore, levels of TAP-1 promoter activity, as assessed by stable transfections with a reporter construct containing the TAP-1 promoter, were relatively low in TAP-deficient cells. To examine genetic heritability of regulators of TAP-1 promoter activity, TAP- and MHC class I-deficient cells of H-2b origin were fused with wild-type fibroblasts of H-2k origin. Fusion with TAP-expressing cells complemented the low levels of TAP-1 promoter activity in TAP-deficient cells. However, these fused cells exhibited lower levels of TAP-1 mRNA and H-2k than unfused fibroblasts. Further analysis showed that TAP-1 mRNA stability was lower in fused carcinoma fibroblasts than in unfused fibroblasts. Based on these results, we propose that TAP deficiency in many carcinomas is caused by a decrease in activity/expression of trans-acting factors regulating TAP-1 promoter activity, as well as a decrease in TAP-1 mRNA stability. These results have significant implications for understanding immune evasion mechanisms in tumors.
Insights
Transporter associated with antigen processing (TAP) loss in carcinomas impairs immune surveillance. This study reveals reduced TAP-1 gene transcription and mRNA stability contribute to TAP deficiency, aiding tumor immune evasion.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Metastatic carcinomas often lose transporter associated with antigen processing (TAP) expression.
- This loss leads to defective antigen processing and presentation, enabling cancer cells to evade immune surveillance.
Purpose of the Study:
- To investigate the molecular mechanisms underlying TAP deficiencies in tumors.
- To understand how impaired TAP expression contributes to tumor immune evasion.
Main Methods:
- Chromatin immunoprecipitation assays to assess RNA polymerase II recruitment to the TAP-1 gene.
- Reporter construct transfections to measure TAP-1 promoter activity.
- Cell fusion experiments to study genetic heritability of TAP-1 regulation.
- Analysis of TAP-1 mRNA stability.
Main Results:
- Impaired RNA polymerase II recruitment to the TAP-1 gene in TAP-deficient carcinoma cells.
- Reduced TAP-1 promoter activity in TAP-deficient cells.
- Complementation of TAP-1 promoter activity upon fusion with TAP-expressing cells, but with decreased TAP-1 mRNA and MHC class I levels.
- Lower TAP-1 mRNA stability in fused carcinoma fibroblasts.
Conclusions:
- TAP deficiency in carcinomas is attributed to decreased activity of trans-acting factors regulating TAP-1 promoter activity.
- Reduced TAP-1 mRNA stability further contributes to TAP deficiency.
- These mechanisms are significant for understanding tumor immune evasion strategies.
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