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Published on: May 10, 2024
Nucleotide excision repair gene polymorphisms and recurrence after treatment for superficial bladder cancer
Jian Gu1, Hua Zhao, Colin P Dinney
1Department of Epidemiology, The University of Texas M.D. Anderson Cancer Center, Houston, TX 77030, USA.
Purpose:
Interindividual differences in DNA repair capacity not only modify individual susceptibility to carcinogenesis, but also affect individual response to cancer treatment. Nucleotide excision repair (NER) is one of the major DNA repair pathways in mammalian cells involved in the removal of a wide variety of DNA lesions. Polymorphisms in NER genes may influence DNA repair capacity and affect clinical outcome of bladder cancer treatment.
Experimental Design:
To test the influence of NER gene polymorphisms on superficial bladder cancer outcome (recurrence and progression), we conducted a follow-up study of 288 patients with superficial bladder cancer. Median follow-up among patients who were recurrence-free at the end of observation was 21.7 months from diagnosis. The specific polymorphic loci examined include XPA [A/G at 5' untranslated region (UTR)], XPC (poly AT, Ala(499)Val, Lys(939)Gln), XPD (Asp(312)Asn, Lys(751)Gln), XPG (His(1104)Asp), ERCC 1 (G/T at 3' UTR), and ERCC6 (Met(1097)Val, Arg(1230)Pro).
Results:
The ERCC6 (Met(1097)Val) polymorphism had a significant impact on recurrence: carriers of at least one variant allele (Val) had a significantly higher recurrence risk than carriers of the wild-type allele (Met/Met; hazard ratio, 1.54; 95% confidence interval, 1.02-2.33). There were no overall statistically significant differences in the distributions of the other polymorphisms between patients with and without recurrence. However, when we combined these variant genotypes, there was a significant trend for an increased recurrence risk with an increasing number of putative high-risk alleles. Using individuals with five or fewer putative high-risk alleles as the reference group, individuals with six to seven risk alleles and individuals with eight or more risk alleles had higher recurrence risks, with hazard ratios of 0.92 (0.54-1.57) and 2.53 (1.48-4.30), respectively (P for trend < 0.001). There was also a significant trend for shorter recurrence-free survival time with increasing number of variant alleles (log rank test, P = 0.0007). When we stratified the patients according to intravesical Bacillus Calmette-Guerin treatment, we found a significant trend for shorter recurrence-free survival time in patients with variant alleles of XPA or ERCC6 polymorphisms who received Bacillus Calmette-Guerin treatment (log rank test, P = 0.078 and 0.022, respectively). There were no significant individual or joint associations between these polymorphisms and progression.
Conclusions:
These data suggest that interindividual differences in DNA repair capacity may have an important impact on superficial bladder cancer recurrence. A pathway-based approach is preferred to study the effects of individual polymorphism on clinical outcomes.
Insights
Genetic variations in DNA repair capacity, specifically in nucleotide excision repair (NER) genes, significantly impact superficial bladder cancer recurrence. Certain ERCC6 and XPA gene polymorphisms increase recurrence risk, especially when combined or with Bacillus Calmette-Guerin treatment.
Area of Science:
- Genetics
- Oncology
- Molecular Biology
Background:
- Interindividual differences in DNA repair capacity influence cancer susceptibility and treatment response.
- Nucleotide excision repair (NER) is a key pathway for removing DNA damage.
- Polymorphisms in NER genes may affect DNA repair efficiency and bladder cancer outcomes.
Purpose of the Study:
- To investigate the impact of NER gene polymorphisms on the recurrence and progression of superficial bladder cancer.
- To determine if specific genetic variations in NER pathway genes correlate with clinical outcomes in bladder cancer patients.
Main Methods:
- A follow-up study of 288 superficial bladder cancer patients was conducted.
- Polymorphisms in NER genes including XPA, XPC, XPD, XPG, ERCC1, and ERCC6 were analyzed.
- Statistical analysis, including hazard ratios and trend tests, was used to assess recurrence and progression risks.
Main Results:
- The ERCC6 (Met1097Val) polymorphism was associated with a significantly higher risk of recurrence.
- A combined analysis revealed a trend for increased recurrence risk with a higher number of variant alleles across multiple NER genes.
- A significant trend for shorter recurrence-free survival was observed with an increasing number of variant alleles, particularly in patients receiving Bacillus Calmette-Guerin treatment.
Conclusions:
- Interindividual variations in DNA repair capacity, influenced by NER gene polymorphisms, play a significant role in superficial bladder cancer recurrence.
- A pathway-based approach is recommended for studying the effects of genetic polymorphisms on clinical outcomes in cancer.
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