rs1047768
This is a synonymous variant in the ERCC5 gene — it does not change the protein's amino acid sequence.
▶ClinVar annotation
Xeroderma pigmentosum, group G (XPG); not specified
View on ClinVar →▶Research that mentions this SNP (7)
▶Associations of polymorphisms in the genes of FGFR2, FGF1, and RBFOX2 with breast cancer risk by estrogen/progesterone receptor statusAssociationN=2,416Yu‐Ling Cen et al.(2013)· Molecular Carcinogenesis
A hospital-based case-control study in rural and urban India (1,204 cases; 1,212 controls) examined genetic and lifestyle risk factors for breast cancer. Four SNPs in FGFR2 (rs1219648, rs2420946, rs2981575, rs2981582) showed positive associations with breast cancer (ORs 1.32-1.47). Additional SNPs in obesity and metabolic genes (rs374748 in FBN2, rs2922763 in HNF4G, rs2116830 in KCNMA1, rs11121832 in MTHFR, rs16886165 in MAP3K1, rs11594610 in TCF7L2, rs2274459 in MLN) were associated with increased breast cancer risk. Waist-to-hip ratio ≥0.95 showed strong association (OR 3.78; 95% CI 2.92-4.89), and women living first 20 years in rural areas showed protective effect (OR 0.77).
▶A common and functional gene variant in the vascular endothelial growth factor a predicts clinical outcome in early‐stage breast cancerReviewGudrun Absenger et al.(2013)· Molecular Carcinogenesis
This document is a comprehensive collection of ~1,200 cancer-related research abstracts and summaries published in various journals (2013), covering clinical trials, pharmacogenomic studies, and mutation analyses across multiple cancer types including colorectal, breast, lung, lymphoma, and other malignancies. The collection documents associations between genetic variants (SNPs and somatic mutations), gene expression patterns, and cancer treatment outcomes, including studies on KRAS, EGFR, TP53, BRAF, and pharmacogenomic variants like CYP3A4 and UGT1A1.
▶Sipa1 promoter polymorphism predicts risk and metastasis of lung cancer in ChineseReviewChenli Xie et al.(2013)· Molecular Carcinogenesis
This is a comprehensive journal compilation containing multiple oncology and pharmacogenomics studies published in 2013 across various journals. The collection includes 60+ papers covering cancer treatment outcomes, genetic polymorphisms predicting chemotherapy response and survival, pharmacogenetic variants in drug metabolism and DNA repair genes, and prognostic biomarkers in various cancer types including breast, lung, colorectal, hematologic malignancies, and others. Key findings include associations of XRCC1 variants (rs915927, rs76507, rs2854501, rs2854509, rs3213255) with bladder cancer chemotherapy survival, ABCG2 rs2725264 with lung cancer overall survival (HR 3.22), SLCO1B1 rs4149056 with methotrexate pharmacokinetics, MTHFR rs1801131 with acute lymphoblastic leukemia outcome, and ABCC3/GSTM variants with acute myeloid leukemia survival.
▶Variation in PAH‐related DNA adduct levels among non‐smokers: The role of multiple genetic polymorphisms and nucleotide excision repair phenotypeAssociationN=111Arash Etemadi et al.(2013)· International Journal of Cancer
This study examined PAH-related DNA adduct levels in 111 female never-smokers from Iran, evaluating 21 SNPs in 14 xenobiotic metabolism genes and 12 SNPs in 8 DNA repair genes. DNA adduct levels were significantly lower with NAT2 slow alleles (β=-0.24, p=0.01) and ERCC5 non-risk genotype (β=0.16, p=0.04), but higher with MPO risk alleles (β=0.21, p=0.01). The combination of phase I genes and measured NER capacity explained 17% more variation in adduct levels than environmental exposure alone (r²=0.24 vs 0.07), demonstrating the importance of genetic polymorphisms in PAH metabolism and DNA repair capacity.
▶Potentially functional polymorphisms in DNA repair genes and non‐small‐cell lung cancer survival: A pathway‐based analysisAssociationN=568Jing Dong et al.(2012)· Molecular Carcinogenesis
A pathway-based candidate gene association study of 218 SNPs in 50 DNA repair genes on non-small-cell lung cancer (NSCLC) survival in 568 Chinese patients. Six SNPs remained significant in multivariate analysis: ATM rs189037 (HR=1.40, p=0.011), MRE11A rs11020802 (HR=1.35, p=0.007), ERCC2 rs1799793 (HR=1.56, p=0.009), MBD4 rs140693 (HR=0.49, p=0.001), XRCC1 rs25487 (HR=1.66, p=0.001), and PMS1 rs5742933 (HR=1.89, p=0.011). In advanced patients treated with platinum-based chemotherapy, ERCC1 rs11615 and XPC rs2228000 were associated with survival.
▶Genetic sequence variants and the development of secondary primary cancers in patients with head and neck cancersAssociationN=531Abul Kalam Azad et al.(2012)· Cancer
This case-control association study evaluated 23 genetic sequence variants in 17 genes across DNA repair, cell cycle, and other pathways in 531 stage I-II radiation-treated head and neck cancer (HNC) patients to identify associations with secondary primary cancers (SPCs). Among the variants tested, the DNMT3B C149T variant (rs2424913) showed a strong significant association with SPC development, with adjusted hazard ratios of 2.23 (95% CI, 1.32-3.78; P = .003) for TT versus CC genotype and 1.49 (95% CI, 1.15-1.95; P = .003) per T allele. A haplotype cluster of 5 DNMT3B variants in strong linkage disequilibrium also showed significant associations (P < .003), suggesting aberrant DNA methylation is an important modulator of field cancerization in HNC.
▶Xeroderma pigmentosum complementation group C single‐nucleotide polymorphisms in the nucleotide excision repair pathway correlate with prolonged progression‐free survival in advanced ovarian cancerAssociationN=139Nicole D. Fleming et al.(2012)· Cancer
A case-control study of 139 patients with advanced ovarian cancer found that SNPs in the nucleotide excision repair (NER) pathway genes, particularly XPC and XPF/ERCC4, were associated with platinum chemotherapy response. XPC rs3731108 AG/AA genotype was associated with prolonged progression-free survival (PFS) of 21.3 months vs 13.4 months (HR=0.63, p=0.03), XPC rs1124303 GT/GG genotype with PFS of 22.8 vs 14.9 months (HR=0.47, p=0.03), and XPC-PAT polymorphism with extended PFS (HR=0.56, p=0.01). These XPC associations remained significant after multivariate adjustment for BRCA status and cytoreductive surgery outcome.
About ERCC5
This gene encodes a single-strand specific DNA endonuclease that makes the 3' incision in DNA excision repair following UV-induced damage. The protein may also function in other cellular processes, including RNA polymerase II transcription, and transcription-coupled DNA repair. Mutations in this gene cause xeroderma pigmentosum complementation group G (XP-G), which is also referred to as xeroderma pigmentosum VII (XP7), a skin disorder characterized by hypersensitivity to UV light and increased susceptibility for skin cancer development following UV exposure. Some patients also develop Cockayne syndrome, which is characterized by severe growth defects, cognitive disability, and cachexia. Read-through transcription exists between this gene and the neighboring upstream BIVM (basic, immunoglobulin-like variable motif containing) gene. [provided by RefSeq, Feb 2011]
View all ERCC5 variants →Gene information from NCBI Gene. Variant classifications from ClinVar.
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