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Positive Association of Polymorphisms in Estrogen Biosynthesis Gene, CYP19A1, and Metabolism, GST, in Breast Cancer Susceptibility

机译:雌激素生物合成基因CYP19A1的多态性与代谢,GST与乳腺癌易感性的正相关

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Purpose: This case-control study was conducted in order to evaluate the potential role of polymorphic genes encoding enzymes involved in estrogen biosynthesis (CYP19A1) and metabolism (GSTM1, GSTT1, and GSTP1), and their action in modulating individual susceptibility to breast cancer. Methods: Genomic DNA was extracted from blood samples of 101 patients with histological diagnosis of breast cancer and 121 healthy women. Genotyping analyses of CYP19A1 codon 39 Trp/Arg (T/C), GSTM1 and GSTT1 homozygous deletions, and GSTP1 codon 105 Ile/Val (A/G) were performed by polymerase chain reaction-based methods. Results: Odds ratios (ORs) and 95% confidence intervals (95% CIs) were calculated by unconditional logistic regression. Significant statistical association of the TC/CC genotypes combined with breast cancer risk was found, with reference to TT genotype (OR = 1.770; 95% CI = 1.036-3.024; p = 0.036). Also, CYP19A1 arginine allele in homozygosity or heterozygosity (TC/CC) was associated with a significant increased risk for breast cancer when associated to GSTM1 null genotype (OR = 6.158; 95% CI = 2.676-14.171; p < 0.001) and GSTT1 null genotype (OR = 4.870; 95% CI = 2.216-10.700; p < 0.001). The three-way combination of CYP19A1 TC/CC, GSTM1 null, and GSTT1 null polymorphism was related with significant increased risk for breast cancer (OR = 11.429; 95% CI = 3.590-36.385; p < 0.001). Valine alleles compared with isoleucine alleles in codon 105 in GSTP1, in combination with CYP19A1 genotypes, were not associated with an increase of breast cancer development. Conclusions: Our results suggest that the effect of CYP19A1 T/C polymorphism in susceptibility to breast cancer development can be modulated by the presence of GSTM1 and GSTT1, but not GSTP1.
机译:目的:进行本病例对照研究,以评估编码参与雌激素生物合成(CYP19A1)和新陈代谢(GSTM1,GSTT1和GSTP1)的酶的多态性基因的潜在作用,以及它们在调节个体对乳腺癌的敏感性中的作用。方法:从101名经组织学诊断为乳腺癌的患者和121名健康女性的血液样本中提取基因组DNA。 CYP19A1密码子39 Trp / Arg(T / C),GSTM1和GSTT1纯合缺失以及GSTP1密码子105 Ile / Val(A / G)的基因分型分析通过基于聚合酶链反应的方法进行。结果:通过无条件逻辑回归计算赔率(OR)和95%置信区间(95%CI)。与TT基因型相关,发现TC / CC基因型与乳腺癌风险显着相关(OR = 1.770; 95%CI = 1.036-3.024; p = 0.036)。同样,当与GSTM1 null基因型(OR = 6.158; 95%CI = 2.676-14.171; p <0.001)和GSTT1 null相关时,纯合或杂合性(TC / CC)中的CYP19A1精氨酸等位基因与乳腺癌风险显着增加相关。基因型(OR = 4.870; 95%CI = 2.216-10.700; p <0.001)。 CYP19A1 TC / CC,GSTM1 null和GSTT1 null多态性的三向组​​合与乳腺癌风险显着增加相关(OR = 11.429; 95%CI = 3.590-36.385; p <0.001)。 GSTP1密码子105中的缬氨酸等位基因与异亮氨酸等位基因相比较,与CYP19A1基因型结合,与乳腺癌发展的增加无关。结论:我们的研究结果表明,CYP19A1 T / C多态性对乳腺癌易感性的影响可以通过存在GSTM1和GSTT1来调节,而不能通过GSTP1来调节。

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