genetic variation in telomere maintenance genes, telomere length and breast cancer risk端粒维持基因的遗传变异,染色体端粒的长度和乳腺癌的风险.pdfVIP

genetic variation in telomere maintenance genes, telomere length and breast cancer risk端粒维持基因的遗传变异,染色体端粒的长度和乳腺癌的风险.pdf

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genetic variation in telomere maintenance genes, telomere length and breast cancer risk端粒维持基因的遗传变异,染色体端粒的长度和乳腺癌的风险

Genetic Variation in Telomere Maintenance Genes, Telomere Length and Breast Cancer Risk 1 2 2 1 1 2 Jing Shen *, Mary Beth Terry , Yuyan Liao , Irina Gurvich , Qiao Wang , Ruby T. Senie , Regina M. Santella1 1 Department of Environmental Health Sciences, Mailman School of Public Health, Columbia University, New York, New York, United States of America, 2 Department of Epidemiology, Mailman School of Public Health, Columbia University, New York, New York, United States of America Abstract Background: Telomeres at the ends of eukaryotic chromosomes play a critical role in maintaining the integrity and stability of the genome and participate in the initiation of DNA damage/repair responses. Methods: We performed a case-control study to evaluate the role of three SNPs (TERT-07, TERT-54 and POT1-03) in telomere maintenance genes previously found to be significantly associated with breast cancer risk. We used sister-sets obtained from the New York site of the Breast Cancer Family Registry (BCFR). Among the 313 sister-sets, there were 333 breast cancer cases and 409 unaffected sisters who were evaluated in the current study. We separately applied conditional logistic regression and generalized estimating equations (GEE) models to evaluate associations between the three SNPs and breast cancer risk within sister-sets. We examined the associations between genotype, covariates and telomere length among unaffected sisters using a GEE model. Results: We found no significant associations between the three SNPs in telomere maintenance genes and breast cancer risk by both conditional logistic regression and GEE models, nor were these SNPs significantly related to telomere length. Among unaffected sisters, shortened telomeres

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