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  • Genetic Variants Related to...
    Machiela, Mitchell J.; Hofmann, Jonathan N.; Carreras-Torres, Robert; Brown, Kevin M.; Johansson, Mattias; Wang, Zhaoming; Foll, Matthieu; Li, Peng; Rothman, Nathaniel; McKay, James D.; Ye, Yuanqing; Henrion, Marc; Bruinsma, Fiona; Jordan, Susan; Severi, Gianluca; Hveem, Kristian; Vatten, Lars J.; Larsson, Susanna C.; Wolk, Alicja; Banks, Rosamonde E.; Selby, Peter J.; Easton, Douglas F.; Pharoah, Paul; Andreotti, Gabriella; Freeman, Laura E. Beane; Albanes, Demetrius; Mannisto, Satu; Weinstein, Stephanie; Edwards, Todd E.; Lipworth, Loren; Gapstur, Susan M.; Stevens, Victoria L.; Carol, Hallie; Freedman, Matthew L.; Cho, Eunyoung; Kraft, Peter; Preston, Mark A.; Wilson, Kathryn M.; Gaziano, J. Michael; Sesso, Howard S.; Freedman, Neal D.; Huang, Wen-Yi; Anema, John G.; Kahnoski, Richard J.; Lane, Brian R.; Noyes, Sabrina L.; Petillo, David; Colli, Leandro M.; Sampson, Joshua N.; Besse, Celine; Blanche, Helene; Boland, Anne; Burdette, Laurie; Prokhortchouk, Egor; Skryabin, Konstantin G.; Mijuskovic, Mirjana; Ognjanovic, Miodrag; Foretova, Lenka; Holcatova, Ivana; Janout, Vladimir; Mates, Dana; Mukeriya, Anush; Rascu, Stefan; Zaridze, David; Bencko, Vladimir; Cybulski, Cezary; Fabianova, Eleonora; Jinga, Viorel; Lissowska, Jolanta; Lubinski, Jan; Navratilova, Marie; Rudnai, Peter; Szeszenia-Dabrowska, Neonila; Benhamou, Simone; Cancel-Tassin, Geraldine; Cussenot, Olivier; Bueno-de-Mesquita, H. Bas; Canzian, Federico; Duell, Eric J.; Sitaram, Raviprakash T.; Peters, Ulrike; White, Emily; Anderson, Garnet L.; Johnson, Lisa; Luo, Juhua; Buring, Julie; Lee, I-Min; Chow, Wong-Ho; Wood, Christopher; Eisen, Timothy; Larkin, James; Choueiri, Toni K.; Lathrop, G. Mark; Teh, Bin Tean; Deleuze, Jean-Francois; Wu, Xifeng; Houlston, Richard S.; Chanock, Stephen J.; Scelo, Ghislaine; Purdue, Mark P.

    European urology, 11/2017, Letnik: 72, Številka: 5
    Journal Article

    Relative telomere length in peripheral blood leukocytes has been evaluated as a potential biomarker for renal cell carcinoma (RCC) risk in several studies, with conflicting findings. We performed an analysis of genetic variants associated with leukocyte telomere length to assess the relationship between telomere length and RCC risk using Mendelian randomization, an approach unaffected by biases from temporal variability and reverse causation that might have affected earlier investigations. Genotypes from nine telomere length-associated variants for 10 784 cases and 20 406 cancer-free controls from six genome-wide association studies (GWAS) of RCC were aggregated into a weighted genetic risk score (GRS) predictive of leukocyte telomere length. Odds ratios (ORs) relating the GRS and RCC risk were computed in individual GWAS datasets and combined by meta-analysis. Longer genetically inferred telomere length was associated with an increased risk of RCC (OR=2.07 per predicted kilobase increase, 95% confidence interval CI:=1.70–2.53, p<0.0001). As a sensitivity analysis, we excluded two telomere length variants in linkage disequilibrium (R2>0.5) with GWAS-identified RCC risk variants (rs10936599 and rs9420907) from the telomere length GRS; despite this exclusion, a statistically significant association between the GRS and RCC risk persisted (OR=1.73, 95% CI=1.36–2.21, p<0.0001). Exploratory analyses for individual histologic subtypes suggested comparable associations with the telomere length GRS for clear cell (N=5573, OR=1.93, 95% CI=1.50–2.49, p<0.0001), papillary (N=573, OR=1.96, 95% CI=1.01–3.81, p=0.046), and chromophobe RCC (N=203, OR=2.37, 95% CI=0.78–7.17, p=0.13). Our investigation adds to the growing body of evidence indicating some aspect of longer telomere length is important for RCC risk. Telomeres are segments of DNA at chromosome ends that maintain chromosomal stability. Our study investigated the relationship between genetic variants associated with telomere length and renal cell carcinoma risk. We found evidence suggesting individuals with inherited predisposition to longer telomere length are at increased risk of developing renal cell carcinoma. This large Mendelian randomization study utilizes a risk score of telomere length associated genetic variants to demonstrate a strong association between longer predicted leukocyte telomere length and increased risk of developing common subtypes of renal cell carcinoma.