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  1. 1.   Characterizing the genetic basis of methylome diversity in histologically normal human lung tissue
  2. Shi, J.; Marconett, C. N.; Duan, J.; Hyl, P. L.; Li, P.; Wang, Z.; Wheeler, W.; Zhou, B.; Campan, M.; Lee, D. S.; Huang, J.; Zhou, W.; Triche, T.; Amundadottir, L.; Warner, A.; Hutchinson, A.; Chen, P. H.; Chung, B. S.; Pesatori, A. C.; Consonni, D.; Bertazzi, P. A.; Bergen, A. W.; Freedman, M.; Siegmund, K. D.; Berman, B. P.; Borok, Z.; Chatterjee, N.; Tucker, M. A.; Caporaso, N. E.; Chanock, S. J.; Laird-Offringa, I. A.; Landi, M. T.
  3. Nature Communications. 2014, 27-Feb; 5: 3365.
  1. 2.   Genetic Variation in Metabolic Genes, Occupational Solvent Exposure, and Risk of Non-Hodgkin Lymphoma
  2. Barry, K. H.; Zhang, Y. W.; Lan, Q.; Zahm, S. H.; Holford, T. R.; Leaderer, B.; Boyle, P.; Hosgood, H. D.; Chanock, S.; Yeager, M.; Rothman, N.; Zheng, T. Z.
  3. American Journal of Epidemiology. 2011, Feb; 173(4): 404-413.
  1. 3.   Expression of human BRCA1 variants in mouse ES cells allows functional analysis of BRCA1 mutations
  2. Chang, S.; Biswas, K.; Martin, B. K.; Stauffer, S.; Sharan, S. K.
  3. Journal of Clinical Investigation. 2009, Oct; 119(10): 3160-71.
  1. 4.   Myeloid leukemia: disease genes and mouse models
  2. Copeland, N. G.; Jenkins, N. A.
  3. Progress in Experimental Tumor Research. 1999 35: 53-63.
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