Items where Author is "Sproul, D."
Journal Article
Higham, J. and Kerr, L. and Zhang, Q. and Walker, R.M. and Harris, S.E. and Howard, D.M. and Hawkins, E.L. and Sandu, A.-L. and Steele, J.D. and Waiter, G.D. and Murray, A.D. and Evans, K.L. and McIntosh, A.M. and Visscher, P.M. and Deary, I.J. and Cox, S.R. and Sproul, D. (2022) Local CpG density affects the trajectory and variance of age-associated DNA methylation changes. Genome Biology, 23: 216. ISSN 1474-7596
Hillary, R.F. and Stevenson, A.J. and Cox, S.R. and McCartney, D.L. and Harris, S.E. and Seeboth, A. and Higham, J. and Sproul, D. and Taylor, A.M. and Redmond, P. and Corley, J. and Pattie, A. and Hernández, M.C.V. and Muñoz-Maniega, S. and Bastin, M.E. and Wardlaw, J.M. and Horvath, S. and Ritchie, C.W. and Spires-Jones, T.L. and McIntosh, A.M. and Evans, K.L. and Deary, I.J. and Marioni, R.E. (2021) An epigenetic predictor of death captures multi-modal measures of brain health. Molecular Psychiatry, 2. pp. 3806-3816. ISSN 1359-4184
Patani, H. and Rushton, M.D. and Higham, J. and Teijeiro, S.A. and Oxley, D. and Cutillas, P. and Sproul, D. and Ficz, G. (2020) Transition to naïve human pluripotency mirrors pan-cancer DNA hypermethylation. Nature Communications, 11: 3671. ISSN 2041-1723
Robertson, N.A. and Hillary, R.F. and McCartney, D.L. and Terradas-Terradas, M. and Higham, J. and Sproul, D. and Deary, I.J. and Kirschner, K. and Marioni, R.E. and Chandra, T. (2019) Age-related clonal haemopoiesis is associated with increased epigenetic age. Current Biology, 29 (16). R786-R787. ISSN 0960-9822
Zhang, Q. and Marioni, R.E. and Robinson, M.R. and Higham, J. and Sproul, D. and Wray, N.R. and Deary, I.J. and McRae, A.F. and Visscher, P.M. (2018) Genotype effects contribute to variation in longitudinal methylome patterns in older people. Genome Medicine, 10: 75.
Monograph
Ali Masalmeh, R.H. and Rubio-Ramon, C. and Taglini, F. and Higham, J. and Davidson-Smith, H. and Clark, R. and Wills, J. and Finch, A.J. and Murphy, L. and Sproul, D. (2019) De novo DNA methyltransferase activity in colorectal cancer is directed towards H3K36me3 marked CpG islands. Other. bioRxiv.