Human skeletal muscle possesses an epigenetic memory of hypertrophy RA Seaborne, J Strauss, M Cocks, S Shepherd, TD O’Brien, ... Scientific reports 8 (1), 1898, 2018 | 301 | 2018 |
Does skeletal muscle have an ‘epi’‐memory? The role of epigenetics in nutritional programming, metabolic disease, aging and exercise AP Sharples, CE Stewart, RA Seaborne Aging cell 15 (4), 603-616, 2016 | 217 | 2016 |
Comparative transcriptome and methylome analysis in human skeletal muscle anabolism, hypertrophy and epigenetic memory DC Turner, RA Seaborne, AP Sharples Scientific reports 9 (1), 4251, 2019 | 119 | 2019 |
DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity DC Turner, PP Gorski, MF Maasar, RA Seaborne, P Baumert, AD Brown, ... Scientific Reports 10 (1), 15360, 2020 | 93 | 2020 |
Methylome of human skeletal muscle after acute & chronic resistance exercise training, detraining & retraining RA Seaborne, J Strauss, M Cocks, S Shepherd, TD O’brien, ... Scientific data 5 (1), 1-9, 2018 | 82 | 2018 |
The interplay between exercise metabolism, epigenetics, and skeletal muscle remodeling RA Seaborne, AP Sharples Exercise and Sport Sciences Reviews 48 (4), 188-200, 2020 | 76 | 2020 |
UBR5 is a novel E3 ubiquitin ligase involved in skeletal muscle hypertrophy and recovery from atrophy RA Seaborne, DC Hughes, DC Turner, DJ Owens, LM Baehr, P Gorski, ... The Journal of physiology 597 (14), 3727-3749, 2019 | 69 | 2019 |
Transcriptomic and epigenetic regulation of disuse atrophy and the return to activity in skeletal muscle A Fisher, RA Seaborne, TM Hughes, A Gutteridge, CE Stewart, ... FASEB journal, 2017 | 58 | 2017 |
Graded reductions in preexercise muscle glycogen impair exercise capacity but do not augment skeletal muscle cell signaling: implications for CHO periodization MA Hearris, KM Hammond, RA Seaborne, B Stocks, SO Shepherd, ... Journal of Applied Physiology 126 (6), 1587-1597, 2019 | 41 | 2019 |
The comparative methylome and transcriptome after change of direction compared to straight line running exercise in human skeletal muscle MF Maasar, DC Turner, PP Gorski, RA Seaborne, JA Strauss, ... Frontiers in physiology 12, 619447, 2021 | 36 | 2021 |
Resistance training rejuvenates the mitochondrial methylome in aged human skeletal muscle BA Ruple, JS Godwin, PHC Mesquita, SC Osburn, CG Vann, DA Lamb, ... bioRxiv, 2021.04. 13.439651, 2021 | 32 | 2021 |
Knockdown of the E3 ubiquitin ligase UBR5 and its role in skeletal muscle anabolism DC Hughes, DC Turner, LM Baehr, RA Seaborne, M Viggars, JC Jarvis, ... American Journal of Physiology-Cell Physiology 320 (1), C45-C56, 2021 | 32 | 2021 |
Genetic variation at mouse and human ribosomal DNA influences associated epigenetic states F Rodriguez-Algarra, RAE Seaborne, AF Danson, S Yildizoglu, ... Genome biology 23 (1), 54, 2022 | 23 | 2022 |
Exercise and DNA methylation in skeletal muscle AP Sharples, RA Seaborne Sports, exercise, and nutritional genomics, 211-229, 2019 | 19 | 2019 |
Mechanical loading of bioengineered skeletal muscle in vitro recapitulates gene expression signatures of resistance exercise in vivo DC Turner, PP Gorski, RA Seaborne, M Viggars, M Murphy, JC Jarvis, ... Journal of Cellular Physiology 236 (9), 6534-6547, 2021 | 16 | 2021 |
Exercising bioengineered skeletal muscle in vitro: biopsy to bioreactor DC Turner, AM Kasper, RA Seaborne, AD Brown, GL Close, M Murphy, ... Myogenesis: Methods and Protocols, 55-79, 2019 | 14 | 2019 |
Epigenetics of skeletal muscle aging AP Sharples, RA Seaborne, CE Stewart Epigenetics of aging and longevity, 389-416, 2018 | 14 | 2018 |
The dawn of the functional genomics era in muscle physiology RAE Seaborne, J Ochala The Journal of Physiology, 2023 | 6 | 2023 |
A person before a PhD: understanding and combatting an academic identity crisis R Seaborne Nature 578, 327-328, 2020 | 5* | 2020 |
Commentaries on Viewpoint:” Muscle memory” not mediated by myonuclear number? Secondary analysis of human detraining data J Gondin | 3 | 2019 |