Michael D. Rushton

Affiliations: 
Newcastle University, Newcastle upon Tyne, England, United Kingdom 
Area:
epigenetics, osteoarthritis
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"Michael Rushton"
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Publications

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Rushton MD, Saunderson EA, Patani H, et al. (2022) An shRNA kinase screen identifies regulators of UHRF1 stability and activity in mouse embryonic stem cells. Epigenetics. 1-18
Peffers MJ, Goljanek-Whysall K, Collins J, et al. (2016) Decoding the Regulatory Landscape of Ageing in Musculoskeletal Engineered Tissues Using Genome-Wide DNA Methylation and RNASeq. Plos One. 11: e0160517
Peffers MJ, Collins J, Fang Y, et al. (2016) Age-related changes in mesenchymal stem cells identified using a multi-omics approach. European Cells & Materials. 31: 136-59
Correia-Melo C, Marques FD, Anderson R, et al. (2016) Mitochondria are required for pro-ageing features of the senescent phenotype. The Embo Journal
Shepherd C, Skelton AJ, Rushton MD, et al. (2015) Expression analysis of the osteoarthritis genetic susceptibility locus mapping to an intron of the MCF2L gene and marked by the polymorphism rs11842874. Bmc Medical Genetics. 16: 108
Rushton MD, Reynard LN, Young DA, et al. (2015) Methylation quantitative trait locus analysis of osteoarthritis links epigenetics with genetic risk. Human Molecular Genetics
Gee F, Rushton MD, Loughlin J, et al. (2015) Correlation of the osteoarthritis susceptibility variants that map to chromosome 20q13 with an expression quantitative trait locus operating on NCOA3 and with functional variation at the polymorphism rs116855380. Arthritis & Rheumatology (Hoboken, N.J.). 67: 2923-32
Rushton MD, Young DA, Loughlin J, et al. (2015) Differential DNA methylation and expression of inflammatory and zinc transporter genes defines subgroups of osteoarthritic hip patients. Annals of the Rheumatic Diseases
Shepherd C, Skelton AJ, Rushton MD, et al. (2015) Expression analysis of the osteoarthritis genetic susceptibility locus mapping to an intron of the MCF2L gene and marked by the polymorphism rs11842874 Bmc Medical Genetics. 16
Rushton MD, Reynard LN, Young DA, et al. (2015) Methylation of cartilage DNA is a mediator of genetic risk at several OA susceptibility loci Osteoarthritis and Cartilage. 23
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