Genome-wide Profiling Identifies DNA Methylation Signatures of Aging in Rod Photoreceptors Associated with Alterations in Energy Metabolism is a research paper published in Cell Reports (2020). On theSindex it has a DataRank of 0. It has been cited 56 times.
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Intramural NIH HHS
Grant: ZIA EY000450
Intramural NIH HHS
Grant: ZIA EY000456
Intramural NIH HHS
Grant: ZIA EY000546
National Institutes of Health
Grant: 1ZIAEY000456-07
Animal models of eye diseases
National Institutes of Health
Grant: 1ZIAEY000450-15
Genetic and epigenetic regulation of retinal development, aging and evolution
Johns Hopkins University
National Institutes of Health
Fields of Study
MeSH Terms
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Additional file 1 of msPIPE: a pipeline for the analysis and visualization of whole-genome bisulfite sequencing data
Additional file 1 of msPIPE: a pipeline for the analysis and visualization of whole-genome bisulfite sequencing data
Additional file 1 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 1 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 4 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 4 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 13 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 13 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 14 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 14 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 15 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 15 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 16 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 16 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 17 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 17 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 10 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 12 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 12 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle
Additional file 9 of Extensive differential DNA methylation between tuberculosis skin test positive and skin test negative cattle