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Methylation of cytosine influences the DNA structure
1993In the past decade it has become increasingly clear that DNA has the potential to adopt a variety of unusual secondary structures which deviate from the classical right-handed B-DNA form. Intrinsic properties of the DNA molecule (primary base sequence and base modifications, degree of supercoiling) determine whether such an unusual structure is ...
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Mismatch repair of deaminated 5-methyl-cytosine
Journal of Molecular Biology, 1987Deamination of 5-methyl-cytosine in double-stranded DNA produces a G-T mismatch. Heteroduplexes of bacteriophage lambda DNA containing a G-T mismatch at the site of a G-5-meC base-pair in one of the parental phages were constructed and used to transfect Escherichia coli cells.
M, Jones, R, Wagner, M, Radman
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Biological aspects of cytosine methylation in eukaryotic cells
Experientia, 1991The existence in eukaryotes of a fifth base, 5-methylcytosine, and of tissue-specific methylation patterns have been known for many years, but except for a general association with inactive genes and chromatin the exact function of this DNA modification has remained elusive.
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The Expanding View of Cytosine Methylation
2008We are currently in an era of increased interest in the role of the epigenome in normal cellular physiology and its role in human disease. Part of this increased interest is driven by new technologies that have allowed us to gain insights never previously possible.
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Cytosine methylation The pros and cons of DNA methylation
Current Biology, 1993T H, Bestor, A, Coxon
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Inheritance of Cytosine Methylation
Journal of Cellular Physiology, 2016Desiree Tillo +2 more
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Transgenerational inheritance of engineered cytosine methylation in mice
Cell Research, 2023Maximilian M. L. Knott, Oded Rechavi
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Single-base cytosine methylation analysis in fruits of three Capsicum species
Genomics, 2020Abdul Rawoof +2 more
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