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  1. The Carboxy-Terminal Domain of ROS1 Is Essential for 5-Methylcytosine DNA Glycosylase Activity
  2. Wilms tumor protein recognizes 5-carboxylcytosine within a specific DNA sequence
  3. Structural basis for Klf4 recognition of methylated DNA
  4. Selective Non-nucleoside Inhibitors of Human DNA Methyltransferases Active in Cancer Including in Cancer Stem Cells
  5. Structure of a Naegleria Tet-like dioxygenase in complex with 5-methylcytosine DNA
  6. Activity and crystal structure of human thymine DNA glycosylase mutant N140A with 5-carboxylcytosine DNA at low pH
  7. Selective Excision of 5-Carboxylcytosine by a Thymine DNA Glycosylase Mutant
  8. Structural Insights into the Substrate Recognition by TDG Glycosylase Domain and MBD4 Glycosylase Domain
  9. Excision of 5-hydroxymethyluracil and 5-carboxylcytosine by the thymine DNA glycosylase domain: its structural basis and implications for active DNA demethylation
  10. Excision of thymine and 5-hydroxymethyluracil by the MBD4 DNA glycosylase domain: structural basis and implications for active DNA demethylation
  11. Recognition and potential mechanisms for replication and erasure of cytosine hydroxymethylation
  12. Structural Basis for Human PHF2 Jumonji Domain Interaction with Metal Ions
  13. Mechanisms of DNA Methylation, Methyl-CpG Recognition, and Demethylation in Mammals
  14. Molecular coupling of DNA methylation and histone methylation
  15. Histone H1 null vertebrate cells exhibit altered nucleosome architecture
  16. UHRF1, a modular multi-domain protein, regulates replication-coupled crosstalk between DNA methylation and histone modifications
  17. The SRA domain of UHRF1 flips 5-methylcytosine out of the DNA helix
  18. Histone H1 variant, H1R is involved in DNA damage response
  19. Rad54 is dispensable for the ALT pathway
  20. Monoclonal antibody against dnmt1 arrests the cell division of xenopus early-stage embryos