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  2. Thymine - Wikipedia

    en.wikipedia.org/wiki/Thymine

    As its alternate name (5-methyluracil) suggests, thymine may be derived by methylation of uracil at the 5th carbon. In RNA, thymine is replaced with uracil in most cases. In DNA, thymine (T) binds to adenine (A) via two hydrogen bonds, thereby stabilizing the nucleic acid structures. Thymine combined with deoxyribose creates the nucleoside ...

  3. DNA methylation - Wikipedia

    en.wikipedia.org/wiki/DNA_methylation

    Methylation of cytosine to form 5-methylcytosine occurs at the same 5 position on the pyrimidine ring where the DNA base thymine's methyl group is located; the same position distinguishes thymine from the analogous RNA base uracil, which has no methyl group. Spontaneous deamination of 5-methylcytosine converts it to thymine. This results in a T ...

  4. Nucleotide base - Wikipedia

    en.wikipedia.org/wiki/Nucleotide_base

    The purine nitrogenous bases are characterized by their single amino group (−NH 2), at the C6 carbon in adenine and C2 in guanine. [5] Similarly, the simple-ring structure of cytosine, uracil, and thymine is derived of pyrimidine, so those three bases are called the pyrimidine bases. [6]

  5. Bisulfite sequencing - Wikipedia

    en.wikipedia.org/wiki/Bisulfite_sequencing

    In oxidative bisulfite sequencing (oxBS), Tet is used to convert 5-hydroxymethylcytosine to 5-formylcytosine, which subsequently converts to uracil during bisulfite treatment. [35] The only base that then reads as a C is 5‑methylcytosine, giving a map of the true methylation status in the DNA sample.

  6. Ribonucleotide - Wikipedia

    en.wikipedia.org/wiki/Ribonucleotide

    However, DNA and RNA differ in the second major pyrimidine. DNA contains thymine (T) while RNA contains uracil (U). There are some rare cases where thymine does occur in RNA and uracil in DNA. [1] Here are the 4 major ribonucleotides (ribonucleoside 5'-monophosphate) which are the structural units of RNAs.

  7. Uracil - Wikipedia

    en.wikipedia.org/wiki/Uracil

    The first reaction is the simplest of the syntheses, by adding water to cytosine to produce uracil and ammonia: [2] C 4 H 5 N 3 O + H 2 O → C 4 H 4 N 2 O 2 + NH 3. The most common way to synthesize uracil is by the condensation of malic acid with urea in fuming sulfuric acid: [5] C 4 H 4 O 4 + NH 2 CONH 2 → C 4 H 4 N 2 O 2 + 2 H 2 O + CO

  8. Deamination - Wikipedia

    en.wikipedia.org/wiki/Deamination

    Spontaneous deamination of 5-methylcytosine results in thymine and ammonia. This is the most common single nucleotide mutation. In DNA, this reaction, if detected prior to passage of the replication fork, can be corrected by the enzyme thymine-DNA glycosylase, which removes the thymine base in a G/T mismatch. This leaves an abasic site that is ...

  9. Whole genome bisulfite sequencing - Wikipedia

    en.wikipedia.org/wiki/Whole_genome_bisulfite...

    Figure 1: Application of bisulfite treatment in whole genome bisulfite sequencing to convert unmethylated cytosine, not 5-methylcytosine, to uracil. During amplification by polymerase chain reaction, uracil is converted to thymine. [1]