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  2. DNA and RNA codon tables - Wikipedia

    en.wikipedia.org/wiki/DNA_and_RNA_codon_tables

    A codon table can be used to translate a genetic code into a sequence of amino acids. [1] [2] The standard genetic code is traditionally represented as an RNA codon table, because when proteins are made in a cell by ribosomes, it is messenger RNA (mRNA) that directs protein synthesis. [2] [3] The mRNA sequence is determined by the sequence of ...

  3. Methionine - Wikipedia

    en.wikipedia.org/wiki/Methionine

    Methionine (symbol Met or M) [3] (/ m ɪ ˈ θ aɪ ə n iː n /) [4] is an essential amino acid in humans.. As the precursor of other non-essential amino acids such as cysteine and taurine, versatile compounds such as SAM-e, and the important antioxidant glutathione, methionine plays a critical role in the metabolism and health of many species, including humans.

  4. Amino acid replacement - Wikipedia

    en.wikipedia.org/wiki/Amino_acid_replacement

    Example of calculating stability index [9] for Methionine coded by AUG based on Grantham's physicochemical distance Alternative codons Alternative amino acids Probabilities Grantham's distances [4] Average distance AUU, AUC, AUA Isoleucine 1/3 10 3.33 ACG Threonine 1/9 81 9.00 AAG Lysine 1/9 95 10.56 AGG Arginine 1/9 91 10.11 UUG, CUG Leucine 2 ...

  5. Remethylation - Wikipedia

    en.wikipedia.org/wiki/Remethylation

    Homocysteine (left) and methionine (right) are related by demethylation and remethylation. Remethylation is a major step in the conversion of homocysteine to the essential amino acid methionine . The remethylation process involves the enzyme methionine synthase (MS), which requires vitamin B 12 as a cofactor, and also depends indirectly on ...

  6. Homocysteine - Wikipedia

    en.wikipedia.org/wiki/Homocysteine

    In the body, homocysteine can be recycled into methionine or converted into cysteine with the aid of vitamin B 6, B 9, and B 12. [ 3 ] High levels of homocysteine in the blood ( hyperhomocysteinemia ) is regarded as a marker of cardiovascular disease, likely working through atherogenesis , which can result in ischemic injury .

  7. Transsulfuration pathway - Wikipedia

    en.wikipedia.org/wiki/Transsulfuration_pathway

    The production of homocysteine through transsulfuration allows the conversion of this intermediate to methionine, through a methylation reaction carried out by methionine synthase. The reverse pathway is present in several organisms, including humans, and involves the transfer of the thiol group from homocysteine to cysteine via a similar ...

  8. S-Adenosyl methionine - Wikipedia

    en.wikipedia.org/wiki/S-Adenosyl_methionine

    S-Adenosyl methionine (SAM), also known under the commercial names of SAMe, SAM-e, or AdoMet, is a common cosubstrate involved in methyl group transfers, transsulfuration, and aminopropylation. Although these anabolic reactions occur throughout the body, most SAM is produced and consumed in the liver. [ 1 ]

  9. Amino acid synthesis - Wikipedia

    en.wikipedia.org/wiki/Amino_acid_synthesis

    The methionine gene product MetR and the methionine intermediate homocysteine are known to positively regulate glyA. Homocysteine is a coactivator of glyA and must act in concert with MetR. [ 15 ] [ 16 ] On the other hand, PurR, a protein which plays a role in purine synthesis and S-adeno-sylmethionine are known to down regulate glyA .