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  2. Sirtuin 4 - Wikipedia

    en.wikipedia.org/wiki/Sirtuin_4

    75387 Ensembl ENSG00000089163 ENSMUSG00000029524 UniProt Q9Y6E7 Q8R216 RefSeq (mRNA) NM_012240 NM_001385733 NM_001385734 NM_001385735 NM_001167691 NM_133760 RefSeq (protein) NP_036372 NP_001161163 NP_598521 Location (UCSC) Chr 12: 120.3 – 120.31 Mb Chr 5: 115.48 – 115.48 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Sirtuin 4, also known as SIRT4, is a mitochondrial protein ...

  3. Tyrosine - Wikipedia

    en.wikipedia.org/wiki/Tyrosine

    [8] Binding sites for a signalling phosphoprotein may be diverse in their chemical structure. [9] Phosphorylation of the hydroxyl group can change the activity of the target protein, or may form part of a signaling cascade via SH2 domain binding. [10] A tyrosine residue also plays an important role in photosynthesis.

  4. Amino acid - Wikipedia

    en.wikipedia.org/wiki/Amino_acid

    Structure of a typical L-alpha-amino acid in the "neutral" form. Amino acids are organic compounds that contain both amino and carboxylic acid functional groups. [1] Although over 500 amino acids exist in nature, by far the most important are the 22 α-amino acids incorporated into proteins. [2]

  5. Phenylalanine - Wikipedia

    en.wikipedia.org/wiki/Phenylalanine

    Phenylalanine (symbol Phe or F) [3] is an essential α-amino acid with the formula C 9 H 11 NO 2.It can be viewed as a benzyl group substituted for the methyl group of alanine, or a phenyl group in place of a terminal hydrogen of alanine.

  6. Serine - Wikipedia

    en.wikipedia.org/wiki/Serine

    Serine (symbol Ser or S) [3] [4] is an α-amino acid that is used in the biosynthesis of proteins. It contains an α-amino group (which is in the protonated − NH +3 form under biological conditions), a carboxyl group (which is in the deprotonated − COO −

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  8. Glucogenic amino acid - Wikipedia

    en.wikipedia.org/wiki/Glucogenic_amino_acid

    Glucogenic amino acids can be converted into intermediates that feed the gluconeogenesis metabolic pathway, which produces glucose. When necessary, these amino acids can be used to generate glucose. As previously stated, because they can be transformed into glucose via a variety of metabolic pathways, the majority of amino acids (apart from ...

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