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  2. Peptide bond - Wikipedia

    en.wikipedia.org/wiki/Peptide_bond

    Peptide bond formation via dehydration reaction. When two amino acids form a dipeptide through a peptide bond, [1] it is a type of condensation reaction. [2] In this kind of condensation, two amino acids approach each other, with the non-side chain (C1) carboxylic acid moiety of one coming near the non-side chain (N2) amino moiety of the other.

  3. N-terminus - Wikipedia

    en.wikipedia.org/wiki/N-terminus

    Amino acids link to one another by peptide bonds which form through a dehydration reaction that joins the carboxyl group of one amino acid to the amine group of the next in a head-to-tail manner to form a polypeptide chain. The chain has two ends – an amine group, the N-terminus, and an unbound carboxyl group, the C-terminus. [2]

  4. Condensation reaction - Wikipedia

    en.wikipedia.org/wiki/Condensation_reaction

    This class of reactions is a vital part of life as it is essential to the formation of peptide bonds between amino acids and to the biosynthesis of fatty acids. [4] Idealized scheme showing condensation of two amino acids to give a peptide bond. Many variations of condensation reactions exist.

  5. Amino acid activation - Wikipedia

    en.wikipedia.org/wiki/Amino_acid_activation

    Peptide bond formation is an endergonic, thermodynamically unfavorable process, so amino acids must be activated by covalent linkage to tRNA molecules. The energy stored within the aminoacyl-tRNA bond is used to drive peptide bond formation. Activation thus enhances the reactivity of the amino acid and drives peptide bond synthesis.

  6. Protein metabolism - Wikipedia

    en.wikipedia.org/wiki/Protein_metabolism

    A peptide bond forms between the amino acid attached to the tRNA in the P site and the amino acid attached to a tRNA in the A site. The formation of a peptide bond requires an input of energy. The two reacting molecules are the alpha amino group of one amino acid and the alpha carboxyl group of the other amino acids.

  7. Protein primary structure - Wikipedia

    en.wikipedia.org/wiki/Protein_primary_structure

    However, additional molecular interactions may render the amide form less stable; the amino group is expelled instead, resulting in an ester (Ser/Thr) or thioester (Cys) bond in place of the peptide bond. This chemical reaction is called an N-O acyl shift. The ester/thioester bond can be resolved in several ways:

  8. Peptide synthesis - Wikipedia

    en.wikipedia.org/wiki/Peptide_synthesis

    A new development for producing longer peptide chains is chemical ligation: unprotected peptide chains react chemoselectively in aqueous solution. A first kinetically controlled product rearranges to form the amide bond. The most common form of native chemical ligation uses a peptide thioester that reacts with a terminal cysteine residue. [58]

  9. Peptide - Wikipedia

    en.wikipedia.org/wiki/Peptide

    Drosomycin, an example of a peptide. Peptides are short chains of amino acids linked by peptide bonds. [1] [2] A polypeptide is a longer, continuous, unbranched peptide chain. [3] Polypeptides that have a molecular mass of 10,000 Da or more are called proteins. [4]