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  2. Amino acid - Wikipedia

    en.wikipedia.org/wiki/Amino_acid

    Many proteinogenic and non-proteinogenic amino acids have biological functions beyond being precursors to proteins and peptides. In humans, amino acids also have important roles in diverse biosynthetic pathways. Defenses against herbivores in plants sometimes employ amino acids. [89] Examples:

  3. Hydrophobicity scales - Wikipedia

    en.wikipedia.org/wiki/Hydrophobicity_scales

    When consecutively measuring amino acids of a protein, changes in value indicate attraction of specific protein regions towards the hydrophobic region inside lipid bilayer. The hydrophobic or hydrophilic character of a compound or amino acid is its hydropathic character, [ 1 ] hydropathicity, or hydropathy.

  4. Transmembrane protein - Wikipedia

    en.wikipedia.org/wiki/Transmembrane_protein

    For example, the "unfolded" bacteriorhodopsin in SDS micelles has four transmembrane α-helices folded, while the rest of the protein is situated at the micelle-water interface and can adopt different types of non-native amphiphilic structures. Free energy differences between such detergent-denatured and native states are similar to stabilities ...

  5. Transmembrane domain - Wikipedia

    en.wikipedia.org/wiki/Transmembrane_domain

    A transmembrane domain (TMD, TM domain) is a membrane-spanning protein domain.TMDs may consist of one or several alpha-helices or a transmembrane beta barrel.Because the interior of the lipid bilayer is hydrophobic, the amino acid residues in TMDs are often hydrophobic, although proteins such as membrane pumps and ion channels can contain polar residues.

  6. Integral membrane protein - Wikipedia

    en.wikipedia.org/wiki/Integral_membrane_protein

    The part of the protein that is embedded in the hydrophobic regions of the bilayer are alpha helical and composed of predominantly hydrophobic amino acids. The C terminal end of the protein is in the cytosol while the N terminal region is in the outside of the cell.

  7. Active site - Wikipedia

    en.wikipedia.org/wiki/Active_site

    Amino acids that can form nucleophile including serine, cysteine, aspartate and glutamine. [citation needed] Electrophilic catalysis: The mechanism behind this process is exactly same as nucleophilic catalysis except that now amino acids in active site act as electrophile while substrates are nucleophiles. This reaction usually requires ...

  8. Beta barrel - Wikipedia

    en.wikipedia.org/wiki/Beta_barrel

    In many cases, the strands contain alternating polar and non-polar (hydrophilic and hydrophobic) amino acids, so that the hydrophobic residues are oriented into the interior of the barrel to form a hydrophobic core and the polar residues are oriented toward the outside of the barrel on the solvent-exposed surface.

  9. Hydrophilicity plot - Wikipedia

    en.wikipedia.org/wiki/Hydrophilicity_plot

    A hydrophilicity plot is a quantitative analysis of the degree of hydrophobicity or hydrophilicity of amino acids of a protein. It is used to characterize or identify possible structure or domains of a protein. The plot has amino acid sequence of a protein on its x-axis, and degree of hydrophobicity and hydrophilicity on its y-axis.