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  2. Helix bundle - Wikipedia

    en.wikipedia.org/wiki/Helix_bundle

    Three-helix bundles are among the smallest and fastest known cooperatively folding structural domains. [1] The three-helix bundle in the villin headpiece domain is only 36 amino acids long and is a common subject of study in molecular dynamics simulations because its microsecond-scale folding time is within the timescales accessible to simulation.

  3. Alpha helix - Wikipedia

    en.wikipedia.org/wiki/Alpha_helix

    The pitch of the alpha-helix (the vertical distance between consecutive turns of the helix) is 5.4 Å (0.54 nm), which is the product of 1.5 and 3.6. The most important thing is that the N-H group of one amino acid forms a hydrogen bond with the C=O group of the amino acid four residues earlier; this repeated i + 4 → i hydrogen bonding is the ...

  4. Rossmann fold - Wikipedia

    en.wikipedia.org/wiki/Rossmann_fold

    The Rossmann fold is a tertiary fold found in proteins that bind nucleotides, such as enzyme cofactors FAD, NAD +, and NADP +.This fold is composed of alternating beta strands and alpha helical segments where the beta strands are hydrogen bonded to each other forming an extended beta sheet and the alpha helices surround both faces of the sheet to produce a three-layered sandwich.

  5. Protein secondary structure - Wikipedia

    en.wikipedia.org/wiki/Protein_secondary_structure

    Other extended structures such as the polyproline helix and alpha sheet are rare in native state proteins but are often hypothesized as important protein folding intermediates. Tight turns and loose, flexible loops link the more "regular" secondary structure elements.

  6. Helical wheel - Wikipedia

    en.wikipedia.org/wiki/Helical_wheel

    An example of an amino acid sequence plotted on a helical wheel. Aliphatic residues are shown as blue squares, polar or negatively charged residues as red diamonds, and positively charged residues as black octagons. A helical wheel is a type of plot or visual representation used to illustrate the properties of alpha helices in proteins.

  7. Supersecondary structure - Wikipedia

    en.wikipedia.org/wiki/Supersecondary_structure

    Two Rossmann folds in Cryptosporidium parvum lactate dehydrogenase, with NAD+ bound. A beta-alpha-beta motif is composed of two beta strands joined by an alpha helix through connecting loops. The beta strands are parallel, and the helix is also almost parallel to the strands. This structure can be seen in almost all proteins with parallel strands.

  8. Structural motif - Wikipedia

    en.wikipedia.org/wiki/Structural_motif

    The structure is also known as a hairpin or hairpin loop. It occurs when two regions of the same strand, usually complementary in nucleotide sequence when read in opposite directions, base-pair to form a double helix that ends in an unpaired loop. The resulting structure is a key building block of many RNA secondary structures. Cruciform DNA

  9. Protein superfamily - Wikipedia

    en.wikipedia.org/wiki/Protein_superfamily

    Members share an 8-alpha helix globular globin fold. [28] [29] Immunoglobulin superfamily Members share a sandwich-like structure of two sheets of antiparallel β strands , and are involved in recognition, binding, and adhesion. [30] [31] PA clan