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1AL1

CRYSTAL STRUCTURE OF ALPHA1: IMPLICATIONS FOR PROTEIN DESIGN

Summary for 1AL1
Entry DOI10.2210/pdb1al1/pdb
DescriptorALPHA HELIX PEPTIDE: ELLKKLLEELKG, SULFATE ION (2 entities in total)
Functional Keywordssynthetic protein model
Total number of polymer chains1
Total formula weight1537.84
Authors
Hill, C.P.,Anderson, D.H.,Wesson, L.,Degrado, W.F.,Eisenberg, D. (deposition date: 1990-07-02, release date: 1991-10-15, Last modification date: 2024-11-13)
Primary citationHill, C.P.,Anderson, D.H.,Wesson, L.,DeGrado, W.F.,Eisenberg, D.
Crystal structure of alpha 1: implications for protein design.
Science, 249:543-546, 1990
Cited by
PubMed Abstract: X-ray diffraction shows the structure of a synthetic protein model, formed from noncovalent self-association of a 12-residue peptide and of sulfate ions at low pH. This peptide is a fragment of a 16-residue polypeptide that was designed to form an amphiphilic alpha helix with a ridge of Leu residues along one helical face. By interdigitation of the leucines of four such helices, the design called for self-association into a four-alpha-helical bundle. The crystal structure (2.7 angstrom resolution; R factor = 0.215) reveals a structure more complex than the design, with both a tetramer and a hexamer. The alpha-helical tetramer with leucine interior has more oblique crossing angles than most four-alpha-helical bundles; the hexamer has a globular hydrophobic core of 12 leucine residues and three associated sulfate ions. Computational analysis suggests that the hexameric association is tighter than the tetrameric one. The consistency of the structure with the design is discussed, as well as the divergence.
PubMed: 2382133
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2.7 Å)
Structure validation

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