Modular design of synthetic protein mimics. Characterization of the helical conformation of a 13-residue peptide in crystals
- 8 August 1989
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 28 (16) , 6696-6701
- https://doi.org/10.1021/bi00442a024
Abstract
The incorporation of .alpha.-aminoisobutyryl (Aib) residues into peptide sequences facilitates helical folding. Aib-containing sequences have been chosen for the design of rigid helical segments in a modular approach to the construction of a synthetic protein mimic. The helical conformation of the synthetic peptide Boc-Aib-(Val-Ala-Leu-Aib)3-OMe in crystals is established by X-ray diffraction. The 13-residue apolar peptide adopts a helical form in the crystal with seven .alpha.-type hydrogen bonds in the middle and 310-type hydrogen bonds at either end. The helices stack in columns, zigzag rather than linear, by means of direct NH.cntdot..cntdot..cntdot.OC head to tail hydrogen bonds. Leucyl side chains are extended on one side of the helix and valyl side chains on the other side. Water molecules form hydrogen bonds with several backbone carbonyl oxygens that also participate in .alpha.-helix hydrogen bonds. There is no apparent distortion of the helix caused by hydration. The space group is P212121, with a = 9.964 (3) .ANG., b = 20.117 (3) .ANG., c = 39.311 (6) .ANG., Z = 4, and dx = 1.127 g/cm3 for C64H106N13O16 .cntdot. 1.33H2O. The final agreement factor R was 0.089 for 3667 data observed > 3.sigma.(F) with a resolution of 0.9 .ANG.This publication has 20 references indexed in Scilit:
- Parallel packing of alpha-helices in crystals of the zervamicin IIA analog Boc-Trp-Ile-Ala-Aib-Ile-Val-Aib-Leu-Aib-Pro-OMe.2H2O.Proceedings of the National Academy of Sciences, 1986
- Stereochemistry of α‐aminoisobutyric acid peptides in solution: Conformations of decapeptides with a central triplet of contiguous L‐amino acidsBiopolymers, 1986
- Voltage-dependent channel formation by rods of helical polypeptidesThe Journal of Membrane Biology, 1986
- Cystine peptides. The antiparallel .beta.-sheet conformation of two synthetic cyclic bis(cystine peptides)Journal of the American Chemical Society, 1985
- Crystal structure of the α‐helical undecapeptide Boc‐L‐Ala‐Aib‐Ala‐Aib‐Ala‐Glu(OBzl)‐Ala‐Aib‐Ala‐Aib‐Ala‐OMeBiopolymers, 1985
- Crystal structure of Boc‐Leu‐Aib‐Pro‐Val‐Aib‐Aib‐Glu(OBzl)‐Gln‐Phl × H2O, the C‐terminal nonapeptide of the voltage‐dependent ionophore alamethicinBiopolymers, 1985
- Design and characterization of peptides with amphiphilic β‐strand structuresJournal of Cellular Biochemistry, 1985
- Electrostatic interactions between α‐helix dipoles in crystals of an uncharged helical undecapeptideBiopolymers, 1984
- Stabilization of β-turn conformations in Pro-X sequences by disulphide bridging. Synthesis and solution conformations of five cyclic cystine peptidesTetrahedron, 1984
- A voltage-gated ion channel model inferred from the crystal structure of alamethicin at 1.5-Å resolutionNature, 1982