Cystine peptides.
Author:
Publisher
Wiley
Subject
Biochemistry
Link
http://onlinelibrary.wiley.com/wol1/doi/10.1111/j.1399-3011.1987.tb03355.x/fullpdf
Reference23 articles.
1. Conformational analysis of small disulfide loops. Spectroscopic and theoretical studies on a synthetic cyclic tetrapeptide containing cystine
2. Stabilization of β-turn conformations in Pro-X sequences by disulphide bridging. Synthesis and solution conformations of five cyclic cystine peptides
3. Nuclear Overhauser effects and circular dichroism as probes of .beta.-turn conformations in acyclic and cyclic peptides with pro-X sequences
4. Cyclic peptide disulfides. Solution and solid-state conformation of Boc-Cys-Pro-Aib-Cys-NHMe with a disulfide bridge from Cys to Cys, a disulfide-bridged peptide helix
5. The interrelationship of growth substances and stomatal characters inGossypium hirsutum var H-777
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1. Characterization of (Boc‐Cys/Sec‐NHMe) 2 and (Boc‐Cys/Sec‐OMe) 2 : Evidence of local conformational difference between disulfide and diselenide;Journal of Peptide Science;2020-04
2. Synthesis and acid ionization constants of cyclic cystine peptides;International Journal of Peptide and Protein Research;2009-01-12
3. Theoretical Conformational Analysis of Disulfide-Linked Tetrapeptides Ac-Cys-Pro-Xaa-Cys-NHMe Having Hydrophobic Xaa Amino-Acid Residues;Polymer Journal;1998-03
4. Conformation Control of Peptides by Metal Ions. Coordination Conformation Correlation Observed in a Model for Cys-X-Y-Cys/M2+ in Proteins;Inorganic Chemistry;1997-10-01
5. Conformation Control of Model Peptides by Metal Ions. A New Type of Turn Structure Found in [(Boc–Cys–Pro–Leu–Cys–Gly–Ala)Hg];Bulletin of the Chemical Society of Japan;1996-08
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