Capping rules, which govern interactions of helical peptides with hydrophobic surfaces, were never established before due to lack of methods for the direct measurement of polypeptide structure on the interphase boundary. We employed proteomic techniques and peptide retention modeling in reversed-phase chromatography to generate a data set sufficient for amino acid population analysis at helix ends. We found that interactions of amphipathic helical peptides with a hydrophobic C18 phase are induced by a unique motif featuring hydrophobic residues in the N1 and N2 positions adjacent to the N-cap (Asn, Asp, Ser, Thr, Gly), followed by Glu, Gln, or Asp in position N3 to complete a capping box. A favorable N-capping arrangement prior to amphipath...
we have discovered an acylated heptapeptide amide comprising six Ca-tetrasubstituted amino acids and...
At physiological conditions, most proteins or peptides can fold into relatively stable structures th...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
Amphipathic α-helices play a crucial role in mediating the interaction of peptides and proteins...
High amphiphilicity is a hallmark of interfacial helices in membrane proteins and membrane-active pe...
We investigated the interaction of six 18-residue peptides derived from amphipathic helical segments...
We tested the hypothesis that the recurrence of hydrophobic amino acids in a polypeptide at position...
We explore how two nonionic polar groups (primary amine and primary amide) influence hydrophobic int...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
Hydrophobic residues provide much of the thermodynamic driving force for the folding, self-assembly,...
Helix formation in folding proteins is stabilized by binding of recurrent hydrophobic side chains in...
[[abstract]]A significant fraction of the amino acids in proteins are alpha helical in conformation....
Most protein-protein interactions occur inside cells. Peptides can inhibit protein-protein interacti...
Hydrophobic interactions are highly selective, and differences in surface hydrophobicities between p...
we have discovered an acylated heptapeptide amide comprising six Ca-tetrasubstituted amino acids and...
At physiological conditions, most proteins or peptides can fold into relatively stable structures th...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
Amphipathic α-helices play a crucial role in mediating the interaction of peptides and proteins...
High amphiphilicity is a hallmark of interfacial helices in membrane proteins and membrane-active pe...
We investigated the interaction of six 18-residue peptides derived from amphipathic helical segments...
We tested the hypothesis that the recurrence of hydrophobic amino acids in a polypeptide at position...
We explore how two nonionic polar groups (primary amine and primary amide) influence hydrophobic int...
Hydrophobicity – fear of water – drives the folding of soluble proteins into their final folded stat...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
Hydrophobic residues provide much of the thermodynamic driving force for the folding, self-assembly,...
Helix formation in folding proteins is stabilized by binding of recurrent hydrophobic side chains in...
[[abstract]]A significant fraction of the amino acids in proteins are alpha helical in conformation....
Most protein-protein interactions occur inside cells. Peptides can inhibit protein-protein interacti...
Hydrophobic interactions are highly selective, and differences in surface hydrophobicities between p...
we have discovered an acylated heptapeptide amide comprising six Ca-tetrasubstituted amino acids and...
At physiological conditions, most proteins or peptides can fold into relatively stable structures th...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...