Abstract
The influence of a membrane environment on the conformational energetics of a polypeptide chain has been investigated through studies of model peptides in a variety of membrane-mimetic media. Nuclear magnetic resonance (NMR) and circular dichroism (CD) data have been obtained for the peptides in bulk hydrophobic solvents, normal micelles, and reversed micelles. Several hydrophobic peptides which are sparingly soluble in water have been solubilized in aqueous sodium dodecyl sulfate (SDS) solution. NMR and CD data indicate that the micelle-solubilized peptides experience an environment with the conformational impact of bulk methanol, and have decreased conformational freedom. The site of residence of the peptides interacting with the micelles appears to be near the surfactant head groups, in a region permeated by water, and not in the micelle core. Strongly hydrophilic peptides have been solubilized in nonpolar solvents by reversed micelles. These peptides are located in small water pools in close association with the head groups of the surfactant. NMR and CD data show that there is a conformational impact of this interfacial water region on peptide solubilizates distinct from that of bulk water.
MeSH Terms
Circular Dichroism
Colloids
In Vitro Techniques
Magnetic Resonance Spectroscopy
Membrane Fluidity
Membranes/drug effects,ultrastructure
Membranes, Artificial
Micelles
Models, Biological
Oligopeptides
Phosphatidylcholines/pharmacology
Phospholipids/pharmacology
Protein Conformation
Sodium Dodecyl Sulfate/pharmacology
Chemicals
Colloids
Membranes, Artificial
Micelles
Oligopeptides
Phosphatidylcholines
Phospholipids
Sodium Dodecyl Sulfate
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Gierasch L M
Lacy J E
Thompson K F
Rockwell A L
Watnick P I
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