DIFFER
DIFFER Publication

Chirality-Induced Conformational Preferences in Peptide-Metal Ion Binding Revealed by IR Spectroscopy

Label Value
Author
Abstract

Chirality reversal of a residue in a peptide can change its mode of binding to a metal ion, as shown here experimentally by gas-phase IR spectroscopy of peptide metal ion complexes. The binding conformations of Li+, Na+, and H+ with the LL and DL stereoisomers of PhePhe were compared through IR ion spectroscopy using the FELIX free-electron laser. For the DL isomer, both Li+ and Na+ exclusively coordinate to the amide O atom, the carboxyl O atom, and one of the aromatic rings (the OOR conformation), while for the LL isomer, a mixture of the OOR and NOR conformations was found. The stereochemically induced change in conformation is shown to reflect the strength of an NH center dot center dot center dot pi interaction remote from the metal ion site. Protonated PhePhe shows no stereochemically induced variation in binding geometry.

Year of Publication
2011
Journal
Journal of the American Chemical Society
Volume
133
Number
5
Number of Pages
1212-1215
Date Published
Feb
Type of Article
Article
ISBN Number
0002-7863
Accession Number
ISI:000287228500020
URL
PId
accb8f23d8b98b9e19c96bec411fdc09
Alternate Journal
J. Am. Chem. Soc.
Journal Article
Download citation