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PMID: 15836243 Published · ppublish English Journal Article

Second-harmonic generation optical activity of a polypeptide alpha-helix at the air/water interface.

The Journal of chemical physics ·Vol. 122 ·No. 11 ·2005-03-15 ·Pages 114707

Mitchell SA, McAloney RA, Moffatt D, Mora-Diez N, Zgierski MZ

Abstract

Quantitative measurements of second-harmonic generation optical activity (SHG-OA) have been performed for alpha-helical polypeptides poly-(gamma-benzyl-L-glutamate) and poly-(gamma-ethyl-L-glutamate) adsorbed at the airwater interface, with the fundamental frequency variant Planck's over 2piomega = 2.96 eV (lambda = 417 nm). The chiral component of the nonlinear susceptibility chi(XYZ) ((2)) is small for both polymers, being comparable in magnitude with the susceptibility chi(XXZ) ((2)) of the clean airwater interface. The microscopic origin of the nonlinear response has been investigated by using semiempirical ZINDOS calculations in conjunction with standard time-dependent perturbation theory to evaluate the molecular hyperpolarizability tensor of a model alpha-helix composed of glycine residues. Calculated nonlinear susceptibilities (per monomer unit) are in good agreement with experimental measurements for both the chiral and achiral response. The computational results indicate that charge transfer transitions of the alpha-helix have a large influence on the achiral components of the hyperpolarizability tensor, and produce characteristic features in the response under suitable experimental conditions. The dominant origin of SHG-OA for the model alpha-helix is a structural effect due to the tilt of the plane of each amide group of the helix relative to the helical axis. SHG-OA is associated with the orientational distribution of isolated, achiral chromophores, and is present in the absence of electronic coupling between the amide subunits of the polypeptide alpha-helix.

MeSH Terms
Air Computer Simulation Isomerism Models, Chemical Models, Molecular Optics and Photonics Peptides/chemistry Protein Conformation Surface Properties Water/chemistry
Chemicals
Peptides Water
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Mitchell S A
Steacie Institute for Molecular Sciences, National Research Council of Canada, Ottawa, Ontario.
McAloney R A
Moffatt D
Mora-Diez N
Zgierski M Z
Article Info
Journal
The Journal of chemical physics
Abbr.
J Chem Phys
ISSN
0021-9606
Published
2005-03-15
Pages
114707
Language
English
Region
United States
NLM ID
0375360
Subset
IM
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