» Articles » PMID: 18198861

Charge-transfer Transitions in the Vacuum-ultraviolet of Protein Circular Dichroism Spectra

Overview
Journal J Phys Chem B
Specialty Chemistry
Date 2008 Jan 18
PMID 18198861
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

Circular dichroism (CD) is widely used in the structural characterization and secondary structure determination of proteins. The vacuum UV region (below 190 nm), where charge-transfer transitions have an influence on the CD spectra, can be accessed using synchrotron radiation circular dichroism (SRCD) spectroscopy. Recently, charge-transfer transitions in a conformationally diverse set of dipeptides have been characterized ab initio using complete active space self-consistent field calculations, and the relevant charge distributions have been parametrized for use in the matrix method for calculations of protein CD. Here, we present calculations of the vacuum UV CD spectra of 71 proteins, for which experimental SRCD spectra and X-ray crystal structures are available. The theoretical spectra are calculated considering charge-transfer and side chain transitions. This significantly improves the agreement with experiment, raising the Spearman correlation coefficient between the calculated and the experimental intensity at 175 nm from 0.12 to 0.79. The influence of the conformation on charge-transfer transitions is analyzed in detail, showing that the n --> pi* charge-transfer transitions are most important in alpha-helical proteins, whereas in beta strand proteins the pi --> pi* charge-transfer transition along the chain in the amino- to carboxy-end direction is most dominant.

Citing Articles

A comprehensive investigation of the interactions of human serum albumin with polymeric and hybrid nanoparticles.

Ural M, Joseph J, Wien F, Li X, Tran M, Taverna M Drug Deliv Transl Res. 2024; 14(8):2188-2202.

PMID: 38578378 DOI: 10.1007/s13346-024-01578-x.


Time resolved transient circular dichroism spectroscopy using synchrotron natural polarization.

Auvray F, Dennetiere D, Giuliani A, Jamme F, Wien F, Nay B Struct Dyn. 2019; 6(5):054307.

PMID: 31700943 PMC: 6823104. DOI: 10.1063/1.5120346.


Introducing DInaMo: A Package for Calculating Protein Circular Dichroism Using Classical Electromagnetic Theory.

Uporov I, Forlemu N, Nori R, Aleksandrov T, Sango B, Mbote Y Int J Mol Sci. 2015; 16(9):21237-76.

PMID: 26370961 PMC: 4613251. DOI: 10.3390/ijms160921237.


Accurate secondary structure prediction and fold recognition for circular dichroism spectroscopy.

Micsonai A, Wien F, Kernya L, Lee Y, Goto Y, Refregiers M Proc Natl Acad Sci U S A. 2015; 112(24):E3095-103.

PMID: 26038575 PMC: 4475991. DOI: 10.1073/pnas.1500851112.


Dissecting two-dimensional ultraviolet spectra of amyloid fibrils into beta-strand and turn contributions.

Rodriguez J, Mukamel S J Phys Chem B. 2012; 116(30):8830-5.

PMID: 22738387 PMC: 3454482. DOI: 10.1021/jp303956w.