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A Holistic Approach for Protein Secondary Structure Estimation from Infrared Spectra in H2O Solutions

✍ Scribed by Ganesh Vedantham; H.Gerald Sparks; Samir U. Sane; Stelios Tzannis; Todd M. Przybycien


Publisher
Elsevier Science
Year
2000
Tongue
English
Weight
207 KB
Volume
285
Category
Article
ISSN
0003-2697

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✦ Synopsis


We present an improved technique for estimating protein secondary structure content from amide I and amide III band infrared spectra. This technique combines the superposition of reference spectra of pure secondary structure elements with simultaneous aromatic side chain, water vapor, and solvent background subtraction. Previous attempts to generate structural reference spectra from a basis set of reference protein spectra have had limited success because of inaccuracies arising from sequential background subtractions and spectral normalization, arbitrary spectral band truncation, and attempted resolution of spectroscopically degenerate structure classes. We eliminated these inaccuracies by defining a single mathematical function for protein spectra, permitting all subtractions, normalizations, and amide band deconvolution steps to be performed simultaneously using a single optimization algorithm. This approach circumvents many of the problems associated with the sequential nature of previous methods, especially with regard to removing the subjectivity involved in each processing step. A key element of this technique was the calculation of reference spectra for ordered helix, unordered helix, sheet, turns, and unordered structures from a basis set of spectra of well-characterized proteins. Structural reference spectra were generated in the amide I and amide III bands, both of which have been shown to be sensitive to protein secondary structure content. We accurately account for overlaps between amide and nonamide regions and al-low different structure types to have different extinction coefficients. The agreement between our structure estimates, for proteins both inside and outside the basis set, and the corresponding determinations from X-ray crystallography is good.


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Quantitative IR spectrophotometry of pep
✍ N. N. Kalnin; I. A. Baikalov; S. Yu. Venyaminov πŸ“‚ Article πŸ“… 1990 πŸ› Wiley (John Wiley & Sons) 🌐 English βš– 564 KB

Infrared spectra of 13 globular proteins have been obtained in the 1800-1480-cm-' region for H 2 0 solutions. A method for estimating protein secondary structure from the ir spectrum has been developed. The method can also be used for estimating polypeptide and fibrous protein conformation. For the