Enhanced prediction accuracy of protein secondary structure using hydrogen exchange Fourier transform infrared spectroscopy

被引:39
作者
Baello, BI [1 ]
Pancoska, P [1 ]
Keiderling, TA [1 ]
机构
[1] Univ Illinois, Dept Chem, Chicago, IL 60607 USA
关键词
D O I
10.1006/abio.2000.4483
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
A novel equilibrium hydrogen exchange Fourier transform IR (HX-FTIR) spectroscopy method for predicting secondary structure content was employed using spectra obtained for a training set of 23 globular proteins. The IR bandshape and frequency changes resulting from controlled levels of H-D exchange were observed to be protein-dependent. Their analysis revealed these variations to be partly correlated to secondary structure. For each protein, a set of 6 spectra was measured with a systematic variation of the solvent H-D ratio and was subjected to factor analysis. The most significant component spectra for each protein, representing independent aspects of the spectral response to deuteration, were each subjected to a second factor analysis over the entire training set. Restricted multiple regression (RMR) analysis using the loadings of the principal components from 19 of these H-D analyses revealed an improvement in prediction accuracy compared with conventional bandshape-based analyses of FTIR data. Nearly a factor of 2 reduction in error for prediction of helix fractions was found using s(1), the average spectral response for the H-D set. In some cases, significant error reduction for prediction of minor components was found using higher factors. Using the same analytical methods, prediction errors with this new deuteration-response-FTIR method were shown to be even better than those obtained by use of electronic circular dichroism (ECD) data for helix predictions and to be significantly lower for ECD-based sheet prediction, making these the best secondary structure predictions obtained with the RMR method. Tests of a limited variable selection scheme showed further improvements, consistent with previous results of this approach using ECD data. (C) 2000 Academic Press.
引用
收藏
页码:46 / 57
页数:12
相关论文
共 81 条
[61]   Secondary structure determination of proteins in aqueous solution by infrared spectroscopy: A comparison of multivariate data analysis methods [J].
Rahmelow, K ;
Hubner, W .
ANALYTICAL BIOCHEMISTRY, 1996, 241 (01) :5-13
[62]   Applications of mass spectrometry to signal transduction [J].
Resing, KA ;
Ahn, NG .
PROGRESS IN BIOPHYSICS & MOLECULAR BIOLOGY, 1999, 71 (3-4) :501-523
[63]  
RODER H, 1989, METHOD ENZYMOL, V176, P446
[64]   STRUCTURAL CHARACTERIZATION OF FOLDING INTERMEDIATES IN CYTOCHROME-C BY H-EXCHANGE LABELING AND PROTON NMR [J].
RODER, H ;
ELOVE, GA ;
ENGLANDER, SW .
NATURE, 1988, 335 (6192) :700-704
[65]   WATCHING PROTEIN-FOLDING UNFOLD [J].
RODER, H .
NATURE STRUCTURAL BIOLOGY, 1995, 2 (10) :817-820
[66]   A holistic approach to protein secondary structure characterization using amide I band Raman spectroscopy [J].
Sane, SU ;
Cramer, SM ;
Przybycien, TM .
ANALYTICAL BIOCHEMISTRY, 1999, 269 (02) :255-272
[67]   PROTEIN SECONDARY STRUCTURE FROM FOURIER-TRANSFORM INFRARED-SPECTROSCOPY - A DATA-BASE ANALYSIS [J].
SARVER, RW ;
KRUEGER, WC .
ANALYTICAL BIOCHEMISTRY, 1991, 194 (01) :89-100
[68]   AN INFRARED AND CIRCULAR-DICHROISM COMBINED APPROACH TO THE ANALYSIS OF PROTEIN SECONDARY STRUCTURE [J].
SARVER, RW ;
KRUEGER, WC .
ANALYTICAL BIOCHEMISTRY, 1991, 199 (01) :61-67
[69]   AMIDE HYDROGEN-EXCHANGE AND MASS-SPECTROMETRY - A PROBE OF HIGH-ORDER STRUCTURE IN PROTEINS [J].
SMITH, DL ;
ZHANG, ZQ ;
LIU, YQ .
PURE AND APPLIED CHEMISTRY, 1994, 66 (01) :89-94
[70]  
Smith DL, 1998, BIOCHEMISTRY-MOSCOW+, V63, P285