A METHOD FOR THE CALCULATION OF PROTEIN ALPHA-CH CHEMICAL-SHIFTS

被引:80
作者
WILLIAMSON, MP [1 ]
ASAKURA, T [1 ]
NAKAMURA, E [1 ]
DEMURA, M [1 ]
机构
[1] TOKYO UNIV AGR & TECHNOL,DEPT BIOTECHNOL,KOGANEI,TOKYO 184,JAPAN
关键词
PROTEIN; NMR; CHEMICAL SHIFT;
D O I
10.1007/BF02192802
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The chemical shifts of C(alpha)H protons have been calculated for 9 proteins, based on coordinates taken from high-resolution crystal structures. Chemical shifts were calculated using ring-current shifts, shifts arising from magnetic anisotropies of bonds. and shifts arising from the polarizing effect of polar atoms on the C(alpha)-H bond. The parameters used were refined iteratively to give the best fit to (experimental - random coil) shifts over the set of 9 proteins. A further small correction was made to the averaged Gly C(alpha)H shift. The calculated shifts match observed shifts with correlation coefficients varying between 0.45 and 0.86, with a standard deviation of about 0.3 ppm. The differences between calculated and observed shifts have been studied in detail, including an analysis of different crystal structures of the same protein, and indicate that most of the differences can be accounted for by small differences between the structure in solution and in the crystal. Calculations using NMR-derived structures give a poor fit. The calculations reproduce the experimentally observed differences between chemical shifts for C(alpha)H in alpha-helix and beta-sheet. Most of thy differentiation in secondary-structure-dependent shifts arises from electric field effects, although magnetic anisotropy also makes a large contribution to the net shift. Applications of the calculations to assignment (including stereospecific assignment) and structure determination are discussed.
引用
收藏
页码:83 / 98
页数:16
相关论文
共 29 条
[21]   COMPARISONS OF RING-CURRENT SHIFTS CALCULATED FROM THE CRYSTAL-STRUCTURE OF EGG-WHITE LYSOZYME OF HEN WITH THE PROTON NUCLEAR MAGNETIC-RESONANCE SPECTRUM OF LYSOZYME IN SOLUTION [J].
PERKINS, SJ ;
DWEK, RA .
BIOCHEMISTRY, 1980, 19 (02) :245-258
[22]   HYDROGEN-BONDING IN PURE AND AQUEOUS FORMAMIDE [J].
PULLMAN, A ;
BERTHOD, H ;
GIESSNERPRETTRE, C ;
HINTON, JF ;
HARPOOL, D .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (13) :3991-3994
[23]  
Pullman B, 1974, Adv Protein Chem, V28, P347, DOI 10.1016/S0065-3233(08)60233-8
[24]  
STERNLICHT H, 1969, BIOCHEMISTRY-US, V6, P2881
[25]   MOLECULAR ZEEMAN EFFECT IN FORMAMIDE AND ALPHA-PROTON CHEMICAL SHIFT IN POLY(L-ALANINE) [J].
TIGELAAR, HL ;
FLYGARE, WH .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1972, 94 (02) :343-&
[26]   HYDROGEN-BOND LENGTH AND H-1-NMR CHEMICAL-SHIFTS IN PROTEINS [J].
WAGNER, G ;
PARDI, A ;
WUTHRICH, K .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1983, 105 (18) :5948-5949
[27]  
WILLIAMSON M P, 1990, Biopolymers, V29, P1423, DOI 10.1002/bip.360291009
[28]   CALCULATION OF CHEMICAL-SHIFTS OF PROTONS ON ALPHA CARBONS IN PROTEINS [J].
WILLIAMSON, MP ;
ASAKURA, T .
JOURNAL OF MAGNETIC RESONANCE, 1991, 94 (03) :557-562
[29]  
Zurcher R.F., 1967, PROG NUCL MAGN RESON, V2, P205, DOI 10.1016/0079-6565(67)80006-2