MECHANISM OF PROTEIN FOLDING .2. LYSOZYME AND PHOSPHOLIPASE

被引:13
作者
YOSHIMURA, T
NOGUCHI, H
INOUE, T
SAITO, N
机构
[1] Department ofapplied Physics, Waseda University, Shinjuku, Tokyo, 169
基金
日本科学技术振兴机构;
关键词
LYSOZYME; PHOSPHOLIPASE; DISULFIDE BOND; HYDROPHOBIC INTERACTION; TERTIARY STRUCTURE; SECONDARY STRUCTURE; ANTIPARALLEL BETA-STRUCTURE; FOLDING ORDER;
D O I
10.1016/0301-4622(91)80026-N
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
Refolding of hen egg-white lysozyme assuming the formation of secondary structures (alpha-helices and beta-sheets) is carried out by the method presented in the previous paper (N. Saito et al., Proteins; Struct. Funct. Genet. 3 (1988) 199-208). To do this, the hydrophobic interactions between the hydrophobic residues which are located at the key positions for folding and can be identified without te knowledge of the native structure, and the nonbonded interactions between every pair of atoms (except hydrogen) or groups are introduced successively from short- to medium-distance pairs. The search for the energy minimum by these interactions can afford a conformation of especially the mutual arrangements between neighboring secondary structures. When these local structures are accomplished, some of the long-distance amino-acid pairs come close together and then the possible interactions (hydrophobic, nonbonded) are introduced. The three-dimensional structure of lysozyme thus obtained is shown to have locally correct arrangements of the secondary structures, but mutual relations between long-distance parts of the chain are not similar to the native structure. The introduction of disulfide bonds between appropriate cysteine residues is necessary to reach the native structure. The choice of cysteine pairs for disulfide bonding is made by the criterion given in the paper to follow (K. Watanabe, A. Nakamura, Y. Fukuda and N. Saito, Biophys. Chem. 40 (1991) 293). The same treatment is applied to bovine pancreatic phospholipase with 7 disulfide bonds. The formation of the antiparallel beta-structures from neighboring beta-strands and the problem of the folding order are also discussed.
引用
收藏
页码:277 / 291
页数:15
相关论文
共 18 条
[1]  
ANDERSON WL, 1976, J BIOL CHEM, V251, P3147
[2]   MOLTEN-GLOBULE STATE ACCUMULATES IN CARBONIC-ANHYDRASE FOLDING [J].
DOLGIKH, DA ;
KOLOMIETS, AP ;
BOLOTINA, IA ;
PTITSYN, OB .
FEBS LETTERS, 1984, 165 (01) :88-92
[4]   COMPARISON OF THE TRANSIENT FOLDING INTERMEDIATES IN LYSOZYME AND ALPHA-LACTALBUMIN [J].
KUWAJIMA, K ;
HIRAOKA, Y ;
IKEGUCHI, M ;
SUGAI, S .
BIOCHEMISTRY, 1985, 24 (04) :874-881
[5]  
MILNERWHITE EJ, 1987, TRENDS BIOCHEM SCI, V12, P189
[6]   HYDROPHOBIC CORE OF MOLTEN-GLOBULE STATE OF BOVINE CARBONIC ANHYDRASE-B [J].
MITAKU, S ;
ISHIDO, S ;
HIRANO, Y ;
ITOH, H ;
KATAOKA, R ;
SAITO, N .
BIOPHYSICAL CHEMISTRY, 1991, 40 (03) :217-222
[7]   ENERGY PARAMETERS IN POLYPEPTIDES .7. GEOMETRIC PARAMETERS, PARTIAL ATOMIC CHARGES, NONBONDED INTERACTIONS, HYDROGEN-BOND INTERACTIONS, AND INTRINSIC TORSIONAL POTENTIALS FOR NATURALLY OCCURRING AMINO-ACIDS [J].
MOMANY, FA ;
MCGUIRE, RF ;
BURGESS, AW ;
SCHERAGA, HA .
JOURNAL OF PHYSICAL CHEMISTRY, 1975, 79 (22) :2361-2381
[8]   MOLTEN-GLOBULE STATE - A COMPACT FORM OF GLOBULAR-PROTEINS WITH MOBILE SIDE-CHAINS [J].
OHGUSHI, M ;
WADA, A .
FEBS LETTERS, 1983, 164 (01) :21-24
[9]   MECHANISM OF PROTEIN FOLDING .1. GENERAL-CONSIDERATIONS AND REFOLDING OF MYOGLOBIN [J].
SAITO, N ;
SHIGAKI, T ;
KOBAYASHI, Y ;
YAMAMOTO, M .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1988, 3 (03) :199-207
[10]   STATISTICAL-MECHANICS OF DNA AND PROTEIN SUITABLE FOR COMPUTER CALCULATION [J].
SAITO, N .
CELL BIOPHYSICS, 1987, 11 :321-329