STANDARD-GEOMETRY CHAINS FITTED TO X-RAY DERIVED STRUCTURES - VALIDATION OF THE RIGID-GEOMETRY APPROXIMATION .1. CHAIN CLOSURE THROUGH A LIMITED SEARCH OF LOOP CONFORMATIONS

被引:48
作者
PALMER, KA [1 ]
SCHERAGA, HA [1 ]
机构
[1] CORNELL UNIV,BAKER LAB CHEM,ITHACA,NY 14853
关键词
D O I
10.1002/jcc.540120410
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The GoBAR-Scheraga algorithm to produce rigid-geometry chain closures for polypeptide chains (N. GoBAR and H.A. Scheraga, Macromolecules, 3, 178, 1970) has been updated to allow each residue in the chain to adopt different bond lengths or bond angles. A treatment of five-residue local chain deformations is presented in detail. For chain sections shorter than five residues in length, it is shown that satisfactory closures may be obtained by direct fitting, indicating that the rigid-geometry approximation is adequate to model even short sections of chains having perturbed local geometry. The new implementation of the algorithm has been applied to several problems in protein structure determination and molecular modeling. The first of these is the problem of finding standard-geometry closures for short regions of chains having irregular geometry. It is shown that standard-geometry closures which superimpose well upon the coordinates of the irregular structures may be obtained routinely for chain sections that are five amino acid residues or more in length. Another application of the algorithm is to generate a large number of closures for a short segment of a protein chain, as a method to search the conformational space of this segment. The latter application should prove useful in studies in which the conformation of some region of a given protein has not been determined experimentally. Such applications include the modeling of proteins which have a sequence homology to a crystallized protein, and modeling regions of crystallized proteins which are not well-defined in electron density maps.
引用
收藏
页码:505 / 526
页数:22
相关论文
共 41 条
[21]   COMPARATIVE MODEL-BUILDING OF THE MAMMALIAN SERINE PROTEASES [J].
GREER, J .
JOURNAL OF MOLECULAR BIOLOGY, 1981, 153 (04) :1027-1042
[22]   REFINEMENT OF PROTEIN CONFORMATIONS USING A MACROMOLECULAR ENERGY MINIMIZATION PROCEDURE [J].
LEVITT, M ;
LIFSON, S .
JOURNAL OF MOLECULAR BIOLOGY, 1969, 46 (02) :269-&
[23]  
MADISON V, 1972, BIOPOLYMERS, V12, P1837
[24]  
MATSUMURA M, 1989, J BIOL CHEM, V264, P16059
[25]   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
[26]  
MOULT J, 1986, Proteins Structure Function and Genetics, V1, P146, DOI 10.1002/prot.340010207
[27]   ENERGY PARAMETERS IN POLYPEPTIDES .9. UPDATING OF GEOMETRICAL PARAMETERS, NONBONDED INTERACTIONS, AND HYDROGEN-BOND INTERACTIONS FOR THE NATURALLY-OCCURRING AMINO-ACIDS [J].
NEMETHY, G ;
POTTLE, MS ;
SCHERAGA, HA .
JOURNAL OF PHYSICAL CHEMISTRY, 1983, 87 (11) :1883-1887
[28]   CONFORMATION OF CYCLO(L-ALANYLGLYCYL-EPSILONAMINOCAPROYL), A CYCLIZED DIPEPTIDE MODEL FOR A-BETA-BEND .1. CONFORMATIONAL ENERGY CALCULATIONS [J].
NEMETHY, G ;
MCQUIE, JR ;
POTTLE, MS ;
SCHERAGA, HA .
MACROMOLECULES, 1981, 14 (04) :975-985
[29]   COMPUTER-AIDED MODEL-BUILDING STRATEGIES FOR PROTEIN DESIGN [J].
PABO, CO ;
SUCHANEK, EG .
BIOCHEMISTRY, 1986, 25 (20) :5987-5991
[30]   A PRELIMINARY 3-DIMENSIONAL STRUCTURE OF ANGIOGENIN [J].
PALMER, KA ;
SCHERAGA, HA ;
RIORDAN, JF ;
VALLEE, BL .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (07) :1965-1969