MONTY - A MONTE-CARLO APPROACH TO PROTEIN-DNA RECOGNITION

被引:36
作者
KNEGTEL, RMA [1 ]
ANTOON, J [1 ]
RULLMANN, C [1 ]
BOELENS, R [1 ]
KAPTEIN, R [1 ]
机构
[1] UNIV UTRECHT,BIJVOET CTR BIOMOLEC RES,PADUALAAN 8,3584 CH UTRECHT,NETHERLANDS
关键词
DOCKING; PROTEIN-DNA INTERACTION; STRUCTURE PREDICTION; MONTE-CARLO; MOLECULAR SURFACE COMPLEMENTARITY;
D O I
10.1016/S0022-2836(05)80035-X
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
A Monte Carlo method is described for automated docking of proteins on DNA. The simulation program MONTY keeps the entire DNA and the protein backbone and core fixed while protein surface side-chains are allowed to rotate freely. The entire protein is rotated and translated by small random steps in order to find the best fit with the DNA. New configurations are accepted on basis of their Boltzmann probability. Protein-DNA interaction is represented by square well potentials for hydrogen bond and van der Waals interactions. The structure with the largest interaction energy encountered during the simulation is saved. The method is tested on complexes of the 434 Cro protein and its operator DNA where the protein is shifted up or down one or two base-pairs and is subsequently allowed to find back its native binding site. This protocol is performed for shifted complexes derived from the crystal structure, shifted complexes where the crystal structure DNA is replaced by standard B-DNA and shifted complexes where in addition the protein is replaced by protein from the uncomplexed crystal structure. In all three cases the six lowest energy structures correspond to complexes close to the native complex. The quality of sequence specific recognition diminishes, however, when the molecular surface complementarity between protein and DNA decreases. © 1994 Academic Press Limited.
引用
收藏
页码:318 / 324
页数:7
相关论文
共 26 条
[11]   A ROBUST AND EFFICIENT AUTOMATED DOCKING ALGORITHM FOR MOLECULAR RECOGNITION [J].
KASINOS, N ;
LILLEY, GA ;
SUBBARAO, N ;
HANEEF, I .
PROTEIN ENGINEERING, 1992, 5 (01) :69-75
[12]   THE ENERGETIC BASIS OF SPECIFICITY IN THE ECO RI ENDONUCLEASE DNA INTERACTION [J].
LESSER, DR ;
KURPIEWSKI, MR ;
JENJACOBSON, L .
SCIENCE, 1990, 250 (4982) :776-786
[13]   EQUATION OF STATE CALCULATIONS BY FAST COMPUTING MACHINES [J].
METROPOLIS, N ;
ROSENBLUTH, AW ;
ROSENBLUTH, MN ;
TELLER, AH ;
TELLER, E .
JOURNAL OF CHEMICAL PHYSICS, 1953, 21 (06) :1087-1092
[14]   STRUCTURE OF THE AMINO-TERMINAL DOMAIN OF PHAGE-434 REPRESSOR AT 2.0 A RESOLUTION [J].
MONDRAGON, A ;
SUBBIAH, S ;
ALMO, SC ;
DROTTAR, M ;
HARRISON, SC .
JOURNAL OF MOLECULAR BIOLOGY, 1989, 205 (01) :189-200
[15]   THE PHAGE-434 CRO/OR1 COMPLEX AT 2.5A RESOLUTION [J].
MONDRAGON, A ;
HARRISON, SC .
JOURNAL OF MOLECULAR BIOLOGY, 1991, 219 (02) :321-334
[16]   TRANSCRIPTION FACTORS - STRUCTURAL FAMILIES AND PRINCIPLES OF DNA RECOGNITION [J].
PABO, CO ;
SAUER, RT .
ANNUAL REVIEW OF BIOCHEMISTRY, 1992, 61 :1053-1095
[17]   PROTEIN-DNA RECOGNITION [J].
PABO, CO ;
SAUER, RT .
ANNUAL REVIEW OF BIOCHEMISTRY, 1984, 53 :293-321
[18]  
SOICHET BK, 1991, J MOL BIOL, V221, P327
[19]   BIBLIOGRAPHY OF THEORETICAL CALCULATIONS IN MOLECULAR PHARMACOLOGY [J].
STEDMAN, NJ ;
MORRIS, GM ;
ATKINSON, PJ .
JOURNAL OF MOLECULAR GRAPHICS & MODELLING, 1987, 5 (04) :211-222
[20]   STRUCTURAL STUDIES OF PROTEIN NUCLEIC-ACID INTERACTION - THE SOURCES OF SEQUENCE-SPECIFIC BINDING [J].
STEITZ, TA .
QUARTERLY REVIEWS OF BIOPHYSICS, 1990, 23 (03) :205-+