Molecular determinants for ATP-binding in proteins: A data mining and quantum chemical analysis

被引:119
作者
Mao, LS [1 ]
Wang, YL [1 ]
Liu, YM [1 ]
Hu, XC [1 ]
机构
[1] Univ Toledo, Dept Chem, Toledo, OH 43606 USA
关键词
ATP-binding proteins; intermolecular interactions; hydrogen bonds; cation-pi interactions; pi-pi stacking interactions;
D O I
10.1016/j.jmb.2003.12.056
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
Adenosine 5'-triphosphate (ATP) plays an essential role in all forms of life. Molecular recognition of ATP in proteins is a subject of great importance for understanding enzymatic mechanism and for drug design. We have carried out a large-scale data mining of the Protein Data Bank (PDB) to analyze molecular determinants for recognition of the adenine moiety of ATP by proteins. Non-bonded intermolecular interactions (hydrogen bonding, pi-pi stacking interactions, and cation-pi interactions) between adenine base and surrounding residues in its binding pockets are systematically analyzed for 68 non-redundant, high-resolution crystal structures of adenylate-binding proteins. In addition to confirming the importance of the widely known hydrogen bonding, we found out that cation-pi interactions between adenine base and positively charged residues (Lys and Arg) and pi-pi stacking interactions between adenine base and surrounding aromatic residues (Phe, Tyr, Trp) are also crucial for adenine binding in proteins. On average, there exist 2.7 hydrogen bonding interactions, 1.0 pi-pi stacking interactions, and 0.8 cation-pi interactions in each adenylate-binding protein complex. Furthermore, a high-level quantum chemical analysis was performed to analyze contributions of each of the three forms of intermolecular interactions (i.e. hydrogen bonding, pi-pi stacking interactions, and cation-pi interactions) to the overall binding force of the adenine moiety of ATP in proteins. Intermolecular interaction energies for representative configurations of intermolecular complexes were analyzed using the supermolecular approach at the MP2/6-311 + G* level, which resulted in substantial interaction strengths for all the three forms of intermolecular interactions. This work represents a timely undertaking at a historical moment when a large number of X-ray crystallographic structures of proteins with bound ATP ligands have become available, and when high-level quantum chemical analysis of intermolecular interactions of large biomolecular systems becomes computationally feasible. The establishment of the molecular basis for recognition of the adenine moiety of ATP in proteins will directly impact molecular design of ATP-binding site targeted enzyme inhibitors such as kinase inhibitors. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:787 / 807
页数:21
相关论文
共 125 条
  • [1] Conserved positions for ribose recognition: Importance of water bridging interactions among ATP, ADP and FAD-protein complexes
    Babor, M
    Sobolev, V
    Edelman, M
    [J]. JOURNAL OF MOLECULAR BIOLOGY, 2002, 323 (03) : 523 - 532
  • [2] Transformation of MutL by ATP binding and hydrolysis: A switch in DNA mismatch repair
    Ban, C
    Junop, M
    Yang, W
    [J]. CELL, 1999, 97 (01) : 85 - 97
  • [3] CRYSTAL-STRUCTURES AT 2.5 ANGSTROM RESOLUTION OF SERYL-TRANSFER-RNA SYNTHETASE COMPLEXED 2 ANALOGS OF SERYL ADENYLATE
    BELRHALI, H
    YAREMCHUK, A
    TUKALO, M
    LARSEN, K
    BERTHETCOLOMINAS, C
    LEBERMAN, R
    BEIJER, B
    SPROAT, B
    ALSNIELSEN, J
    GRUBEL, G
    LEGRAND, JF
    LEHMANN, M
    CUSACK, S
    [J]. SCIENCE, 1994, 263 (5152) : 1432 - 1436
  • [4] The Protein Data Bank
    Berman, HM
    Westbrook, J
    Feng, Z
    Gilliland, G
    Bhat, TN
    Weissig, H
    Shindyalov, IN
    Bourne, PE
    [J]. NUCLEIC ACIDS RESEARCH, 2000, 28 (01) : 235 - 242
  • [5] Nucleotide binding by the histidine kinase CheA
    Bilwes, AM
    Quezada, CM
    Croal, LR
    Crane, BR
    Simon, MI
    [J]. NATURE STRUCTURAL BIOLOGY, 2001, 8 (04) : 353 - 360
  • [6] Probing the energetic and structural role of amino acid/nucleobase cation-π interactions in protein-ligand complexes
    Biot, C
    Buisine, E
    Kwasigroch, JM
    Wintjens, R
    Rooman, M
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (43) : 40816 - 40822
  • [7] CALCULATION OF SMALL MOLECULAR INTERACTIONS BY DIFFERENCES OF SEPARATE TOTAL ENERGIES - SOME PROCEDURES WITH REDUCED ERRORS
    BOYS, SF
    BERNARDI, F
    [J]. MOLECULAR PHYSICS, 1970, 19 (04) : 553 - &
  • [8] THEORETICAL-STUDIES OF VANDERWAALS MOLECULES AND INTERMOLECULAR FORCES
    BUCKINGHAM, AD
    FOWLER, PW
    HUTSON, JM
    [J]. CHEMICAL REVIEWS, 1988, 88 (06) : 963 - 988
  • [9] Structural analyses of nucleotide binding to an aminoglycoside phosphotransferase
    Burk, DL
    Hon, WC
    Leung, AKW
    Berghuis, AM
    [J]. BIOCHEMISTRY, 2001, 40 (30) : 8756 - 8764
  • [10] AROMATIC-AROMATIC INTERACTION - A MECHANISM OF PROTEIN-STRUCTURE STABILIZATION
    BURLEY, SK
    PETSKO, GA
    [J]. SCIENCE, 1985, 229 (4708) : 23 - 28