Identification of functionally important residues in the pyridoxal-5′-phosphate-dependent catalytic antibody 15A9

被引:2
|
作者
Mouratou, B
Stetefeld, J
机构
[1] Univ Zurich, Biochem Inst, CH-8057 Zurich, Switzerland
[2] Univ Basel, Biozentrum, Dept Biophys Chem, CH-4056 Basel, Switzerland
关键词
D O I
10.1021/bi049874e
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
Antibody 15A9 is unique in its ability to catalyze the transamination reaction of hydrophobic D-amino acids with pyridoxal-5'-phosphate (PLP). Both previous chemical modification studies and a three dimensional (3-D) homology model indicated the presence of functionally important tyrosine residues in the antigen-binding cavity of antibody 15A9. To gain further insight into the hapten, ligand binding, and catalytic mechanism of 15A9, all tyrosine residues in the complementarity-determining regions (CDRs) and the single arginine residue in CDR3 of the light chain were subject to an alanine scan. Substitution of Tyr(H33), Tyr(L94), or Arg(L91) abolished the catalytic activity and reduced the affinity for PLP and N-alpha-(5'-phosphopyridoxyl)-amino acids, which are close analogues of covalent PLP-substrate adducts. The Tyr(H100b)Ala mutant possessed no detectable catalytic activity, while its affinity for each ligand was essentially the same as that of the wild-type antibody. The binding affinity for the hapten was drastically reduced by a Tyr(L32)Ala mutation, suggesting that the hydroxyphenyl group of Tyr(L32) participates in the binding of the extended side chain of the hapten. The other Tyr - Ala substitutions affected both binding and catalytic activity only to a minor degree. On the basis of the information obtained from the mutagenesis study, we docked N-alpha-(5'-phosphopyridoxyl)-D-alanine into the antigen-binding site. According to this model, Arg(L91) binds the alpha-carboxylate group of the amino acid substrate and Tyr(H100b) plays an essential role in the catalytic mechanism of antibody 15A9 by facilitating the Calpha/C4' prototropic shift. In addition, the catalytic apparatus of antibody 15A9 revealed several mechanistic features that overlap with those of PLP-dependent enzymes.
引用
收藏
页码:6612 / 6619
页数:8
相关论文
共 50 条
  • [41] The Crystal Structure of the Pseudomonas dacunhae Aspartate-β-Decarboxylase Dodecamer Reveals an Unknown Oligomeric Assembly for a Pyridoxal-5′-Phosphate-Dependent Enzyme
    Lima, Santiago
    Sundararaju, Bakthavatsalam
    Huang, Christina
    Khristoforov, Roman
    Momany, Cory
    Phillips, Robert S.
    JOURNAL OF MOLECULAR BIOLOGY, 2009, 388 (01) : 98 - 108
  • [42] Protein–Protein Interfaces as Druggable Targets: A Common Motif of the Pyridoxal-5′-Phosphate-Dependent Enzymes to Receive the Coenzyme from Its Producers
    Vasily A. Aleshin
    Victoria I. Bunik
    Biochemistry (Moscow), 2023, 88 : 1022 - 1033
  • [43] Evolutionarily conserved regions and hydrophobic contacts at the superfamily level:: The case of the fold-type I, pyridoxal-5′-phosphate-dependent enzymes
    Paiardini, A
    Bossa, F
    Pascarella, S
    PROTEIN SCIENCE, 2004, 13 (11) : 2992 - 3005
  • [44] MODIFICATION OF AMINOACYL-TRANSFER-RNA SYNTHETASES WITH PYRIDOXAL-5'-PHOSPHATE - IDENTIFICATION OF THE LABELED AMINO-ACID-RESIDUES
    KALOGERAKOS, T
    HOUNTONDJI, C
    BERNE, PF
    DUTKA, S
    BLANQUET, S
    BIOCHIMIE, 1994, 76 (01) : 33 - 44
  • [45] Isolation and characterization of D-threonine aldolase, a pyridoxal-5'-phosphate-dependent enzyme from Arthrobacter sp. DK-38
    Kataoka, M
    Ikemi, M
    Morikawa, T
    Miyoshi, T
    Nishi, K
    Wada, M
    Yamada, H
    Shimizu, S
    EUROPEAN JOURNAL OF BIOCHEMISTRY, 1997, 248 (02): : 385 - 393
  • [46] Protein-Protein Interfaces as Druggable Targets: A Common Motif of the Pyridoxal-5'-Phosphate-Dependent Enzymes to Receive the Coenzyme from Its Producers
    Aleshin, Vasily A.
    Bunik, Victoria I.
    BIOCHEMISTRY-MOSCOW, 2023, 88 (07) : 1022 - 1033
  • [47] PURIFICATION AND PROPERTIES OF A PYRIDOXAL 5'-PHOSPHATE-DEPENDENT HISTIDINE-DECARBOXYLASE FROM MORGANELLA-MORGANII-AM-15
    TANASE, S
    GUIRARD, BM
    SNELL, EE
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1985, 260 (11) : 6738 - 6746
  • [48] Turning pyridoxal-5′-phosphate-dependent enzymes into thermostable binding proteins: D-Serine dehydratase from baker's yeast as a case study
    Baldassarre, Maurizio
    Scire, Andrea
    Tanfani, Fabio
    BIOCHIMIE, 2012, 94 (02) : 479 - 486
  • [49] EVOLUTIONARY RELATIONSHIPS AMONG PYRIDOXAL-5'-PHOSPHATE-DEPENDENT ENZYMES - REGIO-SPECIFIC ALPHA-FAMILY, BETA-FAMILY, AND GAMMA-FAMILY
    ALEXANDER, FW
    SANDMEIER, E
    MEHTA, PK
    CHRISTEN, P
    EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 219 (03): : 953 - 960
  • [50] Catalytic Roles of Coenzyme Pyridoxal-5′-phosphate (PLP) in PLP-Dependent Enzymes: Reaction Pathway for Methionine-γ-LyaseCatalyzed L-Methionine Depletion
    Li, Zhe
    Zhao, Yunsong
    Zhou, Huifang
    Luo, Hai-Bin
    Zhan, Chang-Guo
    ACS CATALYSIS, 2020, 10 (03): : 2198 - 2210