Examination of substrate binding in thiamin diphosphate-dependent transketolase by protein crystallography and site-directed mutagenesis

被引:112
|
作者
Nilsson, U
Meshalkina, L
Lindqvist, Y
Schneider, G
机构
[1] KAROLINSKA INST, DEPT MED BIOCHEM & BIOPHYS, S-17177 STOCKHOLM, SWEDEN
[2] SWEDISH UNIV AGR SCI, DEPT MOL BIOL, S-75124 UPPSALA, SWEDEN
关键词
D O I
10.1074/jbc.272.3.1864
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
The three-dimensional structure of the quaternary complex of Saccharomyces cerevisiae transketolase, thiamin diphosphate, Ca2+, and the acceptor substrate erythrose-4-phosphate has been determined to 2.4 Angstrom resolution by protein crystallographic methods. Erythrose-4-phosphate was generated by enzymatic cleavage of fructose-6-phosphate. The overall structure of the enzyme in the quaternary complex is very similar to the structure of the holoenzyme; no large conformational changes upon substrate binding were found. The substrate binds in a deep cleft between the two subunits. The phosphate group of the substrate interacts with the side chains of the conserved residues Arg(359), Arg(528), His(469), and Ser(386) at the entrance of this cleft. The aldehyde moiety of the sugar phosphate is located in the vicinity of the C-2 carbon atom of the thiazolium ring of the cofactor. The aldehyde oxygen forms hydrogen bonds to the side chains of the residues His(30) and His(263). One of the hydroxyl groups of the sugar phosphate forms a hydrogen bond to the side chain of Asp(477) The preference of the enzyme for donor substrates with D-three configuration at the C-3 and C-4 positions and for a hydroxylated acceptor substrates can be understood from the pattern of hydrogen bonds between enzyme and substrate. Amino acid replacements by site directed mutagenesis of residues Arg(359), Arg(528), and His(469) at the phosphate binding site yield mutant enzymes with considerable residual catalytic activity but increased K-m values for the donor and in particular acceptor substrate, consistent with a role for these residues in phosphate binding. Replacement of Asp(477) by alanine results in a mutant enzyme impaired in catalytic activity and with increased K-m values for donor and acceptor substrates. These findings suggest a role for this amino acid in substrate binding and catalysis.
引用
收藏
页码:1864 / 1869
页数:6
相关论文
共 50 条
  • [1] Examination of the thiamin diphosphate binding site in yeast transketolase by site-directed mutagenesis
    Meshalkina, L
    Nilsson, U
    Wikner, C
    Kostikowa, T
    Schneider, G
    EUROPEAN JOURNAL OF BIOCHEMISTRY, 1997, 244 (02): : 646 - 652
  • [2] ANALYSIS OF AN INVARIANT COFACTOR-PROTEIN INTERACTION IN THIAMIN DIPHOSPHATE-DEPENDENT ENZYMES BY SITE-DIRECTED MUTAGENESIS - GLUTAMIC-ACID-418 IN TRANSKETOLASE IS ESSENTIAL FOR CATALYSIS
    WIKNER, C
    MESHALKINA, L
    NILSSON, U
    NIKKOLA, M
    LINDQVIST, Y
    SUNDSTROM, M
    SCHNEIDER, G
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1994, 269 (51) : 32144 - 32150
  • [3] Substrate specificity in thiamin diphosphate-dependent decarboxylases
    Andrews, Forest H.
    McLeish, Michael J.
    BIOORGANIC CHEMISTRY, 2012, 43 : 26 - 36
  • [4] Using site-saturation mutagenesis to explore mechanism and substrate specificity in thiamin diphosphate-dependent enzymes
    Andrews, Forest H.
    McLeish, Michael J.
    FEBS JOURNAL, 2013, 280 (24) : 6395 - 6411
  • [5] SPECIFICITY OF COENZYME BINDING IN THIAMIN DIPHOSPHATE-DEPENDENT ENZYMES - CRYSTAL-STRUCTURES OF YEAST TRANSKETOLASE IN COMPLEX WITH ANALOGS OF THIAMIN DIPHOSPHATE
    KONIG, S
    SCHELLENBERGER, A
    NEEF, H
    SCHNEIDER, G
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1994, 269 (14) : 10879 - 10882
  • [6] Nucleoside diphosphate kinase - Investigation of the intersubunit contacts by site-directed mutagenesis and crystallography
    Karlsson, A
    Mesnildrey, S
    Xu, YW
    Morera, S
    Janin, J
    Veron, M
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (33) : 19928 - 19934
  • [7] Determinants of substrate specificity in KdcA, a thiamin diphosphate-dependent decarboxylase
    Yep, Alejandra
    Kenyon, George L.
    McLeish, Michael J.
    BIOORGANIC CHEMISTRY, 2006, 34 (06) : 325 - 336
  • [8] PROTEIN ENGINEERING AND SITE-DIRECTED MUTAGENESIS
    DORDICK, JS
    APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 1990, 26 (01) : 107 - 113
  • [9] Probing the heparin binding site of protein C inhibitor by site-directed mutagenesis
    Neese, LL
    Wolfe, CA
    Church, FC
    THROMBOSIS AND HAEMOSTASIS, 1997, : P1420 - P1420
  • [10] Site-directed mutagenesis of substrate binding sites of azoreductase from Rhodobacter sphaeroides
    Liu, Guangfei
    Zhou, Jiti
    Wang, Jing
    Yan, Bin
    Li, Jingmei
    Lu, Hong
    Qu, Yuanyuan
    Jin, Ruofei
    BIOTECHNOLOGY LETTERS, 2008, 30 (05) : 869 - 875