Crystal structure of Escherichia coli xanthine phosphoribosyltransferase

被引:71
作者
Vos, S
deJersey, J
Martin, JL
机构
[1] UNIV QUEENSLAND, CTR PROT STRUCT FUNCT & ENGN, DEPT BIOCHEM, BRISBANE, QLD 4072, AUSTRALIA
[2] UNIV QUEENSLAND, CTR DRUG DESIGN & DEV, BRISBANE, QLD 4072, AUSTRALIA
关键词
D O I
10.1021/bi962640d
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
Xanthine phosphoribosyltransferase (XPRT; EC 2.4.2.22) from Escherichia coli is a tetrameric enzyme having 152 residues per subunit. XPRT catalyzes the transfer of the phosphoribosyl group from 5-phospho-alpha-D-ribosyl l-pyrophosphate (PRib-PP) to the 6-oxopurine bases guanine, xanthine, and hypoxanthine to form GMP, XMP, and IMP, respectively. Crystals grown in the absence of substrate or product were used to determine the structure of XPRT at a resolution of 1.8 Angstrom by multiple isomorphous replacement. The core structure of XPRT includes a five-stranded parallel B-sheet surrounded by three or-helices, which is similar to that observed in other known phosphoribosyltransferase (PRTase) structures. The XPRT structure also has several interesting features. A glutamine residue in the purine binding site may be responsible for the altered 6-oxopurine base specificity seen in this enzyme compared to other 6-oxopurine PRTases. Also, we observe both a magnesium ion and a sulfate ion bound at the PRib-PP binding site of XPRT. The sulfate ion interacts with Arg-37 which has a cis-peptide conformation, and the magnesium ion interacts with Asp-89, a highly conserved acidic residue in the PRib-PP binding site motif. The XPRT structure also incorporates a feature which has not been observed in other PRTase structures. The C-terminal 12 residues of XPRT adopt an unusual extended conformation and make interactions with a neighboring subunit. The very last residue, Arg-152, could form part of the active site of a symmetry-related subunit in the XPRT tetramer.
引用
收藏
页码:4125 / 4134
页数:10
相关论文
共 40 条
[1]   STUDIES OF THE MECHANISM OF ACTIVATION OF THE YEAST HYPOXANTHINE GUANINE PHOSPHORIBOSYLTRANSFERASE CATALYZED-REACTIONS BY DIVALENT METAL-IONS [J].
ALI, LZ ;
SLOAN, DL .
BIOCHEMISTRY, 1983, 22 (14) :3419-3424
[2]   OMITMAP - AN ELECTRON-DENSITY MAP SUITABLE FOR THE EXAMINATION OF ERRORS IN A MACROMOLECULAR MODEL [J].
BHAT, TN ;
COHEN, GH .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1984, 17 (AUG) :244-248
[3]   THE ROLE OF DIVALENT MAGNESIUM IN ACTIVATING THE REACTION CATALYZED BY OROTATE PHOSPHORIBOSYLTRANSFERASE [J].
BHATIA, MB ;
GRUBMEYER, C .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1993, 303 (02) :321-325
[4]   ASSESSMENT OF PHASE ACCURACY BY CROSS VALIDATION - THE FREE R-VALUE - METHODS AND APPLICATIONS [J].
BRUNGER, AT .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 1993, 49 :24-36
[5]  
Brunger AT, 1992, XPLOR VERSION 3 1 MA
[6]   PURIFICATION AND CHARACTERIZATION OF ESCHERICHIA-COLI XANTHINE-GUANINE PHOSPHORIBOSYLTRANSFERASE PRODUCED BY PLASMID-PSV2GPT [J].
DEO, SS ;
TSENG, WC ;
SAINI, R ;
COLES, RS ;
ATHWAL, RS .
BIOCHIMICA ET BIOPHYSICA ACTA, 1985, 839 (03) :233-239
[7]   A new function for a common fold: The crystal structure of quinolinic acid phosphoribosyltransferase [J].
Eads, JC ;
Ozturk, D ;
Wexler, TB ;
Grubmeyer, C ;
Sacchettini, JC .
STRUCTURE, 1997, 5 (01) :47-58
[8]   THE CRYSTAL-STRUCTURE OF HUMAN HYPOXANTHINE-GUANINE PHOSPHORIBOSYLTRANSFERASE WITH BOUND GMP [J].
EADS, JC ;
SCAPIN, G ;
XU, YM ;
GRUBMEYER, C ;
SACCHETTINI, JC .
CELL, 1994, 78 (02) :325-334
[9]   EXPRESSION OF ACTIVE HUMAN HYPOXANTHINE-GUANINE PHOSPHORIBOSYLTRANSFERASE IN ESCHERICHIA-COLI AND CHARACTERIZATION OF THE RECOMBINANT ENZYME [J].
FREE, ML ;
GORDON, RB ;
KEOUGH, DT ;
BEACHAM, IR ;
EMMERSON, BT ;
DEJERSEY, J .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1087 (02) :205-211
[10]  
FUREY W, 1990, AM CRYSTALLOGR ASSOC