Effects of modifications in the pentose moiety and conformational changes on the binding of nucleoside ligands to uridine phosphorylase from Toxoplasma gondii

被引:23
作者
elKouni, MH
Naguib, FNM
Panzica, RP
Otter, BA
Chu, SH
Gosselin, G
Chu, CK
Schinazi, RF
Shealy, YF
Goudgaon, N
Ozerov, AA
Ueda, T
Iltzsch, MH
机构
[1] UNIV RHODE ISL,DEPT MED CHEM,KINGSTON,RI 02881
[2] ALBERT EINSTEIN COLL MED,CTR CANC,BRONX,NY 10467
[3] MONTEFIORE MED CTR,DEPT ONCOL,MED CHEM LAB,BRONX,NY 10467
[4] BROWN UNIV,DIV BIOL & MED,PROVIDENCE,RI 02912
[5] UNIV MONTPELLIER 2,CHIM BIOORGAN LAB,URA 488 CNRS,F-34095 MONTPELLIER 5,FRANCE
[6] UNIV GEORGIA,COLL PHARM,DEPT MED CHEM,ATHENS,GA 30602
[7] VET AFFAIRS MED CTR,DECATUR,GA 30033
[8] EMORY UNIV,SCH MED,BIOCHEM PHARMACOL LAB,ATLANTA,GA 30322
[9] SO RES INST,BIRMINGHAM,AL 35255
[10] FLORIDA AGR & MECH UNIV,COLL PHARM & PHARMACEUT SCI,TALLAHASSEE,FL 32307
[11] VOLGOGRAD MED ACAD,PHARMACOL RES INST,MOSCOW 400066,RUSSIA
[12] HOKKAIDO UNIV,KITA KU,SAPPORO,HOKKAIDO 060,JAPAN
[13] UNIV CINCINNATI,DEPT BIOL SCI,CINCINNATI,OH 45221
关键词
uridine; phosphorylase; toxoplasma; ligands; structure-activity;
D O I
10.1016/0006-2952(96)00213-4
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
One hundred and fifty analogues of uridine, with various modifications to the uracil and pentose moieties, have been tested and compared with uridine with respect to their potency to bind to uridine phosphorylase (UrdPase, EC 2.4.2.3) from Toxoplasma gondii. The effects of the alpha- and beta-anomers; the L- and D-enantiomers, as well as restricted syn and anti rotamers, on binding were examined. Pseudo-, lyxo-, 2,3'-anhydro-2'-deoxy-, 6,5'-cyclo-, 6,3'-methano-, O-5',O-6-methano- and carbocyclic uridines did not bind to the enzyme. Ribosides bound better than the corresponding xylosides, which were better than the deoxyribosides. The binding of deoxyribosides was in the following manner: 2',3'-dideoxynucleosides > 2',5'-dideoxynucleosides > 2'-deoxyribosides > 3'- and 5'-deoxyribosides. alpha-2'-Deoxyribosides bound to the enzyme, albeit less tightly than the corresponding beta-anomers. The acyclo- and 2,2'-anhydrouridines bound strongly, with the 2,2'-anhydro-derivatives being the better ligands. 2,5'-Anhydrouridine bound to UrdPase less effectively than 2,2'-anhydrouridine and acyclouridine. Arabinosyluracil was at best a very poor ligand, but bound better if a benzyl group was present at the 5-position of the pyrimidine ring. This binding was enhanced further by adding a 5-benzyloxybenzyl group. A similar enhancement of the binding by increased hydrophobicity at the 5-position of the pyrimidine ring was observed with ribosides, alpha- and beta-anomers of the 2'-deoxyribosides, acyclonucleosides, and 2,2'-anhydronucleosides. Among all the compounds tested, 5-(benzyloxybenzyl) 2,2'-anhydrouridine was identified as the best ligand of T. gondii UrdPase with an apparent K-i value of 60 +/- 3 nM. It is concluded that the presence of an N-glycosyl bond is a prerequisite for a nucleoside ligand to bind to T. gondii UrdPase. On the other hand, the presence of a 2'-, 3'-, or 5'-hydroxyl group, or an N-glycosyl bond in the beta-configuration, enhanced but was not essential for binding. Furthermore, the potency of the binding of 2,2' -anhydrouridines (fixed high syn isomers) in contrast to the weaker binding of the 6,1'-anhydro- or 2,5' -anhydrouridines (fixed syn isomers), and the complete lack of binding of the 6,5'-cyclo, O-5',O-6-methane- and 6,3' -methanouridines (fixed anti isomers) to T. gondii UrdPase indicate that the binding of ligands to this enzyme is in the syn/high syn conformation around the N-glycosyl bond. The results also indicate that the parasite but nut the mammalian host UrdPase can participate in hydrogen bonding with N3 of the pyrimidine ring of nucleoside ligands. T. gondii UrdPase also has a larger hydrophobic pocket adjacent to the C5 of the pyrimidine moiety than the host enzyme, and can accommodate modifications in the pentose moiety which cannot be tolerated by the host enzyme. Most prominent among these modifications is the absence and/or lack of the ribo orientation of the 3'-hydroxyl group, which is a requirement for a ligand to bind to mammalian UrdPase. These differences between the parasite and host enzymes can be useful in designing specific inhibitors of ''subversive'' substrates for T. gondii UrdPase.
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页码:1687 / 1700
页数:14
相关论文
共 75 条
[1]  
ABDELMEGIED AES, 1991, SYNTHESIS-STUTTGART, P313
[2]   SYNTHESIS OF PYRIMIDINE ACYCLONUCLEOSIDES [J].
ABRAMS, HM ;
HO, L ;
CHU, SH .
JOURNAL OF HETEROCYCLIC CHEMISTRY, 1981, 18 (05) :947-951
[3]   ENZYMES OF THE DENOVO PYRIMIDINE BIOSYNTHETIC-PATHWAY IN TOXOPLASMA-GONDII [J].
ASAI, T ;
OSULLIVAN, WJ ;
KOBAYASHI, M ;
GERO, AM ;
YOKOGAWA, M ;
TATIBANA, M .
MOLECULAR AND BIOCHEMICAL PARASITOLOGY, 1983, 7 (02) :89-100
[4]  
BAKER BR, 1970, J MED CHEM, V13, P461, DOI 10.1021/jm00297a029
[5]   X-RAY AND H-1-NMR ANALYSES OF 5-(META-BENZYLOXYBENZYL)-1-[(1,3-DIHYDROXY-2-PROPOXY)METHYL]URACIL, AN ACYCLONUCLEOSIDE INHIBITOR OF URIDINE PHOSPHORYLASE [J].
BIRNBAUM, GI ;
BRISSON, JR ;
CHU, SH ;
CHEN, ZH ;
ROWE, EC .
CANADIAN JOURNAL OF CHEMISTRY-REVUE CANADIENNE DE CHIMIE, 1986, 64 (12) :2376-2381
[6]   URIDINE PHOSPHORYLASE, MOLECULAR-PROPERTIES AND MECHANISM OF CATALYSIS [J].
BOSE, R ;
YAMADA, EW .
BIOCHEMISTRY, 1974, 13 (10) :2051-2056
[7]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[8]  
CHA S, 1968, MOL PHARMACOL, V4, P621
[9]   INSITU COMPLEXATION DIRECTS THE STEREOCHEMISTRY OF N-GLYCOSYLATION IN THE SYNTHESIS OF OXATHIOLANYL AND DIOXOLANYL NUCLEOSIDE ANALOGS [J].
CHOI, WB ;
WILSON, LJ ;
YEOLA, S ;
LIOTTA, DC ;
SCHINAZI, RF .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (24) :9377-9379