CRYSTAL-STRUCTURE OF THE DNA MODIFYING ENZYME BETA-GLUCOSYLTRANSFERASE IN THE PRESENCE AND ABSENCE OF THE SUBSTRATE URIDINE DIPHOSPHOGLUCOSE

被引:225
作者
VRIELINK, A
RUGER, W
DRIESSEN, HPC
FREEMONT, PS
机构
[1] IMPERIAL CANC RES FUND,PROT STRUCT LAB,LONDON WC2A 3PX,ENGLAND
[2] RUHR UNIV BOCHUM,FAK BIOL,ARBEITSGRP MOLEK GENET,W-4630 BOCHUM,GERMANY
[3] UNIV LONDON BIRKBECK COLL,ICRF UNIT STRUCT MOLEC BIOL,LONDON WC1E 7HX,ENGLAND
关键词
DNA MODIFICATION; ENZYME; GLUCOSYLATION; T-PHAGE; X-RAY CRYSTAL STRUCTURE;
D O I
10.1002/j.1460-2075.1994.tb06646.x
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
Bacteriophage T4 beta-glucosyltransferase (EC 2.4.1.27) catalyses the transfer of glucose from uridine diphosphoglucose to hydroxymethyl groups of modified cytosine bases in T4 duplex DNA forming beta-glycosidic linkages. The enzyme forms part of a phage DNA protection system. We have solved and refined the crystal structure of recombinant beta-glucosyltransferase to 2.2 Angstrom resolution in the presence and absence of the substrate, uridine diphosphoglucose. The structure comprises two domains of similar topology, each reminiscent of a nucleotide binding fold. The two domains are separated by a central cleft which generates a concave surface along one side of the molecule. The substrate-bound complex reveals only clear electron density for the uridine diphosphate portion of the substrate. The UDPG is bound in a pocket at the bottom of the cleft between the two domains and makes extensive hydrogen bonding contacts with residues of the C-terminal domain only. The domains undergo a rigid body conformational change causing the structure to adopt a more closed conformation upon ligand binding. The movement of the domains is facilitated by a hinge region between residues 166 and 172. Electrostatic surface potential calculations reveal a large positive potential along the concave surface of the structure, suggesting a possible site for duplex DNA interaction.
引用
收藏
页码:3413 / 3422
页数:10
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