X-RAY STRUCTURE OF THE DNASE I-D(GGTATACC)(2) COMPLEX AT 2.3-ANGSTROM RESOLUTION

被引:245
作者
WESTON, SA [1 ]
LAHM, A [1 ]
SUCK, D [1 ]
机构
[1] EUROPEAN MOLEC BIOL LAB,DIV BIOL STRUCT & BIOCOMP,MEYERHOFSTR 1,W-6900 HEIDELBERG,GERMANY
关键词
DEOXYRIBONUCLEASE-I; X-RAY STRUCTURE; PROTEIN DNA INTERACTIONS; SEQUENCE-DEPENDENT DNA GEOMETRY; MINOR GROOVE CONTACTS;
D O I
10.1016/0022-2836(92)91064-V
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 crystal structure of a complex between DNase I and the self-complementary octamer duplex d(GGTATACC)2 has been solved using the molecular replacement method and refined to a crystallographic R-factor of 18·8% for all data between 6·0 and 2·3 Å resolution. In contrast to the structure of the DNase I-d(GCGATCGC)2 complex solved previously, the DNA remains uncleaved in the crystal. The general architecture of the two complexes is highly similar. DNase I binds in the minor groove of a right-handed DNA duplex, and to the phosphate backbones on either side over five base-pairs, resulting in a widening of the minor groove and a concurrent bend of the DNA away from the bound enzyme. There is very little change in the structure of the DNase I on binding the substrate. Many other features of the interaction are conserved in the two complexes, in particular the stacking of a deoxyribose group of the DNA onto the side-chain of a tyrosine residue (Y76), which affects the DNA conformation and the binding of an arginine side-chain in the minor groove. Although the structures of the DNA molecules appear at first sight rather similar, detailed analysis reveals some differences that may explain the relative resistance of the d(GGTATACC)2 duplex to cleavage by DNase I: whilst some backbone parameters are characteristic of a B-conformation, the spatial orientation of the base-pairs in the d(GGTATACC)2 duplex is close to that generally observed in A-DNA. These results further support the hypothesis that the minor-groove width and depth and the intrinsic flexibility of DNA are the most important parameters affecting the interaction. The disposition of residues around the scissile phosphate group suggests that two histidine residues, H134 and H252, are involved in catalysis. © 1992.
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页码:1237 / 1256
页数:20
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