Cedergren-Zeppezauer E S, Larsson G, Nyman P O, Dauter Z, Wilson K S
Department of Zoological Cell Biology, Wenner-Gren Institute, University of Stockholm, Sweden.
Nature. 1992 Feb 20;355(6362):740-3. doi: 10.1038/355740a0.
The enzyme dUTPase catalyses the hydrolysis of dUTP and maintains a low intracellular concentration of dUTP so that uracil cannot be incorporated into DNA. dUTPase from Escherichia coli is strictly specific for its dUTP substrate, the active site discriminating between nucleotides with respect to the sugar moiety as well as the pyrimidine base. Here we report the three-dimensional structure of E. coli dUTPase determined by X-ray crystallography at a resolution of 1.9 A. The enzyme is a symmetrical trimer, and of the 152 amino acid residues in the subunit, the first 136 are visible in the crystal structure. The tertiary structure resembles a jelly-roll fold and does not show the 'classical' nucleotide-binding domain. In the quaternary structure there is a complex interaction between the subunits that may be important in catalysis. This possibility is supported by the location of conserved elements in the sequence.
dUTP酶催化dUTP的水解,并维持细胞内低浓度的dUTP,从而使尿嘧啶不能掺入DNA。大肠杆菌的dUTP酶对其dUTP底物具有严格的特异性,其活性位点在核苷酸的糖部分以及嘧啶碱基方面具有区分能力。在此,我们报道了通过X射线晶体学以1.9埃的分辨率测定的大肠杆菌dUTP酶的三维结构。该酶是一个对称三聚体,在亚基中的152个氨基酸残基中,前136个在晶体结构中可见。三级结构类似于果冻卷折叠,并且未显示出“经典”的核苷酸结合结构域。在四级结构中,亚基之间存在复杂的相互作用,这可能在催化中起重要作用。序列中保守元件的位置支持了这种可能性。