García-Nafría Javier, Timm Jennifer, Harrison Charlotte, Turkenburg Johan P, Wilson Keith S
Structural Biology Laboratory, Department of Chemistry, University of York, Heslington, York YO10 5DD, England.
Acta Crystallogr D Biol Crystallogr. 2013 Aug;69(Pt 8):1367-80. doi: 10.1107/S090744491300735X. Epub 2013 Jul 13.
Homotrimeric dUTPases contain three active sites, each formed by five conserved sequence motifs originating from all three subunits. The essential fifth motif lies in a flexible C-terminal arm which becomes ordered during catalysis and is disordered in most crystal structures. Previously, it has been shown that the two Bacillus subtilis dUTPases, YncF and YosS, differ from their orthologues in the position in the sequence of the essential Phe-lid residue, which stacks against the uracil base, and in the conformation of the general base aspartate, which points away from the active site. Here, three structures of the complex of YncF with dU-PPi-Mg(2+) and the structure of YosS complexed with dUMP are reported. dU-PPi-Mg(2+) triggers the ordering of both the C-terminal arm and a loop (residues 18-26) which is uniquely disordered in the Bacillus dUTPases. The dUMP complex suggests two stages in substrate release. Limited proteolysis experiments allowed those complexes in which C-terminal cleavage is hindered and those in which it can be assumed to be ordered to be identified. The results lead to the suggestion that dUpNHpp is not a perfect substrate mimic, at least for the B. subtilis enzymes, and provide new insights into the mechanism of these two dUTPases in comparison to their orthologues. The enzyme mechanism is reviewed using the present and previous crystal structures as snapshots along the reaction coordinate.
同源三聚体dUTP酶含有三个活性位点,每个活性位点由源自所有三个亚基的五个保守序列基序形成。关键的第五个基序位于一个柔性的C末端臂中,该臂在催化过程中变得有序,而在大多数晶体结构中是无序的。此前已经表明,两种枯草芽孢杆菌dUTP酶YncF和YosS与其直系同源物在关键的苯丙氨酸-盖子残基(堆积在尿嘧啶碱基上)的序列位置以及远离活性位点的通用碱基天冬氨酸的构象上有所不同。在此,报道了YncF与dU-PPi-Mg(2+)复合物的三种结构以及YosS与dUMP复合物的结构。dU-PPi-Mg(2+)触发了C末端臂和一个环(残基18-26)的有序化,该环在枯草芽孢杆菌dUTP酶中是唯一无序的。dUMP复合物表明底物释放有两个阶段。有限蛋白酶解实验使得能够鉴定出C末端切割受阻的复合物以及可以假定其有序的复合物。结果表明,dUpNHpp至少对于枯草芽孢杆菌的酶来说不是一个完美的底物模拟物,并与它们的直系同源物相比,为这两种dUTP酶的机制提供了新的见解。利用当前和先前的晶体结构作为反应坐标上的快照对酶机制进行了综述。