Pan Hu, Ho Joseph D, Stroud Robert M, Finer-Moore Janet
Department of Biochemistry and Biophysics, University of California at San Francisco, San Francisco, CA 94143, USA.
J Mol Biol. 2007 Apr 13;367(5):1459-70. doi: 10.1016/j.jmb.2007.01.084. Epub 2007 Feb 7.
Pseudouridine synthase RluE modifies U2457 in a stem of 23 S RNA in Escherichia coli. This modification is located in the peptidyl transferase center of the ribosome. We determined the crystal structures of the C-terminal, catalytic domain of E. coli RluE at 1.2 A resolution and of full-length RluE at 1.6 A resolution. The crystals of the full-length enzyme contain two molecules in the asymmetric unit and in both molecules the N-terminal domain is disordered. The protein has an active site cleft, conserved in all other pseudouridine synthases, that contains invariant Asp and Tyr residues implicated in catalysis. An electropositive surface patch that covers the active site cleft is just wide enough to accommodate an RNA stem. The RNA substrate stem can be docked to this surface such that the catalytic Asp is adjacent to the target base, and a conserved Arg is positioned to help flip the target base out of the stem into the enzyme active site. A flexible RluE specific loop lies close to the conserved region of the stem in the model, and may contribute to substrate specificity. The stem alone is not a good RluE substrate, suggesting RluE makes additional interactions with other regions in the ribosome.
假尿苷合酶RluE可修饰大肠杆菌23S RNA茎环结构中的U2457。这种修饰位于核糖体的肽基转移酶中心。我们分别以1.2埃和1.6埃的分辨率测定了大肠杆菌RluE C端催化结构域和全长RluE的晶体结构。全长酶的晶体在不对称单元中含有两个分子,且两个分子中的N端结构域均无序。该蛋白具有一个在所有其他假尿苷合酶中都保守的活性位点裂隙,其中包含与催化作用相关的不变天冬氨酸和酪氨酸残基。覆盖活性位点裂隙的正电表面斑块宽度刚好足以容纳一个RNA茎环。RNA底物茎环可对接至该表面,使得催化性天冬氨酸与靶碱基相邻,且一个保守的精氨酸定位在有助于将靶碱基从茎环中翻转至酶活性位点的位置。在模型中,一个灵活的RluE特异性环靠近茎环的保守区域,可能有助于底物特异性。单独的茎环不是RluE的良好底物,这表明RluE与核糖体中的其他区域存在额外的相互作用。