Wellcome Trust Centre for Cell Biology, University of Edinburgh, Edinburgh, Scotland, UK.
EMBO J. 2010 Jun 16;29(12):2026-36. doi: 10.1038/emboj.2010.86. Epub 2010 May 7.
Understanding of eukaryotic ribosome synthesis has been slowed by a lack of structural data for the pre-ribosomal particles. We report rRNA-binding sites for six late-acting 40S ribosome synthesis factors, three of which cluster around the 3' end of the 18S rRNA in model 3D structures. Enp1 and Ltv1 were previously implicated in 'beak' structure formation during 40S maturation--and their binding sites indicate direct functions. The kinase Rio2, putative GTPase Tsr1 and dimethylase Dim1 bind sequences involved in tRNA interactions and mRNA decoding, indicating that their presence is incompatible with translation. The Dim1- and Tsr1-binding sites overlap with those of homologous Escherichia coli proteins, revealing conservation in assembly pathways. The primary binding sites for the 18S 3'-endonuclease Nob1 are distinct from its cleavage site and were unaltered by mutation of the catalytic PIN domain. Structure probing indicated that at steady state the cleavage site is likely unbound by Nob1 and flexible in the pre-rRNA. Nob1 binds before pre-rRNA cleavage, and we conclude that structural reorganization is needed to bring together the catalytic PIN domain and its target.
真核核糖体合成的理解受到缺乏前核糖体颗粒结构数据的阻碍。我们报告了六个晚期作用的 40S 核糖体合成因子的 rRNA 结合位点,其中三个聚集在 18S rRNA 的 3' 端,在模型 3D 结构中。Enp1 和 Ltv1 先前被牵连在 40S 成熟过程中的“喙”结构形成中——它们的结合位点表明了直接的功能。激酶 Rio2、假定的 GTPase Tsr1 和二甲基化酶 Dim1 结合与 tRNA 相互作用和 mRNA 解码相关的序列,表明它们的存在与翻译不相容。Dim1 和 Tsr1 结合位点与同源大肠杆菌蛋白的结合位点重叠,表明在组装途径中存在保守性。18S 3'-内切核酸酶 Nob1 的主要结合位点与其切割位点不同,并且其催化 PIN 结构域的突变并未改变。结构探测表明,在稳定状态下,切割位点可能未被 Nob1 结合并且在 pre-rRNA 中具有柔性。Nob1 在 pre-rRNA 切割之前结合,我们得出结论,需要进行结构重排以将催化 PIN 结构域与其靶标结合在一起。