RNA. 2013 Dec;19(12):1639-47. doi: 10.1261/rna.041194.113. Epub 2013 Oct 15.
Eukaryotic ribosome assembly requires over 200 assembly factors that facilitate rRNA folding, ribosomal protein binding, and pre-rRNA processing. One such factor is Rlp7, an essential RNA binding protein required for consecutive pre-rRNA processing steps for assembly of yeast 60S ribosomal subunits: exonucleolytic processing of 27SA3 pre-rRNA to generate the 5' end of 5.8S rRNA and endonucleolytic cleavage of the 27SB pre-rRNA to initiate removal of internal transcribed spacer 2 (ITS2). To better understand the functions of Rlp7 in 27S pre-rRNA processing steps, we identified where it crosslinks to pre-rRNA. We found that Rlp7 binds at the junction of ITS2 and the ITS2-proximal stem, between the 3' end of 5.8S rRNA and the 5' end of 25S rRNA. Consistent with Rlp7 binding to this neighborhood during assembly, two-hybrid and affinity copurification assays showed that Rlp7 interacts with other assembly factors that bind to or near ITS2 and the proximal stem. We used in vivo RNA structure probing to demonstrate that the proximal stem forms prior to Rlp7 binding and that Rlp7 binding induces RNA conformational changes in ITS2 that may chaperone rRNA folding and regulate 27S pre-rRNA processing. Our findings contradict the hypothesis that Rlp7 functions as a placeholder for ribosomal protein L7, from which Rlp7 is thought to have evolved in yeast. The binding site of Rlp7 is within eukaryotic-specific RNA elements, which are not found in bacteria. Thus, we propose that Rlp7 coevolved with these RNA elements to facilitate eukaryotic-specific functions in ribosome assembly and pre-rRNA processing.
真核生物核糖体组装需要 200 多种组装因子,这些因子有助于 rRNA 折叠、核糖体蛋白结合和 pre-rRNA 加工。Rlp7 就是这样一种因子,它是一种必需的 RNA 结合蛋白,对于酵母 60S 核糖体亚基的连续 pre-rRNA 加工步骤是必需的:27SA3 pre-rRNA 的外切核酸酶加工生成 5.8S rRNA 的 5'端和 27SB pre-rRNA 的内切核酸酶切割以启动内部转录间隔区 2(ITS2)的去除。为了更好地理解 Rlp7 在 27S pre-rRNA 加工步骤中的功能,我们确定了它与 pre-rRNA 结合的位置。我们发现 Rlp7 结合在 ITS2 和 ITS2 近端茎之间的连接处,在 5.8S rRNA 的 3'端和 25S rRNA 的 5'端之间。与 Rlp7 在组装过程中结合到这个区域一致,双杂交和亲和共纯化实验表明,Rlp7 与结合到 ITS2 和近端茎或附近的其他组装因子相互作用。我们使用体内 RNA 结构探测来证明近端茎在 Rlp7 结合之前形成,并且 Rlp7 结合诱导 ITS2 中的 RNA 构象变化,这可能有助于 rRNA 折叠并调节 27S pre-rRNA 加工。我们的发现与 Rlp7 作为核糖体蛋白 L7 的占位符的假设相矛盾,据认为 Rlp7 是从酵母中的 L7 进化而来的。Rlp7 的结合位点位于真核生物特有的 RNA 元件内,而这些元件在细菌中不存在。因此,我们提出 Rlp7 与这些 RNA 元件共同进化,以促进核糖体组装和 pre-rRNA 加工中的真核生物特有的功能。