Lundkvist Pär, Jupiter Sara, Segerstolpe Asa, Osheim Yvonne N, Beyer Ann L, Wieslander Lars
Department of Molecular Biology and Functional Genomics, Stockholm University, SE-106 91 Stockholm, Sweden.
Mol Cell Biol. 2009 Nov;29(21):5763-74. doi: 10.1128/MCB.00428-09. Epub 2009 Aug 24.
In eukaryotes, ribosomes are made from precursor rRNA (pre-rRNA) and ribosomal proteins in a maturation process that requires a large number of snoRNPs and processing factors. A fundamental problem is how the coordinated and productive folding of the pre-rRNA and assembly of successive pre-rRNA-protein complexes is achieved cotranscriptionally. The conserved protein Mrd1p, which contains five RNA binding domains (RBDs), is essential for processing events leading to small ribosomal subunit synthesis. We show that full function of Mrd1p requires all five RBDs and that the RBDs are functionally distinct and needed during different steps in processing. Mrd1p mutations trap U3 snoRNA in pre-rRNP complexes both in base-paired and non-base-paired interactions. A single essential RBD, RBD5, is involved in both types of interactions, but its conserved RNP1 motif is not needed for releasing the base-paired interactions. RBD5 is also required for the late pre-rRNP compaction preceding A(2) cleavage. Our results suggest that Mrd1p modulates successive conformational rearrangements within the pre-rRNP that influence snoRNA-pre-rRNA contacts and couple U3 snoRNA-pre-rRNA remodeling and late steps in pre-rRNP compaction that are essential for cleavage at A(0) to A(2). Mrd1p therefore coordinates key events in biosynthesis of small ribosome subunits.
在真核生物中,核糖体是在一个需要大量小核仁核糖核蛋白(snoRNP)和加工因子的成熟过程中,由前体rRNA(pre-rRNA)和核糖体蛋白形成的。一个基本问题是,pre-rRNA的协同且高效折叠以及连续的pre-rRNA-蛋白质复合物的组装是如何在转录过程中实现的。保守蛋白Mrd1p含有五个RNA结合结构域(RBD),对于导致小核糖体亚基合成的加工事件至关重要。我们发现,Mrd1p的完整功能需要所有五个RBD,并且这些RBD在功能上是不同的,在加工的不同步骤中发挥作用。Mrd1p突变在碱基配对和非碱基配对相互作用中,将U3 snoRNA捕获在pre-rRNP复合物中。单个必需的RBD,即RBD5,参与这两种相互作用类型,但其保守的RNP1基序对于释放碱基配对相互作用并非必需。RBD5对于A(2)切割之前的pre-rRNP后期压实也是必需的。我们的结果表明,Mrd1p调节pre-rRNP内连续的构象重排,这些重排影响snoRNA-pre-rRNA接触,并将U3 snoRNA-pre-rRNA重塑与pre-rRNP压实的后期步骤相耦合,而这些后期步骤对于在A(0)至A(2)处的切割至关重要。因此,Mrd1p协调小核糖体亚基生物合成中的关键事件。