Department of Molecular Biology and Functional Genomics, Stockholm University SE-106 91, Stockholm, Sweden.
Nucleic Acids Res. 2013 Jan;41(2):1178-90. doi: 10.1093/nar/gks1129. Epub 2012 Nov 27.
Ribosomal subunit biogenesis in eukaryotes is a complex multistep process. Mrd1 is an essential and conserved small (40S) ribosomal subunit synthesis factor that is required for early cleavages in the 35S pre-ribosomal RNA (rRNA). Yeast Mrd1 contains five RNA-binding domains (RBDs), all of which are necessary for optimal function of the protein. Proteomic data showed that Mrd1 is part of the early pre-ribosomal complexes, and deletion of individual RBDs perturbs the pre-ribosomal structure. In vivo ultraviolet cross-linking showed that Mrd1 binds to the pre-rRNA at two sites within the 18S region, in helix 27 (h27) and helix 28. The major binding site lies in h27, and mutational analyses shows that this interaction requires the RBD1-3 region of Mrd1. RBD2 plays the dominant role in h27 binding, but other RBDs also contribute directly. h27 and helix 28 are located close to the sequences that form the central pseudoknot, a key structural feature of the mature 40S subunit. We speculate that the modular structure of Mrd1 coordinates pseudoknot formation with pre-rRNA processing and subunit assembly.
真核生物核糖体亚基生物发生是一个复杂的多步骤过程。Mrd1 是一种必需且保守的小(40S)核糖体亚基合成因子,它是 35S 前核糖体 RNA(rRNA)早期切割所必需的。酵母 Mrd1 包含五个 RNA 结合结构域(RBD),所有这些结构域对于蛋白质的最佳功能都是必需的。蛋白质组学数据表明,Mrd1 是早期前核糖体复合物的一部分,并且单个 RBD 的缺失会扰乱前核糖体结构。体内紫外线交联实验表明,Mrd1 在 18S 区域内的两个位点与 pre-rRNA 结合,分别位于 helix 27(h27)和 helix 28。主要结合位点位于 h27 上,突变分析表明这种相互作用需要 Mrd1 的 RBD1-3 区域。RBD2 在 h27 结合中起主导作用,但其他 RBD 也直接起作用。h27 和 helix 28 位于靠近形成中央假结的序列附近,假结是成熟 40S 亚基的关键结构特征。我们推测,Mrd1 的模块化结构与 pre-rRNA 加工和亚基组装协调假结形成。