Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, Nova Scotia, Canada.
J Mol Biol. 2011 Oct 14;413(1):66-83. doi: 10.1016/j.jmb.2011.08.037. Epub 2011 Aug 22.
In the protist Euglena gracilis, the cytosolic small subunit (SSU) rRNA is a single, covalently continuous species typical of most eukaryotes; in contrast, the large subunit (LSU) rRNA is naturally fragmented, comprising 14 separate RNA molecules instead of the bipartite (28S+5.8S) eukaryotic LSU rRNA typically seen. We present extensively revised secondary structure models of the E. gracilis SSU and LSU rRNAs and have mapped the positions of all of the modified nucleosides in these rRNAs (88 in SSU rRNA and 262 in LSU rRNA, with only 3 LSU rRNA modifications incompletely characterized). The relative proportions of ribose-methylated nucleosides and pseudouridine (∼60% and ∼35%, respectively) are closely similar in the two rRNAs; however, whereas the Euglena SSU rRNA has about the same absolute number of modifications as its human counterpart, the Euglena LSU rRNA has twice as many modifications as the corresponding human LSU rRNA. The increased levels of rRNA fragmentation and modification in E. gracilis LSU rRNA are correlated with a 3-fold increase in the level of mispairing in helical regions compared to the human LSU rRNA. In contrast, no comparable increase in mispairing is seen in helical regions of the SSU rRNA compared to its homologs in other eukaryotes. In view of the reported effects of both ribose-methylated nucleoside and pseudouridine residues on RNA structure, these correlations lead us to suggest that increased modification in the LSU rRNA may play a role in stabilizing a 'looser' structure promoted by elevated helical mispairing and a high degree of fragmentation.
在原生动物眼虫(Euglena gracilis)中,细胞质小亚基(SSU)rRNA 是一种单链、共价连续的物种,这是大多数真核生物的典型特征;相比之下,大亚基(LSU)rRNA 是自然断裂的,由 14 个单独的 RNA 分子组成,而不是通常看到的二部分(28S+5.8S)真核 LSU rRNA。我们提出了对眼虫 SSU 和 LSU rRNA 的广泛修订的二级结构模型,并对这些 rRNA 中的所有修饰核苷的位置进行了映射(SSU rRNA 中有 88 个,LSU rRNA 中有 262 个,只有 3 个 LSU rRNA 修饰未完全表征)。两种 rRNA 中核糖甲基化核苷和假尿嘧啶核苷(分别约为 60%和 35%)的相对比例非常相似;然而,虽然 Euglena SSU rRNA 的修饰数与人类相对应的 rRNA 大致相同,但 Euglena LSU rRNA 的修饰数是相应人类 LSU rRNA 的两倍。与人类 LSU rRNA 相比,眼虫 LSU rRNA 的 rRNA 断裂和修饰水平增加与螺旋区错配水平增加 3 倍相关。相比之下,与其他真核生物的 SSU rRNA 相比,在 SSU rRNA 的螺旋区没有看到可比的错配增加。鉴于核糖甲基化核苷和假尿嘧啶核苷残基对 RNA 结构的报道影响,这些相关性使我们推测 LSU rRNA 中的修饰增加可能在稳定由螺旋错配增加和高度断裂促进的“更宽松”结构中发挥作用。