首页> 外文期刊>Nucleic Acids Research >Evolutionarily conserved structural features in the ITS2 of mammalian pre-rRNAs and potential interactions with the snoRNA U8 detected by comparative analysis of new mouse sequences.
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Evolutionarily conserved structural features in the ITS2 of mammalian pre-rRNAs and potential interactions with the snoRNA U8 detected by comparative analysis of new mouse sequences.

机译:哺乳动物pre-rRNA的ITS2中的进化保守结构特征以及与snoRNA U8的潜在相互作用(通过对新小鼠序列的比较分析进行检测)。

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Mechanisms of ITS2 excision from pre-rRNA remain largely elusive. In mammals, at least two endonucleolytic cleavages are involved, which result in the transient accumulation of precursors to 5.8S rRNA termed 8S and 12S RNAs. We have sequenced ITS2 in four new species of the Mus genus and investigated its secondary structure using thermodynamic prediction and comparative approach. Phylogenetic evidence supports an ITS2 folding organized in four domains of secondary structure extending from a preserved structural core. This folding is also largely conserved for the previously available mammalian ITS2 sequences, rat and human, despite their extensive sequence divergence relative to the Mus species. Conserved structural features include the structural core, containing the 3' end of 8S pre-rRNA within a single-stranded sequence, and a stem containing the 3' end of the 12S pre-rRNA species. A putative, phylogenetically preserved pseudoknot has been detected 1 nt downstream from the 12S 3' end. Two long complementarities have also been identified, in sequences conserved among vertebrates, between the pre-rRNA 32S and the snoRNA (small nucleolar RNA) U8 which is required for the excision of Xenopus ITS2. The first complementarity involves the 5.8S-ITS2 junction and 13 nt at the 5' end of U8, whereas the other one occurs between a mature 28S rRNA segment known to be required for ITS2 excision and positions 15-25 of snoRNA U8. These two potential interactions, in combination with ITS2 folding, could organize a functional pocket containing three cleavage sites and key elements for pre-rRNA processing, suggesting a chaperone role for the snoRNA U8.
机译:从前rRNA切除ITS2的机制仍然很难捉摸。在哺乳动物中,至少涉及两次内切核酸酶裂解,这导致称为8S和12S RNA的5.8S rRNA的前体瞬时积累。我们已经在Mus属的四个新物种中对ITS2进行了测序,并使用热力学预测和比较方法研究了其二级结构。系统发育学证据支持在保留结构核心延伸的二级结构的四个结构域中组织的ITS2折叠。尽管相对于Mus物种而言,它们的序列差异很大,但对于先前可获得的哺乳动物ITS2序列(大鼠和人),这种折叠也基本上得到了保留。保守的结构特征包括在单链序列中包含8S pre-rRNA 3'末端的结构核心,以及在12S pre-rRNA物种中包含3'末端的茎。在12S 3'端下游1 nt处检测到推定的,系统发育上保留的假结。在脊椎动物之间保守的序列中,在切除非洲爪蟾ITS2所需的pre-rRNA 32S和snoRNA(小核仁RNA)U8之间还发现了两个长的互补性。第一个互补关系涉及5.8S-ITS2连接和U8的5'端的13 nt,而另一个互补发生在ITS2切除所需的成熟28S rRNA片段与snoRNA U8的15-25位之间。这两个潜在的相互作用与ITS2折叠相结合,可以组织一个功能性口袋,其中包含三个切割位点和pre-rRNA加工的关键元件,暗示snoRNA U8的分子伴侣作用。

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