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线粒体前核糖体 RNA 插入的 II 组内含子谱系中 5' 端核苷酸的反复插入和分支点模体的缺失。

Recurrent insertion of 5'-terminal nucleotides and loss of the branchpoint motif in lineages of group II introns inserted in mitochondrial preribosomal RNAs.

机构信息

Centre de Génétique Moléculaire du C.N.R.S., 91190 Gif-sur-Yvette, France.

出版信息

RNA. 2011 Jul;17(7):1321-35. doi: 10.1261/rna.2655911. Epub 2011 May 25.

Abstract

A survey of sequence databases revealed 10 instances of subgroup IIB1 mitochondrial ribosomal introns with 1 to 33 additional nucleotides inserted between the 5' exon and the consensus sequence at the intron 5' end. These 10 introns depart further from the IIB1 consensus in their predicted domain VI structure: In contrast to its basal helix and distal GNRA terminal loop, the middle part of domain VI is highly variable and lacks the bulging A that serves as the branchpoint in lariat formation. In vitro experiments using two closely related IIB1 members inserted at the same ribosomal RNA site in the basidiomycete fungi Grifola frondosa and Pycnoporellus fulgens revealed that both ribozymes are capable of efficient self-splicing. However, whereas the Grifola intron was excised predominantly as a lariat, the Pycnoporellus intron, which possesses six additional nucleotides at the 5' end, yielded only linear products, consistent with its predicted domain VI structure. Strikingly, all of the introns with 5' terminal insertions lack the EBS2 exon-binding site. Moreover, several of them are part of the small subset of group II introns that encode potentially functional homing endonucleases of the LAGLIDADG family rather than reverse transcriptases. Such coincidences suggest causal relationships between the shift to DNA-based mobility, the loss of one of the two ribozyme sites for binding the 5' exon, and the exclusive use of hydrolysis to initiate splicing.

摘要

一项序列数据库调查显示,有 10 个亚组 IIB1 线粒体核糖体内含子,在 5' 外显子和内含子 5' 端保守序列之间插入了 1 到 33 个额外的核苷酸。这 10 个内含子在其预测的结构域 VI 中与 IIB1 共识序列进一步偏离:与基本螺旋和远端 GNRA 末端环相反,结构域 VI 的中间部分高度可变,并且缺乏作为套索形成分支点的凸起 A。使用两个密切相关的 IIB1 成员在担子菌真菌灰树花和多孔菌的核糖体 RNA 位点插入相同的实验表明,这两种核酶都能够有效地自我剪接。然而,虽然灰树花内含子主要以套索形式切除,但具有 5' 端 6 个额外核苷酸的多孔菌内含子仅产生线性产物,与其预测的结构域 VI 结构一致。引人注目的是,所有具有 5' 末端插入的内含子都缺乏 EBS2 外显子结合位点。此外,其中一些是小组 II 内含子的一小部分,它们编码潜在功能的 LAGLIDADG 家族的归巢内切核酸酶,而不是逆转录酶。这些巧合表明,向基于 DNA 的迁移、失去两个结合 5' 外显子的核酶位点之一,以及仅使用水解来启动剪接之间存在因果关系。

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