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小麦线粒体中nad7内含子结构域的RNA编辑状态

RNA editing status of nad7 intron domains in wheat mitochondria.

作者信息

Carrillo C, Bonen L

机构信息

Biology Department, University of Ottawa, 30 Marie Curie, Ottawa K1N 6N5, Canada.

出版信息

Nucleic Acids Res. 1997 Jan 15;25(2):403-9. doi: 10.1093/nar/25.2.403.

Abstract

The most highly conserved structures of group II introns are the helical domains V and VI near the 3'splice site. Within this region of each of the four introns in the wheat mitochondrial nad7 gene encoding NADH dehydrogenase subunit 7, there are A-C mispairs. To determine whether C-to-U type RNA editing restores conventional A-U pairing, we sequenced RT-PCR products from partially-spliced nad7 template RNA and gel-fractionated, excised intron RNA. We examined transcripts from germinating wheat embryos and seedlings because these two stages of development show pronounced differences in steady state levels of nad7 intronic RNAs. We observed editing at only two of the six predicted sites, and they were located at homologous positions within domain V of the third and fourth introns. A third site was found to be edited within the unmodelled domain VI loop of the fourth intron. Similar patterns of RNA editing were seen in wheat embryos and seedlings. These observations, and the presence of other non-conventional base pairs particularly within domain V of plant mitochondrial introns, indicate weaker helical core structure than in ribozymic group II introns. Moreover, the incompleteness or absence of editing in wheat nad7 excised intron RNA suggests that, although editing may contribute to splicing efficiency, it is not essential for splicing.

摘要

II类内含子中保守性最高的结构是靠近3'剪接位点的螺旋结构域V和VI。在小麦线粒体中编码NADH脱氢酶亚基7的nad7基因的四个内含子的每个内含子的这个区域内,都存在A-C错配。为了确定C到U型RNA编辑是否能恢复传统的A-U配对,我们对来自部分剪接的nad7模板RNA的RT-PCR产物以及凝胶分级分离、切除的内含子RNA进行了测序。我们检查了萌发的小麦胚和幼苗的转录本,因为这两个发育阶段在nad7内含子RNA的稳态水平上表现出明显差异。我们仅在六个预测位点中的两个位点观察到编辑,并且它们位于第三和第四内含子的结构域V内的同源位置。在第四内含子的未建模的结构域VI环内发现了第三个编辑位点。在小麦胚和幼苗中观察到了类似的RNA编辑模式。这些观察结果,以及特别是在植物线粒体内含子的结构域V内存在其他非传统碱基对,表明其螺旋核心结构比核酶II类内含子中的弱。此外,小麦nad7切除的内含子RNA中编辑不完全或不存在表明,尽管编辑可能有助于剪接效率,但它对于剪接不是必需的。

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