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The Reverse Transcriptase/RNA Maturase Protein MatR Is Required for the Splicing of Various Group II Introns in Brassicaceae Mitochondria

机译:十字花科线粒体中的各种第二组内含子的剪接需要逆转录酶/ RNA成熟酶蛋白MatR。

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摘要

Group II introns are large catalytic RNAs that are ancestrally related to nuclear spliceosomal introns. Sequences corresponding to group II RNAs are found in many prokaryotes and are particularly prevalent within plants organellar genomes. Proteins encoded within the introns themselves (maturases) facilitate the splicing of their own host pre-RNAs. Mitochondrial introns in plants have diverged considerably in sequence and have lost their maturases. In angiosperms, only a single maturase has been retained in the mitochondrial DNA: the matR gene found within NADH dehydrogenase 1 (nad1) intron 4. Its conservation across land plants and RNA editing events, which restore conserved amino acids, indicates that matR encodes a functional protein. However, the biological role of MatR remains unclear. Here, we performed an in vivo investigation of the roles of MatR in Brassicaceae. Directed knockdown of matR expression via synthetically designed ribozymes altered the processing of various introns, including nad1 i4. Pull-down experiments further indicated that MatR is associated with nad1 i4 and several other intron-containing pre-mRNAs. MatR may thus represent an intermediate link in the gradual evolutionary transition from the intron-specific maturases in bacteria into their versatile spliceosomal descendants in the nucleus. The similarity between maturases and the core spliceosomal Prp8 protein further supports this intriguing theory.
机译:II类内含子是与核剪接内含子祖先相关的大型催化RNA。在许多原核生物中发现了对应于II组RNA的序列,这些序列在植物细胞基因组中尤为普遍。内含子自身编码的蛋白质(成熟酶)促进其自身宿主前RNA的剪接。植物中的线粒体内含子在序列上有很大差异,并失去了成熟度。在被子植物中,线粒体DNA中仅保留了一个成熟酶:NADH脱氢酶1(nad1)内含子4中的matR基因。其在陆地植物中的保守性和RNA编辑事件(恢复了保守的氨基酸)表明,matR编码一个功能蛋白。但是,MatR的生物学作用仍不清楚。在这里,我们进行了体内研究MatR在十字花科中的作用。通过合成设计的核酶直接敲低matR表达,改变了包括nad1 i4在内的各种内含子的加工过程。下拉实验进一步表明MatR与nad1 i4和其他几个含内含子的pre-mRNA相关。因此,MatR可能代表了从细菌中内含子特异性成熟酶到细胞核中多种剪接体后代的逐步进化过渡中的中间环节。成熟酶和核心剪接体Prp8蛋白之间的相似性进一步支持了这一有趣的理论。

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    《The Plant Cell》 |2016年第11期|共25页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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