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一种线粒体逆转录质粒通过一种涉及杂种cDNA合成和同源重组的新机制整合到线粒体DNA中。

A mitochondrial retroplasmid integrates into mitochondrial DNA by a novel mechanism involving the synthesis of a hybrid cDNA and homologous recombination.

作者信息

Chiang C C, Kennell J C, Wanner L A, Lambowitz A M

机构信息

Department of Molecular Genetics, Ohio State University, Columbus 43210-1292.

出版信息

Mol Cell Biol. 1994 Oct;14(10):6419-32. doi: 10.1128/mcb.14.10.6419-6432.1994.

Abstract

The Mauriceville and Varkud mitochondrial plasmids of Neurospora spp. are closely related, small circular DNAs that propagate via an RNA intermediate and reverse transcription. Although the plasmids ordinarily replicate autonomously, they can also integrate into mitochondrial DNA (mtDNA), yielding defective mtDNAs that in some cases cause senescence. To investigate the integration mechanism, we analyzed four cases in which the Varkud plasmid integrated into the mitochondrial small rRNA gene, three in wild-type subcultures and one in a senescent mutant. Our analysis suggests that the integrations occurred by the plasmid reverse transcriptase template switching between the plasmid transcript and internal sequences in the mitochondrial small rRNA to yield hybrid cDNAs that circularized and recombined homologously with the mtDNA. The integrated plasmid sequences are transcribed, presumably from the mitochondrial small rRNA promoters, resulting in hybrid RNAs containing the 5' segment of the mitochondrial small rRNA linked head-to-tail to the full-length plasmid transcript. Analysis of additional senescent mutants revealed three cases in which the plasmid used the same mechanism to integrate at other locations in the mtDNA. In these cases, circular variant plasmids that had incorporated a mitochondrial tRNA or tRNA-like sequence by template switching integrated by homologous recombination at the site of the corresponding tRNA or tRNA-like sequence in mtDNA. This simple integration mechanism involving template switching to generate a hybrid cDNA that integrates homologously could have been used by primitive retroelements prior to the acquisition of a specialized integration machinery.

摘要

粗糙脉孢菌属的莫里斯维尔和瓦尔库德线粒体质粒是密切相关的小型环状DNA,它们通过RNA中间体和逆转录进行复制。尽管这些质粒通常自主复制,但它们也可以整合到线粒体DNA(mtDNA)中,产生有缺陷的mtDNA,在某些情况下会导致衰老。为了研究整合机制,我们分析了4个瓦尔库德质粒整合到线粒体小rRNA基因中的案例,其中3个发生在野生型传代培养物中,1个发生在衰老突变体中。我们的分析表明,整合是通过质粒逆转录酶在质粒转录本和线粒体小rRNA的内部序列之间进行模板切换而发生的,从而产生杂交cDNA,这些杂交cDNA环化并与mtDNA进行同源重组。整合的质粒序列可能从线粒体小rRNA启动子转录,产生包含线粒体小rRNA 5' 区段的杂交RNA,该区段与全长质粒转录本首尾相连。对其他衰老突变体的分析揭示了3个案例,其中质粒利用相同机制整合到mtDNA的其他位置。在这些案例中,通过模板切换掺入线粒体tRNA或tRNA样序列的环状变异质粒通过同源重组整合到mtDNA中相应tRNA或tRNA样序列的位点。这种涉及模板切换以产生同源整合的杂交cDNA的简单整合机制可能在获得专门的整合机制之前就被原始逆转元件所使用。

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