Transcription of mitochondrial DNA.

H F Tabak, L A Grivell, P Borst
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引用次数: 21

Abstract

While mitochondrial DNA (mtDNA) is the simplest DNA in nature, coding for rRNAs and tRNAs, results of DNA sequence, and transcript analysis have demonstrated that both the synthesis and processing of mitochondrial RNAs involve remarkably intricate events. At one extreme, genes in animal mtDNAs are tightly packed, both DNA strands are completely transcribed (symmetric transcription), and the appearance of specific mRNAs is entirely dependent on processing at sites signalled by the sequences of the tRNAs, which abut virtually every gene. At the other extreme, gene organization in yeast (Saccharomyces) is anything but compact, with long stretches of AT-rich DNA interspaced between coding sequences and no obvious logic to the order of genes. Transcription is asymmetric and several RNAs are initiated de novo. Nevertheless, extensive RNA processing occurs due largely to the presence of split genes. RNA splicing is complex, is controlled by both mitochondrial and nuclear genes, and in some cases is accompanied by the formation of RNAs that behave as covalently closed circles. The present article reviews current knowledge of mitochondrial transcription and RNA processing in relation to possible mechanisms for the regulation of mitochondrial gene expression.

线粒体DNA的转录。
虽然线粒体DNA (mtDNA)是自然界中最简单的编码RNAs和tRNAs的DNA,但DNA序列和转录本分析的结果表明,线粒体rna的合成和加工都涉及非常复杂的事件。在一种极端情况下,动物mtdna中的基因是紧密堆积的,两条DNA链都是完全转录的(对称转录),特定mrna的出现完全依赖于trna序列所指示的位点的加工,几乎每个基因都是如此。在另一个极端,酵母(Saccharomyces)的基因组织一点也不紧凑,在编码序列之间有很长一段富含At的DNA,基因顺序没有明显的逻辑。转录是不对称的,一些rna是从头开始的。然而,广泛的RNA加工主要是由于分裂基因的存在而发生的。RNA剪接是复杂的,是由线粒体和核基因控制的,在某些情况下伴随着RNA的形成,这些RNA的行为是共价闭合的圆圈。本文综述了线粒体转录和RNA加工的最新知识,以及线粒体基因表达调控的可能机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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