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Structure–Function Analysis Reveals the Singularity of Plant Mitochondrial DNA Replication Components: A Mosaic and Redundant System

机译:结构功能分析揭示了植物线粒体DNA复制组件的奇异性:马赛克和冗余系统。

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摘要

Plants are sessile organisms, and their DNA is particularly exposed to damaging agents. The integrity of plant mitochondrial and plastid genomes is necessary for cell survival. During evolution, plants have evolved mechanisms to replicate their mitochondrial genomes while minimizing the effects of DNA damaging agents. The recombinogenic character of plant mitochondrial DNA, absence of defined origins of replication, and its linear structure suggest that mitochondrial DNA replication is achieved by a recombination-dependent replication mechanism. Here, I review the mitochondrial proteins possibly involved in mitochondrial DNA replication from a structural point of view. A revision of these proteins supports the idea that mitochondrial DNA replication could be replicated by several processes. The analysis indicates that DNA replication in plant mitochondria could be achieved by a recombination-dependent replication mechanism, but also by a replisome in which primers are synthesized by three different enzymes: Mitochondrial RNA polymerase, Primase-Helicase, and Primase-Polymerase. The recombination-dependent replication model and primers synthesized by the Primase-Polymerase may be responsible for the presence of genomic rearrangements in plant mitochondria.
机译:植物是固着生物,其DNA特别暴露于有害物质。植物线粒体和质体基因组的完整性对于细胞存活是必需的。在进化过程中,植物已经进化出复制线粒体基因组的机制,同时将DNA破坏剂的影响降至最低。植物线粒体DNA的重组发生特性,没有明确的复制起点,其线性结构表明线粒体DNA的复制是通过依赖重组的复制机制实现的。在这里,我从结构的角度回顾了可能与线粒体DNA复制有关的线粒体蛋白。这些蛋白质的修订版支持线粒体DNA复制可以通过多种过程复制的想法。分析表明,植物线粒体中的DNA复制可以通过依赖重组的复制机制实现,也可以通过其中通过三种不同的酶(线粒体RNA聚合酶,Primase-Helicase和Primase-Polymerase)合成引物的复制体实现。重组依赖性复制模型和由Primase-Polymerase合成的引物可能负责植物线粒体中基因组重排的存在。

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