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R-loop-dependent rolling-circle replication and a new model for DNA concatemer resolution by mitochondrial plasmid mp1

机译:R环依赖滚环复制和线粒体质粒mp1解析DNA串联体的新模型

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摘要

The mitochondrial (mt) plasmid mp1 of Chenopodium album replicates by a rolling-circle (RC) mechanism initiated at two double-stranded replication origins (dso1 and dso2). Two-dimensional gel electrophoresis and electron microscopy of early mp1 replication intermediates revealed novel spots. Ribonucleotide (R)-loops were identified at dso1, which function as a precursor for the RCs in vivo and in vitro. Bacteriophage T4-like networks of highly branched mp1 concatemers with up to 20 monomer units were mapped and shown to be mainly formed by replicating, invading, recombining and resolving molecules. A new model is proposed in which concatemers were separated into single units by a ‘snap-back’ mechanism and homologous recombination. dso1 is a recombination hotspot, with sequence homology to bacterial Xer recombination cores. mp1 is a unique eukaryotic plasmid that expresses features of phages like T4 and could serve as a model system for replication and maintenance of DNA concatemers.
机译:藜的线粒体(mt)质粒mp1通过在两个双链复制起点(dso1和dso2)启动的滚环(RC)机制复制。早期mp1复制中间体的二维凝胶电泳和电子显微镜显示了新的斑点。在dso1处鉴定了核糖核苷酸(R)环,其在体内和体外均作为RC的前体。绘制了具有多达20个单体单元的高度分支mp1连锁细菌的噬菌体T4样网络,并显示其主要通过复制,侵入,重组和分解分子形成。提出了一种新模型,其中通过“捕捉”机制和同源重组将连接体分成单个单元。 dso1是重组热点,与细菌Xer重组核心具有序列同源性。 mp1是一种独特的真核质粒,可表达噬菌体(如T4)的特征,并可作为复制和维持DNA串联体的模型系统。

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