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In vitro reconstitution of DNA replication initiated by genetic recombination: a T4 bacteriophage model for a type of DNA synthesis important for all cells

机译:通过遗传重组引发的DNA复制的体外重建:一种对所有细胞的DNA合成类型的T4噬菌体模型

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摘要

Using a mixture of 10 purified DNA replication and DNA recombination proteins encoded by the bacteriophage T4 genome, plus two homologous DNA molecules, we have reconstituted the genetic recombination-initiated pathway that initiates DNA replication forks at late times of T4 bacteriophage infection. Inside the cell, this recombination-dependent replication (RDR) is needed to produce the long concatemeric T4 DNA molecules that serve as substrates for packaging the shorter, genome-sized viral DNA into phage heads. The five T4 proteins that catalyze DNA synthesis on the leading strand, plus the proteins required for lagging-strand DNA synthesis, are essential for the reaction, as are a special mediator protein (gp59) and a Rad51/ RecA analogue (the T4 UvsX strand-exchange protein). Related forms of RDR are widespread in living organisms-for example, they play critical roles in the homologous recombination events that can restore broken ends of the DNA double helix, restart broken DNA replication forks, and cross over chromatids during meiosis in eukaryotes. Those processes are considerably more complex, and the results presented here should be informative for dissecting their detailed mechanisms.
机译:使用10种纯化的DNA复制和由噬菌体T4基因组编码的DNA重组蛋白的混合物加上两个同源DNA分子,我们重组了在T4噬菌体感染的后期启动DNA复制痕迹的遗传重组引发途径。在细胞内,需要该重组依赖性复制(RDR)来生产用于将较短的基因组大小的病毒DNA包装成噬菌体头的底物的长加管型T4 DNA分子。催化在前导股线上的DNA合成的五个T4蛋白,加上滞后链DNA合成所需的蛋白质对反应是必不可少的,也是特殊的介质蛋白(GP59)和RAD51 / RECA类似物(T4 UVSX股-exchange蛋白质)。相关形式的RDR在生物体中普遍存在 - 例如,它们在可以恢复DNA双螺旋断裂末端的同源重组事件中发挥着关键作用,重新开始破裂的DNA复制叉,并在真核生物中减少染色体。这些过程比较复杂,此处呈现的结果应该是对解剖其详细机制的信息。

著录项

  • 来源
    《Molecular biology of the cell》 |2019年第1期|共14页
  • 作者单位

    Univ Calif San Francisco Dept Biochem &

    Biophys San Francisco CA 94158 USA;

    Univ Calif San Francisco Dept Biochem &

    Biophys San Francisco CA 94158 USA;

    Univ Calif San Francisco Dept Biochem &

    Biophys San Francisco CA 94158 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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