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Cooperative working of bacterial chromosome replication proteins generated by a reconstituted protein expression system

机译:重组蛋白表达系统产生的细菌染色体复制蛋白的协同作用

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Replication of all living cells relies on the multirounds flow of the central dogma. Especially, expression of DNA replication proteins is a key step to circulate the processes of the central dogma. Here we achieved the entire sequential transcription-translation-replication process by autonomous expression of chromosomal DNA replication machineries from a reconstituted transcription-translation system (PURE system). We found that low temperature is essential to express a complex protein, DNA polymerase III, in a single tube using the PURE system. Addition of the 13 genes, encoding initiator, DNA helicase, helicase loader, RNA primase and DNA polymerase III to the PURE system gave rise to a DNA replication system by a coupling manner. An artificial genetic circuit demonstrated that the DNA produced as a result of the replication is able to provide genetic information for proteins, indicating the in vitro central dogma can sequentially undergo two rounds.
机译:所有活细胞的复制都依赖中央教条的多轮流动。特别地,DNA复制蛋白的表达是循环中央教条过程的关键步骤。在这里,我们通过从重组的转录-翻译系统(PURE系统)自主表达染色体DNA复制机器来实现整个顺序转录-翻译-复制过程。我们发现,低温对于使用PURE系统在单个试管中表达复杂的蛋白质DNA聚合酶III是必不可少的。在PURE系统中添加了编码启动子,DNA解旋酶,解旋酶装载器,RNA引发酶和DNA聚合酶III的13个基因,通过偶联的方式形成了DNA复制系统。人工遗传电路证明,复制产生的DNA能够提供蛋白质的遗传信息,表明体外中央教条可以依次经历两轮。

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