微rna复制子在大肠杆菌中的构建。

IF 2.6 Q2 BIOCHEMICAL RESEARCH METHODS
Akiko Kashiwagi, Tetsuya Yomo
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引用次数: 0

摘要

核糖核酸(RNA)世界如何过渡到脱氧核糖核酸(DNA)世界在进化生物学中一直存在争议。在从RNA世界向DNA世界过渡的某个时间点上,可以假设“RNA复制子”(RNA产生蛋白质来复制它们的编码RNA)和“DNA复制子”(DNA产生RNA来合成蛋白质来复制它们的编码DNA)是共存的。RNA复制子和DNA复制子的共存状态是确定DNA世界如何超越RNA世界的实验方法所需要的。我们在大肠杆菌中构建了一个mini-RNA复制子。该迷你RNA复制子编码β亚基,β亚基是源自正义单链Qβ RNA噬菌体的Qβ复制酶的一个亚基,并在大肠杆菌中被复制酶复制。为了在大肠杆菌细胞中持续维持mini-RNA复制子,我们采用了一种依赖于Qβ复制酶的LacZ α互补系统,允许携带RNA复制子的细胞在乳糖培养基中选择性生长。依次合成了迷你rna复制子和DNA复制子(大肠杆菌基因组)共存的状态。共存状态可以作为一个起始系统,实验证明从rna -蛋白质世界到DNA世界的过渡,这将有助于生命起源研究领域的进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Construction of a mini-RNA replicon in <i>Escherichia coli</i>.

Construction of a mini-RNA replicon in <i>Escherichia coli</i>.

Construction of a mini-RNA replicon in <i>Escherichia coli</i>.

Construction of a mini-RNA replicon in Escherichia coli.

How the ribonucleic acid (RNA) world transited to the deoxyribonucleic acid (DNA) world has remained controversial in evolutionary biology. At a certain time point in the transition from the RNA world to the DNA world, 'RNA replicons', in which RNAs produce proteins to replicate their coding RNA, and 'DNA replicons', in which DNAs produce RNA to synthesize proteins that replicate their coding DNA, can be assumed to coexist. The coexistent state of RNA replicons and DNA replicons is desired for experimental approaches to determine how the DNA world overtook the RNA world. We constructed a mini-RNA replicon in Escherichia coli. This mini-RNA replicon encoded the β subunit, one of the subunits of the Qβ replicase derived from the positive-sense single-stranded Qβ RNA phage and is replicated by the replicase in E. coli. To maintain the mini-RNA replicon persistently in E. coli cells, we employed a system of α complementation of LacZ that was dependent on the Qβ replicase, allowing the cells carrying the RNA replicon to grow in the lactose minimal medium selectively. The coexistent state of the mini-RNA replicon and DNA replicon (E. coli genome) was successively synthesized. The coexistent state can be used as a starting system to experimentally demonstrate the transition from the RNA-protein world to the DNA world, which will contribute to progress in the research field of the origin of life.

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