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一种利用逆转录酶在大肠杆菌中产生无RNA的多顺反子msDNA的新型反转录子。

A novel retron that produces RNA-less msDNA in Escherichia coli using reverse transcriptase.

作者信息

Lima T M, Lim D

机构信息

Department of Microbiology, New York University Medical Center, 550 First Avenue, New York, New York 10016, USA.

出版信息

Plasmid. 1997;38(1):25-33. doi: 10.1006/plas.1997.1298.

Abstract

Bacterial retroelements, or retrons, use reverse transcriptase (RT) to produce a multicopy single-stranded DNA (msDNA) molecule that is covalently linked to RNA. In these studies we show that a retron from Escherichia coli 110, a clinical isolate, produces a novel RNA-less msDNA with a 5' phosphate residue. The msDNA is a 74-nucleotide single-stranded DNA molecule with a stable stem-loop structure without a mismatched base pair. Only the genes encoding msDNA (msd), msdRNA (msr), and RT (ret) are required to produce the msDNA molecule. The organization of these genes on the retron was similar to that of other elements producing branched msDNA-RNA. The conserved guanine, which is the branched residue in msDNA-RNA complexes and is essential for branch formation, is also present. Site-directed mutagenesis showed that this guanine is essential for the production of RNA-less msDNA. We postulate that the RNA-less msDNA in strain 110 is produced by nucleolytic cleavage of the branched msDNA-RNA compound.

摘要

细菌反转录元件,即反转录子,利用逆转录酶(RT)产生一种与RNA共价连接的多拷贝单链DNA(msDNA)分子。在这些研究中,我们发现来自临床分离株大肠杆菌110的一个反转录子产生了一种新型的无RNA的msDNA,其带有一个5'磷酸残基。该msDNA是一个74个核苷酸的单链DNA分子,具有稳定的茎环结构,没有错配碱基对。产生msDNA分子仅需要编码msDNA(msd)、msdRNA(msr)和RT(ret)的基因。这些基因在反转录子上的组织方式与其他产生分支状msDNA-RNA的元件相似。在msDNA-RNA复合物中作为分支残基且对分支形成至关重要的保守鸟嘌呤也存在。定点诱变表明,这种鸟嘌呤对于无RNA的msDNA的产生至关重要。我们推测,110菌株中的无RNA的msDNA是由分支状msDNA-RNA化合物的核酸酶切割产生的。

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