In Vitro Synthesis of Multicopy Single-Stranded DNA, Using Separate Primer and Template RNAs, by Escherichia coli Reverse Transcriptase

Author:

Shimamoto Tadashi1,Kawanishi Hideki2,Tsuchiya Tomofusa13,Inouye Sumiko2,Inouye Masayori2

Affiliation:

1. Gene Research Center1and

2. Department of Biochemistry, Robert Wood Johnson Medical School, Piscataway, New Jersey 08854-56352

3. Department of Microbiology, Faculty of Pharmaceutical Sciences,3 Okayama University, Tsushima-naka, Okayama 700, Japan, and

Abstract

ABSTRACT A minor population of wild strains of Escherichia coli contains a retron, a retroelement responsible for the synthesis of multicopy single-stranded DNA (msDNA). The retron is a genetic element consisting of the gene for reverse transcriptase (RT) and the msr-msd region under a single promoter. A single RNA transcript from the msr-msd region serves not only as a template but also as a primer for msDNA synthesis. Here, using a cell-free system with purified RT from retron Ec73, we examined whether the reaction can occur in a bimolecular reaction with use of separately expressed msr and msd transcripts. DNA sequencing of the cell-free product revealed that the sequence of the 5′-end region was identical to that of msDNA-Ec73, indicating that the cDNA synthesis was primed from the 2′-OH group of the specific internal G residue of the primer RNA, identical to the branching G residue in the RNA molecule of msDNA-Ec73. The present results raise an intriguing possibility for a role of bacterial retrons in vivo, the possibility that cellular mRNAs can be converted into cDNAs in retron-harboring cells if the mRNAs contain a sequence complementary to the sequence directly upstream of the branching G residue of the msr RNA transcript.

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

Reference11 articles.

1. The retron: a bacterial retroelement required for synthesis of msDNA;Inouye S.;Curr. Opin. Genet. Dev.,1993

2. Inouye S. Inouye M. Bacterial reverse transcriptase Reverse transcriptase. Goff S. Skalka S. 1993 391 410 Cold Spring Harbor Laboratory Press Cold Spring Harbor N.Y

3. Structure, function and evolution of bacterial reverse transcriptase;Inouye S.;Virus Genes,1996

4. Low copy number plasmids for regulated low-level expression of cloned genes in Escherichia coli with blue/white insert screening capability;Lerner C. G.;Nucleic Acids Res.,1990

5. Gene regulation by antisense DNA produced in vivo;Mao J.-R.;J. Biol. Chem.,1995

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