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来自细菌反转录子的逆转录酶在cDNA引发反应中需要模板5'-端具有特定的二级结构。

Reverse transcriptases from bacterial retrons require specific secondary structures at the 5'-end of the template for the cDNA priming reaction.

作者信息

Shimamoto T, Hsu M Y, Inouye S, Inouye M

机构信息

Department of Biochemistry, Robert Wood Johnson Medical School, University of Medicine and Dentistry of New Jersey, Rutgers, Piscataway 08854.

出版信息

J Biol Chem. 1993 Feb 5;268(4):2684-92.

PMID:7679101
Abstract

Multicopy single-stranded DNA (msDNA) is a peculiar molecule consisting of a single-stranded DNA that is branched out from an internal G residue of an RNA molecule (msdRNA) via a 2',5'-phosphodiester linkage. The genetic unit required for msDNA synthesis is designated "retron" and consists of msr (a gene for msdRNA), msd (a gene for msDNA), and a gene for reverse transcriptase (RT) in a single operon. To date, four different msDNAs have been isolated from Escherichia coli. They do not share any primary sequences in either RNA or DNA. To elucidate the specificity of bacterial RT for msDNA synthesis, the msr-msd region from retron-Ec67 was introduced into E. coli cells producing RT-Ec73, or the msr-msd region from retron-Ec73 into E. coli cells producing RT-Ec67. In both cases, msDNA was not synthesized. However, when the msdRNA coding regions (msr) for retron-Ec67 and -Ec73 were mutually exchanged and the chimeric genes were introduced into E. coli cells producing either RT-Ec67 or RT-Ec73, it was thus found that msDNA was produced only when msr and RT were from the same retron. Requirement of the msr region for msDNA synthesis by RT was further investigated by mutations in the msr region for retron-Ec67. These analyses revealed that there is a strict requirement for specific primary sequences as well as the secondary structure in msdRNA. This finding is discussed in relationship to the mechanism of the priming reaction of cDNA synthesis by eukaryotic retroviral RTs using tRNAs.

摘要

多拷贝单链DNA(msDNA)是一种特殊的分子,由一条单链DNA组成,该单链DNA通过2',5'-磷酸二酯键从RNA分子(msdRNA)的内部G残基分支出来。msDNA合成所需的遗传单位被命名为“反转录子”,由msr(msdRNA的基因)、msd(msDNA的基因)和一个位于单个操纵子中的逆转录酶(RT)基因组成。迄今为止,已从大肠杆菌中分离出四种不同的msDNA。它们在RNA或DNA中均不共享任何一级序列。为了阐明细菌RT对msDNA合成的特异性,将来自反转录子-Ec67的msr-msd区域导入产生RT-Ec73的大肠杆菌细胞中,或将来自反转录子-Ec73的msr-msd区域导入产生RT-Ec67的大肠杆菌细胞中。在这两种情况下,均未合成msDNA。然而,当将反转录子-Ec67和-Ec73的msdRNA编码区域(msr)相互交换,并将嵌合基因导入产生RT-Ec67或RT-Ec73的大肠杆菌细胞中时,结果发现只有当msr和RT来自同一个反转录子时才会产生msDNA。通过对反转录子-Ec67的msr区域进行突变,进一步研究了msr区域对RT合成msDNA的需求。这些分析表明,msdRNA中对特定的一级序列以及二级结构有严格的要求。本文结合真核逆转录病毒RTs使用tRNAs进行cDNA合成引发反应的机制对这一发现进行了讨论。

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