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引物tRNA中逆转录转座的多个分子决定因素。

Multiple molecular determinants for retrotransposition in a primer tRNA.

作者信息

Keeney J B, Chapman K B, Lauermann V, Voytas D F, Aström S U, von Pawel-Rammingen U, Byström A, Boeke J D

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

Mol Cell Biol. 1995 Jan;15(1):217-26. doi: 10.1128/MCB.15.1.217.

Abstract

Retroviruses and long terminal repeat-containing retroelements use host-encoded tRNAs as primers for the synthesis of minus strong-stop DNA, the first intermediate in reverse transcription of the retroelement RNA. Usually, one or more specific tRNAs, including the primer, are selected and packaged within the virion. The reverse transcriptase (RT) interacts with the primer tRNA and initiates DNA synthesis. The structural and sequence features of primer tRNAs important for these specific interactions are poorly understood. We have developed a genetic assay in which mutants of tRNA(iMet), the primer for the Ty1 retrotransposon of Saccharomyces cerevisiae, can be tested for the ability to serve as primers in the reverse transcription process. This system allows any tRNA mutant to be tested, regardless of its ability to function in the initiation of protein synthesis. We find that mutations in the T psi C loop and the acceptor stem regions of the tRNA(iMet) affect transposition most severely. Conversely, mutations in the anticodon region have only minimal effects on transposition. Further study of the acceptor stem and other mutants demonstrates that complementarity to the element primer binding site is a necessary but not sufficient requirement for effective tRNA priming. Finally, we have used interspecies hybrid initiator tRNA molecules to implicate nucleotides in the D arm as additional recognition determinants. Ty3 and Ty1, two very distantly related retrotransposons, require similar molecular determinants in this primer tRNA for transposition.

摘要

逆转录病毒和含有长末端重复序列的逆转录元件利用宿主编码的tRNA作为引物来合成负链强终止DNA,这是逆转录元件RNA逆转录过程中的第一个中间体。通常,一种或多种特定的tRNA(包括引物)会被选择并包装在病毒粒子内。逆转录酶(RT)与引物tRNA相互作用并启动DNA合成。对于这些特定相互作用而言,引物tRNA的结构和序列特征尚不清楚。我们开发了一种遗传分析方法,通过该方法可以测试酿酒酵母Ty1逆转座子引物tRNA(iMet)的突变体在逆转录过程中作为引物的能力。该系统允许对任何tRNA突变体进行测试,而不论其在蛋白质合成起始过程中的功能能力如何。我们发现,tRNA(iMet)的TψC环和受体茎区域的突变对转座的影响最为严重。相反,反密码子区域的突变对转座的影响最小。对受体茎和其他突变体的进一步研究表明,与元件引物结合位点的互补性是有效tRNA引发的必要但不充分条件。最后,我们使用种间杂交起始tRNA分子来表明D臂中的核苷酸是额外的识别决定因素。Ty3和Ty1是两个亲缘关系非常远的逆转座子,在该引物tRNA中它们转座需要相似的分子决定因素。

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