Friant S, Heyman T, Byström A S, Wilhelm M, Wilhelm F X
Unité Propre de Recherche 9002 du Centre National de la Recherche Scientifique, Institut de Biologie Moléculaire et Cellulaire, Strasbourg, France.
Mol Cell Biol. 1998 Feb;18(2):799-806. doi: 10.1128/MCB.18.2.799.
Reverse transcription of the Saccharomyces cerevisiae Ty1 retrotransposon is primed by tRNA(iMet) base paired to the primer binding site (PBS) near the 5' end of Ty1 genomic RNA. The 10-nucleotide PBS is complementary to the last 10 nucleotides of the acceptor stem of tRNA(iMet). A structural probing study of the interactions between the Ty1 RNA template and the tRNA(iMet) primer showed that besides interactions between the PBS and the 3' end of tRNA(iMet), three short regions of Ty1 RNA, named boxes 0, 1, and 2.1, interact with the T and D stems and loops of tRNA(iMet). To determine if these sequences are important for the reverse transcription pathway of the Ty1 retrotransposon, mutant Ty1 elements and tRNA(iMet) were tested for the ability to support transposition. We show that the Ty1 boxes and the complementary sequences in the T and D stems and loops of tRNA(iMet) contain bases that are critical for Ty1 retrotransposition. Disruption of 1 or 2 bp between tRNA(iMet) and box 0, 1, or 2.1 dramatically decreases the level of transposition. Compensatory mutations which restore base pairing between the primer and the template restore transposition. Analysis of the reverse transcription intermediates generated inside Ty1 virus-like particles indicates that initiation of minus-strand strong-stop DNA synthesis is affected by mutations disrupting complementarity between Ty1 RNA and primer tRNA(iMet).
酿酒酵母Ty1逆转录转座子的逆转录由与Ty1基因组RNA 5'端附近引物结合位点(PBS)碱基配对的tRNA(iMet)引发。10个核苷酸的PBS与tRNA(iMet)受体茎的最后10个核苷酸互补。一项关于Ty1 RNA模板与tRNA(iMet)引物之间相互作用的结构探测研究表明,除了PBS与tRNA(iMet)3'端之间的相互作用外,Ty1 RNA的三个短区域,即0号、1号和2.1号框,与tRNA(iMet)的T茎和D茎以及环相互作用。为了确定这些序列对于Ty1逆转录转座子的逆转录途径是否重要,对突变的Ty1元件和tRNA(iMet)支持转座的能力进行了测试。我们表明,Ty1框以及tRNA(iMet)的T茎和D茎以及环中的互补序列包含对Ty1逆转录转座至关重要的碱基。tRNA(iMet)与0号、1号或2.1号框之间1或2个碱基对的破坏会显著降低转座水平。恢复引物与模板之间碱基配对的补偿性突变可恢复转座。对Ty1病毒样颗粒内部产生的逆转录中间体的分析表明,负链强终止DNA合成的起始受到破坏Ty1 RNA与引物tRNA(iMet)之间互补性的突变的影响。