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Retrotransposon Ty1 RNA contains a 5'-terminal long-range pseudoknot required for efficient reverse transcription

机译:逆转座子Ty1 RNA包含有效逆转录所需的5'端远程伪结

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摘要

Ty1 retrotransposon RNA has the potential to fold into a variety of distinct structures, mutation of which affects retrotransposition frequencies. We show here that one potential functional structure is located at the 5' end of the genome and can assume a pseudoknot conformation. Chemoenzymatic probing of wild-type and mutant mini-Ty1 RNAs supports the existence of such a structure, while molecular genetic analyses show that mutations disrupting pseudoknot formation interfere with retrotransposition, indicating that it provides a critical biological function. These defects are enhanced at higher temperatures. When these mutants are combined with compensatory changes, retrotransposition is restored, consistent with pseudoknot architecture. Analyses of mutants suggest a defect in Ty1 reverse transcription. Collectively, our data allow modeling of a three-dimensional structure for this novel critical cis-acting signal of the Ty1 genome.
机译:Ty1反转录转座子RNA可能折叠成各种不同的结构,其突变会影响反转录转座频率。我们在这里显示一个潜在的功能结构位于基因组的5'端,可以假设一个假结构象。野生型和突变型mini-Ty1 RNA的化学酶探技术支持这种结构的存在,而分子遗传学分析表明,破坏假结形成的突变会干扰逆转座,表明其提供了关键的生物学功能。这些缺陷在较高温度下会增强。当这些突变体与补偿性变化结合时,逆转座得以恢复,与假结结构一致。突变体的分析表明Ty1逆转录缺陷。总体而言,我们的数据允许对该Ty1基因组的这种新型关键顺式作用信号进行三维结构建模。

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