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首页> 外文期刊>Nature >EFFICIENT INTEGRATION OF AN INTRON RNA INTO DOUBLE-STRANDED DNA BY REVERSE SPLICING
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EFFICIENT INTEGRATION OF AN INTRON RNA INTO DOUBLE-STRANDED DNA BY REVERSE SPLICING

机译:通过反向剪接有效地将内含子RNA整合到双链DNA中

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摘要

SOME group introns are mobile elements as well as catalytic RNAs(1,2). Introns aI1 and aI2 found in the gene COX1 in yeast mitochondria encode reverse transcriptases which promote site-specific insertion of the intron into intronless alleles ('housing')(3-6). For aI2 this predominantly occurs by reverse transcription of unspliced precursor RNA st a break in double. strand DNA made by an endonuclease encoded by the intron(7). The aI2 endonuclease involves both the excised intron RNA, which cleaves the DNA's sense strand by partial reverse splicing; and the intron-encoded reverse transcriptase which cleaves the antisense strand(8). Here we show that aI1 encodes an analogous endonuclease specific for a different target site compatible with the different exon-binding sequences of the intron RNA. Over half of aI1 undergoes complete reverse splicing in vitro, thus integrating linear intron RNA directly into the DNA. This unprecedented reaction has implications for both intron mobility and evolution, and potential genetic engineering applications. [References: 17]
机译:某些内含子是可移动的元件,也是催化性RNAs(1,2)。在酵母线粒体的基因COX1中发现的内含子aI1和aI2编码逆转录酶,这些酶促进内含子在非​​内含子等位基因中的位点特异性插入('外壳')(3-6)。对于aI2,这主要是通过未剪接的前体RNA的反转录而发生的,发生了两次断裂。由内含子(7)编码的核酸内切酶制备的DNA链。 aI2核酸内切酶涉及被切除的内含子RNA,后者通过部分反向剪接切割DNA的有义链。内含子编码的逆转录酶切割反义链(8)。在这里,我们显示aI1编码类似核酸内切酶,该核酸内切酶对与内含子RNA的不同外显子结合序列兼容的不同靶位点具有特异性。超过一半的aI1在体外经历了完整的反向剪接,因此将线性内含子RNA直接整合到DNA中。这种前所未有的反应对内含子的移动性和进化以及潜在的基因工程应用都有影响。 [参考:17]

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