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Dual coding potential of a 2 ',5 '-branched ribonucleotide in DNA

机译:DNA中的2',5'核核糖核苷酸的双编码潜力

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摘要

Branchpoints in RNA templates are highly mutagenic, but it is not known yet whether this also applies to branchpoints in DNA templates. Here, we report how nucleic acid polymerases replicate a 2',5'-branched DNA (bDNA) molecule. We constructed long-chained bDNA templates containing a branch guanosine and T7 promoters at both arms by splinted ligation. Quantitative real-time PCR analysis was used to investigate whether a branchpoint blocks DNA synthesis from the two arms in the same manner. We find that the blocking effect of a branchpoint is arm-specific. DNA synthesis from the 2'-arm is more than 20,000-fold decreased, whereas from the 3'-arm only 15-fold. Our sequence analysis of full-length nucleic acid generated by Taq DNA polymerase, Moloney murine leukemia virus reverse transcriptase, and T7 RNA polymerase from the 2'-arm of bDNA shows that the branched guanine has a dual coding potential and can base-pair with cytosine and guanine. We find that branchpoint templating is influenced by the type of the surrounding nucleic acid and is probably modulated by polymerase and RNase H active sites. We show that the branchpoint bypass by the polymerases from the 3'-arm of bDNA is predominantly error-free, indicating that bDNA is not as highly mutagenic as 2',5'-branched RNA.
机译:RNA模板中的分支是高度诱变的,但尚未知道这也适用于DNA模板中的分支。在这里,我们报告了核酸聚合酶如何复制2',5'-支链DNA(BDNA)分子。我们构建了长链BDNA模板,含有夹层连接在双臂上的分支鸟苷和T7启动子。定量实时PCR分析用于研究分支点是否以相同的方式阻断从两个臂的DNA合成。我们发现分支点的阻塞效果是特定于ARM的。来自2'-臂的DNA合成的降低超过20,000倍,而来自3'-臂仅15倍。我们对Taq DNA聚合酶产生的全长核酸的序列分析,Moloney鼠白血病病毒逆转录酶和来自BDNA的2'-臂的T7 RNA聚合酶表明,支链鸟嘌呤具有双重编码势,可以与之施加胞嘧啶和鸟嘌呤。我们发现分支光学模板受到周围核酸类型的影响,并且可能通过聚合酶和RNase H活性位点调节。我们表明,来自BDNA的3'-臂的聚合酶的分支分点旁路主要是无差异的,表明BDNA不像2',5'-支链的RNA一样高度致突变。

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