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首页> 外文期刊>Nucleic Acids Research >Arm-specific cleavage and mutation during reverse transcription of 2 ',5 '-branched RNA by Moloney murine leukemia virus reverse transcriptase
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Arm-specific cleavage and mutation during reverse transcription of 2 ',5 '-branched RNA by Moloney murine leukemia virus reverse transcriptase

机译:摩洛尼鼠白血病病毒逆转录酶逆转2',5'次RNA的逆转录逆转录静脉裂解和突变

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摘要

Branchpoint nucleotides of intron lariats induce pausing of DNA synthesis by reverse transcriptases (RTs), but it is not known yet how they direct RT RNase H activity on branched RNA (bRNA). Here, we report the effects of the two arms of bRNA on branchpoint-directed RNA cleavage and mutation produced by Moloney murine leukemia virus (M-MLV) RT during DNA polymerization. We constructed a long-chained bRNA template by splinted-ligation. The bRNA oligonucleotide is chimeric and contains DNA to identify RNA cleavage products by probe hybridization. Unique sequences surrounding the branchpoint facilitate monitoring of bRNA purification by terminal-restriction fragment length polymorphism analysis. We evaluate the M-MLV RT-generated cleavage and mutational patterns. We find that cleavage of bRNA and misprocessing of the branched nucleotide proceed arm-specifically. Bypass of the branchpoint from the 2'-arm causes single-mismatch errors, whereas bypass from the 3'-arm leads to deletion mutations. The non-template arm is cleaved when reverse transcription is primed from the 3'-arm but not from the 2'-arm. This suggests that RTs flip similar to 180 degrees at branchpoints and RNases H cleave the non-template arm depending on its accessibility. Our observed interplay between M-MLV RT and bRNA would be compatible with a bRNA-mediated control of retroviral and related retrotransposon replication.
机译:内含子的Brantpoint核苷酸LaRiats通过逆转录酶(RTS)诱导DNA合成,但尚不知道它们在支链RNA(BRNA)上直接RT RNase H活性。在这里,我们报告了BRNA的两个臂对DNA聚合期间Moloney鼠白血病病毒(M-MLV)RT产生的分支定向的RNA切割和突变的影响。我们通过夹层连接构建了一款长链BRNA模板。 BRNA寡核苷酸是嵌合的,含有DNA通过探针杂交来鉴定RNA切割产物。围绕分支的独特序列促进通过终端限制片段长度多态性分析监测BRNA纯化。我们评估M-MLV RT产生的切割和突变模式。我们发现BRNA的裂解和分枝核苷酸的错误处理进展臂 - 具体地进行手臂。从2'-臂的分支旁路导致单错误差,而3'-arm旁路导致删除突变。当逆转录从3'臂映射而不是2'臂时,非模板臂被切割。这表明RTS在分支点处类似于180度,并且RNASE H根据其可访问性切割非模板臂。我们在M-MLV RT和BRNA之间观察到的相互作用与BRNA介导的逆转录病毒和相关反转横向复制的控制相容。

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