首页> 美国卫生研究院文献>Journal of Virology >A preferred region for recombinational patch repair in the 5 untranslated region of primer binding site-impaired murine leukemia virus vectors.
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A preferred region for recombinational patch repair in the 5 untranslated region of primer binding site-impaired murine leukemia virus vectors.

机译:在引物结合位点受损的鼠白血病病毒载体的5非翻译区中用于重组补丁修复的优选区域。

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摘要

Transduction of primer binding site-impaired Akv murine leukemia virus-based retroviral vectors from the murine packaging cell lines psi-2 and omega E was studied. The efficiency of transduction of the neo marker of all mutated constructs was found to decrease by 5 to 6 orders of magnitude compared with that of the wild-type vector. Thirty-two of 60 transduced proviruses analyzed harbored a primer binding site sequence matching a glutamine tRNA primer. Sequence analysis of the regions flanking the glutamine tRNA primer binding site revealed a distinct pattern of nucleotide differences from the Akv-based vector, suggesting the involvement of a specific endogenous virus-like sequence in patch repair rescue of the primer binding site mutants. The putative recombination partner RNA was found in virions from psi-2 cells as detected by analysis of glutamine tRNA-initiated cDNA and by sequence analysis of regions at or around the glutamine tRNA primer binding site. We propose that the forced recombination of primer binding site mutants involves initial priming on endogenous viral sequences and requires template switching during minus-strand synthesis in the region between the neo gene and the mutated primer binding site to allow correct second-strand transfer in reverse transcription. The system thereby selects for a reverse transcriptase-mediated recombination event in the 5' untranslated region. A panel of sequence differences between the recombination partners in this region has allowed mapping of the site of recombination for each transduction event. Interestingly, the majority of the recombination events were clustered within a narrow, 33-nucleotide region though to be involved in genomic RNA dimerization.
机译:研究了从小鼠包装细胞系psi-2和omega E转导引物结合位点受损的Akv鼠白血病病毒逆转录病毒载体的过程。发现与野生型载体相比,所有突变构建体的neo标记的转导效率降低了5至6个数量级。分析的60种转导的原病毒中有32种具有与谷氨酰胺tRNA引物匹配的引物结合位点序列。谷氨酰胺tRNA引物结合位点侧翼区域的序列分析揭示了与基于Akv的载体不同的核苷酸差异模式,表明特定内源性病毒样序列参与了引物结合位点突变体的修补修复。通过分析谷氨酰胺tRNA起始的cDNA并通过对谷氨酰胺tRNA引物结合位点或周围区域的序列分析发现,在psi-2细胞的病毒粒子中发现了推定的重组伴侣RNA。我们建议引物结合位点突变体的强制重组涉及内源性病毒序列的初始启动,并且需要在neo基因和突变引物结合位点之间的区域中的负链合成过程中进行模板切换,以允许正确的第二链转移进行逆转录。该系统从而在5'非翻译区中选择逆转录酶介导的重组事件。该区域中重组伴侣之间的一系列序列差异允许绘制每个转导事件的重组位点。有趣的是,大多数重组事件聚集在一个狭窄的33个核苷酸的区域内,尽管与基因组RNA二聚化有关。

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