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Integration of the 5' end of the retrotransposon, R2Bm, can be complemented by homologous recombination

机译:逆转录转座子R2Bm 5'端的整合可以通过同源重组来补充

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摘要

R2Bm is a non-long-terminal-repeat (non-LTR) retrotransposon that was identified at a specific target site in the 28S rRNA genes of the silkworm, Bombyx mori. Although in vitro analysis has revealed that the 3' end of R2Bm is integrated into the target site by means of target-primed reverse transcription (TPRT), the mechanism of the 5' end integration is not well understood. We established a novel in vivo system to assay the insertion mechanism of R2Bm using a cultured cell line, C65, and a baculovirus, AcNPV, as host and vector, respectively. The 3' end of R2Bm integrated at the target site in the rRNA genes of C65 cells when an AcNPV containing both the full-length 3' UTR and the entire open reading frame (ORF) of R2Bm was introduced while the 5' end integration was incorrect. The 5' end of R2Bm was integrated, however, when the 28S gene sequence upstream of the R2Bm target site was added to the R2Bm sequence. Thus, in our assay, homologous sequences were likely essential for the successful integration of the entire R2Bm into the host cell genome. We also demonstrated that the failure to integrate caused by a frame-shifted ORF was rescued by co-infection with a helper virus that contained only the R2Bm ORF. This indicates that R2 retrotransposition can be complemented in trans. These findings suggest that the host’s mechanism for DNA repair may be necessary for the integration of the 5' end of R2Bm and that R2Bm protein may only have the ability to integrate the 3' end of the element by TPRT.
机译:R2Bm是一种非长末端重复(非LTR)反转录转座子,在家蚕28S rRNA基因的特定靶位点被鉴定。尽管体外分析显示R2Bm的3'端通过靶标引物的逆转录(TPRT)整合到靶位点中,但对5'端整合的机理还不甚了解。我们建立了一个新颖的体内系统,分别使用培养的细胞系C65和杆状病毒AcNPV作为宿主和载体来测定R2Bm的插入机制。当引入既包含R2Bm的全长3'UTR和整个开放阅读框(ORF)的AcNPV时,R2Bm的3'末端整合到C65细胞的rRNA基因的靶位点。不正确然而,当将R2Bm靶位点上游的28S基因序列添加到R2Bm序列中时,R2Bm的5'末端被整合。因此,在我们的测定中,同源序列可能是将整个R2Bm成功整合到宿主细胞基因组中必不可少的。我们还证明,通过与仅包含R2Bm ORF的辅助病毒共感染,可以挽救由移码的ORF引起的整合失败。这表明R2逆转座可以反式互补。这些发现表明,宿主的DNA修复机制可能是整合R2Bm 5'端所必需的,而R2Bm蛋白可能仅具有通过TPRT整合元件3'端的能力。

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