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Identification of L1 ORF2p sequence important to retrotransposition using Bipartile Alu retrotransposition (BAR)

机译:使用Bipartile Alu逆转位(BAR)鉴定对逆转位重要的L1 ORF2p序列

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摘要

Long Interspersed Element 1 (LINE-1 or L1) is capable of causing genomic instability through the activity of the L1 ORF2 protein (ORF2p). This protein contains endonuclease (EN) and reverse transcriptase (RT) domains that are necessary for the retrotransposition of L1 and the Short Interspersed Element (SINE) Alu. The functional importance of approximately 50% of the ORF2p molecule remains unknown, but some of these sequences could play a role in retrotransposition, or be necessary for the enzymatic activities of the EN and/ or RT domains. Conventional approaches using the full-length, contiguous ORF2p make it difficult to study the involvement of these unannotated sequences in the function of L1 ORF2p. Our lab has developed a Bipartile Alu Retrotransposition (BAR) assay that relies on separate truncated ORF2p fragments: an EN-containing and an RT-containing fragment. We validated the utility of this method for studying the ORF2p function in retrotransposition by assessing the effect of expression levels and previously characterized mutations on BAR. Using BAR, we identified two pairs of amino acids important for retrotransposition, an FF and a WD. The WD appears to play a role in cDNA synthesis by the ORF2p molecule, despite being outside the canonical RT domain.
机译:长时间散布的元件1(LINE-1或L1)能够通过L1 ORF2蛋白(ORF2p)的活性引起基因组不稳定。该蛋白包含内切酶(EN)和逆转录酶(RT)域,这些域是L1和短散置元素(SINE)Alu逆转座所必需的。大约50%的ORF2p分子的功能重要性仍然未知,但是其中一些序列可能在逆转座中起作用,或者对于EN和/或RT结构域的酶促活性是必需的。使用全长,连续的ORF2p的常规方法使得难以研究这些未注释的序列与L1 ORF2p的功能有关。我们的实验室开发了一种基于分开的截短的ORF2p片段的两部分Alu逆转位(BAR)分析:包含EN的片段和包含RT的片段。我们通过评估表达水平和先前表征的突变对BAR的影响,验证了该方法在研究逆转座中ORF2p功能中的实用性。使用BAR,我们确定了对逆转座重要的两对氨基酸,即FF和WD。 WD似乎在ORF2p分子的cDNA合成中起作用,尽管不在规范的RT结构域之内。

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