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首页> 外文期刊>BMC Biochemistry >Effect of reverse transcriptase inhibitors on LINE-1 and Ty1 reverse transcriptase activities and on LINE-1 retrotransposition
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Effect of reverse transcriptase inhibitors on LINE-1 and Ty1 reverse transcriptase activities and on LINE-1 retrotransposition

机译:逆转录酶抑制剂对LINE-1和Ty1逆转录酶活性以及LINE-1逆转座的影响

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摘要

LINE-1s (L1, Long Interspersed Element-1) are the most abundant autonomous non-LTR retrotransposons in the human genome and replicate by reverse transcription of an RNA intermediate. Full-length L1 encodes two open reading frames (ORF1, ORF2) and ORF2 has reverse transcriptase activity. Here we expressed human L1 RT in E. coli and the purified protein displayed the same RT activity as that of ORF2p expressed in insect cells. We tested the effect of different reverse transcriptase inhibitors on L1 RT and found that all four tested nucleoside inhibitors efficiently inhibited L1 RT activity competitively. The Ki values of NRTIs were calculated (AZTTP, 16.4 ± 4.21 nM; d4TTP, 0.73 ± 0.22 nM; ddCTP, 0.72 ± 0.16 nM; 3TCTP, 12.9 ± 2.07 nM). L1 RT was less sensitive to non-nucleoside reverse transcriptase inhibitors, among these nevirapine had no effect, even at concentrations up to 500 μM. We also examined the effect of RT inhibitors on L1 retrotransposition efficiency in vivo using a cell-based retrotransposition assay. Similarly, all analog inhibitors decreased L1 retrotransposition frequency with different potencies whereas nevirapine had little or no effect on L1 retrotransposition. For comparison, we also tested the same inhibitors to highly purified RT of an LTR-retrotransposon (Ty1) and found it was less sensitive to NRTIs than L1 RT and has the same inhibition profile as L1 RT to NNRTIs. These data indicate that bacterially expressed L1 RT is an active reverse transcriptase sensitive to nucleoside RT inhibitors but not to non-nucleoside inhibitors.
机译:LINE-1(L1,长散置元素-1)是人类基因组中最丰富的自主非LTR逆转座子,可通过RNA中间体的逆转录进行复制。全长L1编码两个开放阅读框(ORF1,ORF2),并且ORF2具有逆转录酶活性。在这里,我们在大肠杆菌中表达了人L1 RT,纯化的蛋白质显示出与昆虫细胞中表达的ORF2p相同的RT活性。我们测试了不同的逆转录酶抑制剂对L1 RT的影响,发现所有四种测试的核苷抑制剂均有效竞争性地抑制L1 RT活性。计算了NRTI的Ki值(AZTTP,16.4±4.21 nM; d4TTP,0.73±0.22 nM; ddCTP,0.72±0.16 nM; 3TCTP,12.9±2.07 nM)。 L1 RT对非核苷类逆转录酶抑制剂的敏感性较低,在这些奈韦拉平中,即使浓度高达500μM,也没有作用。我们还使用基于细胞的逆转置位分析方法检查了RT抑制剂对体内L1逆转置位效率的影响。同样,所有类似物抑制剂均以不同的效力降低L1逆转位频率,而奈韦拉平对L1逆转位几乎没有影响。为了进行比较,我们还测试了LTR-反转录转座子(Ty1)的高纯度RT的相同抑制剂,发现它对NRTI的敏感性不如L1 RT,并且具有与L1 RT对NNRTIs相同的抑制特性。这些数据表明细菌表达的L1 RT是一种活性逆转录酶,对核苷RT抑制剂敏感,但对非核苷抑制剂不敏感。

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