Orecchini Elisa, Doria Margherita, Antonioni Ambra, Galardi Silvia, Ciafrè Silvia Anna, Frassinelli Loredana, Mancone Carmine, Montaldo Claudia, Tripodi Marco, Michienzi Alessandro
Department of Biomedicine and Prevention, University of Rome 'Tor Vergata', Via Montpellier 1, Rome 00133, Italy.
Laboratory of Immunoinfectivology, Bambino Gesù Children's Hospital, IRCCS, Piazza S. Onofrio 4, Rome 00165, Italy.
Nucleic Acids Res. 2017 Jan 9;45(1):155-168. doi: 10.1093/nar/gkw834. Epub 2016 Sep 21.
Adenosine deaminases acting on RNA (ADARs) are involved in RNA editing that converts adenosines to inosines in double-stranded RNAs. ADAR1 was demonstrated to be functional on different viruses exerting either antiviral or proviral effects. Concerning HIV-1, several studies showed that ADAR1 favors viral replication. The aim of this study was to investigate the composition of the ADAR1 ribonucleoprotein complex during HIV-1 expression. By using a dual-tag affinity purification procedure in cells expressing HIV-1 followed by mass spectrometry analysis, we identified 14 non-ribosomal ADAR1-interacting proteins, most of which are novel. A significant fraction of these proteins were previously demonstrated to be associated to the Long INterspersed Element 1 (LINE1 or L1) ribonucleoparticles and to regulate the life cycle of L1 retrotransposons that continuously re-enter host-genome.Hence, we investigated the function of ADAR1 in the regulation of L1 activity.By using different cell-culture based retrotransposition assays in HeLa cells, we demonstrated a novel function of ADAR1 as suppressor of L1 retrotransposition. Apparently, this inhibitory mechanism does not occur through ADAR1 editing activity. Furthermore, we showed that ADAR1 binds the basal L1 RNP complex. Overall, these data support the role of ADAR1 as regulator of L1 life cycle.
作用于RNA的腺苷脱氨酶(ADARs)参与RNA编辑,该过程可将双链RNA中的腺苷转化为肌苷。已证明ADAR1对不同病毒具有功能,发挥抗病毒或前病毒作用。关于HIV-1,多项研究表明ADAR1有利于病毒复制。本研究的目的是调查HIV-1表达过程中ADAR1核糖核蛋白复合物的组成。通过在表达HIV-1的细胞中使用双标签亲和纯化程序,随后进行质谱分析,我们鉴定出14种非核糖体ADAR1相互作用蛋白,其中大多数是新发现的。这些蛋白中有很大一部分先前已被证明与长散在元件1(LINE1或L1)核糖核蛋白颗粒相关,并调节不断重新进入宿主基因组的L1逆转座子的生命周期。因此,我们研究了ADAR1在调节L1活性中的功能。通过在HeLa细胞中使用不同的基于细胞培养的逆转座分析,我们证明了ADAR1作为L1逆转座抑制因子的新功能。显然,这种抑制机制不是通过ADAR1编辑活性发生的。此外,我们表明ADAR1与基础L1核糖核蛋白复合物结合。总体而言,这些数据支持ADAR1作为L1生命周期调节因子的作用。