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本文引用的文献

1
LINE-1 Evasion of Epigenetic Repression in Humans.LINE-1 逃避人类的表观遗传抑制。
Mol Cell. 2019 Aug 8;75(3):590-604.e12. doi: 10.1016/j.molcel.2019.05.024. Epub 2019 Jun 20.
2
The Landscape of L1 Retrotransposons in the Human Genome Is Shaped by Pre-insertion Sequence Biases and Post-insertion Selection.人类基因组中 L1 反转录转座子的景观由插入前序列偏好和插入后选择形成。
Mol Cell. 2019 May 2;74(3):555-570.e7. doi: 10.1016/j.molcel.2019.02.036. Epub 2019 Apr 4.
3
Genome-wide de novo L1 Retrotransposition Connects Endonuclease Activity with Replication.全基因组从头 L1 反转录转座将内切酶活性与复制联系起来。
Cell. 2019 May 2;177(4):837-851.e28. doi: 10.1016/j.cell.2019.02.050. Epub 2019 Apr 4.
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The impact of transposable element activity on therapeutically relevant human stem cells.转座元件活性对具有治疗意义的人类干细胞的影响。
Mob DNA. 2019 Mar 9;10:9. doi: 10.1186/s13100-019-0151-x. eCollection 2019.
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Mir20a/106a-WTX axis regulates RhoGDIa/CDC42 signaling and colon cancer progression.miR20a/106a-WTX 轴调节 RhoGDIa/CDC42 信号通路并促进结肠癌进展。
Nat Commun. 2019 Jan 10;10(1):112. doi: 10.1038/s41467-018-07998-x.
6
Uridylation by TUT4/7 Restricts Retrotransposition of Human LINE-1s.TUT4/7 的尿嘧啶化作用限制了人类 LINE-1 逆转录转座。
Cell. 2018 Sep 6;174(6):1537-1548.e29. doi: 10.1016/j.cell.2018.07.022. Epub 2018 Aug 16.
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RNase H2, mutated in Aicardi-Goutières syndrome, promotes LINE-1 retrotransposition.RNase H2 突变导致 Aicardi-Goutières 综合征,并促进 LINE-1 反转录转座。
EMBO J. 2018 Aug 1;37(15). doi: 10.15252/embj.201798506. Epub 2018 Jun 29.
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Metazoan MicroRNAs.后生动物 MicroRNAs。
Cell. 2018 Mar 22;173(1):20-51. doi: 10.1016/j.cell.2018.03.006.
9
LINE-1 protein localization and functional dynamics during the cell cycle.细胞周期中LINE-1蛋白的定位与功能动态变化
Elife. 2018 Jan 8;7:e30058. doi: 10.7554/eLife.30058.
10
Selective silencing of euchromatic L1s revealed by genome-wide screens for L1 regulators.通过全基因组筛选 L1 调控因子揭示了常染色质 L1 的选择性沉默。
Nature. 2018 Jan 11;553(7687):228-232. doi: 10.1038/nature25179. Epub 2017 Dec 6.

小RNA/L1反转录转座:利用小干扰RNA和微小RNA拓展基于细胞培养的LINE-1反转录转座检测方法的应用

sRNA/L1 retrotransposition: using siRNAs and miRNAs to expand the applications of the cell culture-based LINE-1 retrotransposition assay.

作者信息

Tristan-Ramos Pablo, Morell Santiago, Sanchez Laura, Toledo Belen, Garcia-Perez Jose L, Heras Sara R

机构信息

Centre for Genomics and Oncological Research: Pfizer/University of Granada/Andalusian Regional Government, PTS Granada, GENYO, Granada, Spain.

Department of Biochemistry and Molecular Biology II, Faculty of Pharmacy, University of Granada, Granada, Spain.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2020 Mar 30;375(1795):20190346. doi: 10.1098/rstb.2019.0346. Epub 2020 Feb 10.

DOI:10.1098/rstb.2019.0346
PMID:32075559
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7061984/
Abstract

The cell culture-based retrotransposition reporter assay has been (and is) an essential tool for the study of vertebrate Long INterspersed Elements (LINEs). Developed more than 20 years ago, this assay has been instrumental in characterizing the role of LINE-encoded proteins in retrotransposition, understanding how ribonucleoprotein particles are formed, how host factors regulate LINE mobilization, etc. Moreover, variations of the conventional assay have been developed to investigate the biology of other currently active human retrotransposons, such as Alu and SVA. Here, we describe a protocol that allows combination of the conventional cell culture-based LINE-1 retrotransposition reporter assay with short interfering RNAs (siRNAs) and microRNA (miRNAs) mimics or inhibitors, which has allowed us to uncover specific miRNAs and host factors that regulate retrotransposition. The protocol described here is highly reproducible, quantitative, robust and flexible, and allows the study of several small RNA classes and various retrotransposons. To illustrate its utility, here we show that siRNAs to Fanconi anaemia proteins (FANC-A and FANC-C) and an inhibitor of miRNA-20 upregulate and downregulate human L1 retrotransposition, respectively. This article is part of a discussion meeting issue 'Crossroads between transposons and gene regulation'.

摘要

基于细胞培养的逆转录转座报告基因检测一直是(并且现在仍然是)研究脊椎动物长散在元件(LINEs)的重要工具。该检测方法在20多年前就已开发出来,在表征LINE编码蛋白在逆转录转座中的作用、理解核糖核蛋白颗粒如何形成、宿主因子如何调节LINE移动等方面发挥了重要作用。此外,还开发了传统检测方法的变体来研究其他目前活跃的人类逆转录转座子的生物学特性,如Alu和SVA。在这里,我们描述了一种方案,该方案允许将基于细胞培养的传统LINE-1逆转录转座报告基因检测与小干扰RNA(siRNAs)和微小RNA(miRNAs)模拟物或抑制剂相结合,这使我们能够发现调节逆转录转座的特定miRNAs和宿主因子。这里描述的方案具有高度的可重复性、定量性、稳健性和灵活性,并且允许研究几种小RNA类别和各种逆转录转座子。为了说明其效用,我们在这里表明,针对范可尼贫血蛋白(FANC-A和FANC-C)的siRNAs和miRNA-20抑制剂分别上调和下调人类L1逆转录转座。本文是“转座子与基因调控的交叉点”讨论会议专题的一部分。