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本文引用的文献

1
The importance of L1 ORF2p cryptic sequence to ORF2p fragment-mediated cytotoxicity.L1开放阅读框2蛋白(L1 ORF2p)隐蔽序列对ORF2p片段介导的细胞毒性的重要性。
Mob Genet Elements. 2016 Jun 20;6(4):e1198300. doi: 10.1080/2159256X.2016.1198300. eCollection 2016 Jul-Aug.
2
Roles for retrotransposon insertions in human disease.逆转录转座子插入在人类疾病中的作用。
Mob DNA. 2016 May 6;7:9. doi: 10.1186/s13100-016-0065-9. eCollection 2016.
3
The endonuclease domain of the LINE-1 ORF2 protein can tolerate multiple mutations.LINE-1 ORF2蛋白的核酸内切酶结构域能够耐受多种突变。
Mob DNA. 2016 Apr 19;7:8. doi: 10.1186/s13100-016-0064-x. eCollection 2016.
4
Identification of L1 ORF2p sequence important to retrotransposition using Bipartile Alu retrotransposition (BAR).利用二分Alu逆转座法(BAR)鉴定对逆转座重要的L1 ORF2p序列。
Nucleic Acids Res. 2016 Jun 2;44(10):4818-34. doi: 10.1093/nar/gkw277. Epub 2016 Apr 19.
5
Phosphorylation of ORF1p is required for L1 retrotransposition.L1逆转座需要ORF1p的磷酸化。
Proc Natl Acad Sci U S A. 2015 Apr 7;112(14):4298-303. doi: 10.1073/pnas.1416869112. Epub 2015 Mar 23.
6
Potential for genomic instability associated with retrotranspositionally-incompetent L1 loci.与逆转录转座无活性的L1基因座相关的基因组不稳定的可能性。
Nucleic Acids Res. 2014;42(16):10488-502. doi: 10.1093/nar/gku687. Epub 2014 Aug 20.
7
Identification of RNA binding motifs in the R2 retrotransposon-encoded reverse transcriptase.R2反转录转座子编码的逆转录酶中RNA结合基序的鉴定。
Nucleic Acids Res. 2014 Jul;42(13):8405-15. doi: 10.1093/nar/gku514. Epub 2014 Jun 23.
8
Characterization of L1 ORF1p self-interaction and cellular localization using a mammalian two-hybrid system.利用哺乳动物双杂交系统鉴定 L1 ORF1p 自我相互作用和细胞定位。
PLoS One. 2013 Dec 4;8(12):e82021. doi: 10.1371/journal.pone.0082021. eCollection 2013.
9
Affinity proteomics reveals human host factors implicated in discrete stages of LINE-1 retrotransposition.亲和蛋白质组学揭示了人类宿主因子在 LINE-1 反转录转座的不同阶段所涉及的作用。
Cell. 2013 Nov 21;155(5):1034-48. doi: 10.1016/j.cell.2013.10.021.
10
The carboxy-terminal segment of the human LINE-1 ORF2 protein is involved in RNA binding.人 LINE-1 ORF2 蛋白的羧基末端片段参与 RNA 结合。
FEBS Open Bio. 2013 Sep 21;3:433-7. doi: 10.1016/j.fob.2013.09.005. eCollection 2013.

LINE-1 开放阅读框 2 蛋白(ORF2p)C 末端区域保守氨基酸在逆转录转座中的作用。

Involvement of Conserved Amino Acids in the C-Terminal Region of LINE-1 ORF2p in Retrotransposition.

作者信息

Christian Claiborne M, Sokolowski Mark, deHaro Dawn, Kines Kristine J, Belancio Victoria P

机构信息

Department of Structural and Cellular Biology, School of Medicine, Tulane University, New Orleans, Louisiana 70112.

Tulane Cancer Center, School of Medicine, Tulane University, New Orleans, Louisiana 70112.

出版信息

Genetics. 2017 Mar;205(3):1139-1149. doi: 10.1534/genetics.116.191403. Epub 2017 Jan 18.

DOI:10.1534/genetics.116.191403
PMID:28100588
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5340329/
Abstract

Long interspersed element 1 (L1) is the only currently active autonomous retroelement in the human genome. Along with the parasitic SVA and short interspersed element Alu, L1 is the source of DNA damage induced by retrotransposition: a copy-and-paste process that has the potential to disrupt gene function and cause human disease. The retrotransposition process is dependent upon the ORF2 protein (ORF2p). However, it is unknown whether most of the protein is important for retrotransposition. In particular, other than the Cys motif, the C terminus of the protein has not been intensely examined in the context of retrotransposition. Using evolutionary analysis and the Alu retrotransposition assay, we sought to identify additional amino acids in the C terminus important for retrotransposition. Here, we demonstrate that Gal4-tagged and untagged C-terminally truncated ORF2p fragments possess residual potential to drive Alu retrotransposition. Using sight-directed mutagenesis we identify that while the Y1180 amino acid is important for ORF2p- and L1-driven Alu retrotransposition, a mutation at this position improves L1 retrotransposition. Even though the mechanism of the contribution of Y1180 to Alu and L1 mobilization remains unknown, experimental evidence rules out its direct involvement in the ability of the ORF2p reverse transcriptase to generate complementary DNA. Additionally, our data support that ORF2p amino acids 1180 and 1250-1262 may be involved in the reported ORF1p-mediated increase in ORF2p-driven Alu retrotransposition.

摘要

长散布元件1(L1)是人类基因组中目前唯一活跃的自主逆转录元件。与寄生性的SVA和短散布元件Alu一样,L1是逆转录转座诱导的DNA损伤的来源:这是一个复制粘贴过程,有可能破坏基因功能并导致人类疾病。逆转录转座过程依赖于开放阅读框2蛋白(ORF2p)。然而,尚不清楚该蛋白的大部分是否对逆转录转座很重要。特别是,除了半胱氨酸基序外,该蛋白的C末端在逆转录转座的背景下尚未得到深入研究。利用进化分析和Alu逆转录转座试验,我们试图确定C末端中对逆转录转座重要的其他氨基酸。在此,我们证明,带有Gal4标签和未带标签的C末端截短的ORF2p片段具有驱动Alu逆转录转座的残余潜力。通过定点诱变,我们发现虽然Y1180氨基酸对ORF2p和L1驱动的Alu逆转录转座很重要,但该位置的突变会改善L1逆转录转座。尽管Y1180对Alu和L1移动的贡献机制尚不清楚,但实验证据排除了其直接参与ORF2p逆转录酶生成互补DNA的能力。此外,我们的数据支持ORF2p的1180位氨基酸以及1250 - 1262位氨基酸可能参与了报道的ORF1p介导的ORF2p驱动的Alu逆转录转座增加。