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DNA Dynamics and Chromosome Structure

Human L1 Retrotransposition: cisPreference versus trans Complementation

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Pages 1429-1439 | Received 21 Aug 2000, Accepted 06 Nov 2000, Published online: 28 Mar 2023

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Murad Khan, Suleman Shah, Baixue Lv, Zhanjun Lv, Ning Ji, Zhixue Song, Peiyuan Wu, Xiufang Wang & Arshad Mehmood. (2023) Molecular Mechanisms of Alu and LINE-1 Interspersed Repetitive Sequences Reveal Diseases of Visual System Dysfunction. Ocular Immunology and Inflammation 31:9, pages 1848-1858.
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Yumi Kawamura, Anna Sanchez Calle, Yusuke Yamamoto, Taka-Aki Sato & Takahiro Ochiya. (2019) Extracellular vesicles mediate the horizontal transfer of an active LINE-1 retrotransposon. Journal of Extracellular Vesicles 8:1.
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Carmen Salvador-Palomeque, Francisco J. Sanchez-Luque, Patrick R. J. Fortuna, Adam D. Ewing, Ernst J. Wolvetang, Sandra R. Richardson & Geoffrey J. Faulkner. (2019) Dynamic Methylation of an L1 Transduction Family during Reprogramming and Neurodifferentiation. Molecular and Cellular Biology 39:7.
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Elisa Orecchini, Loredana Frassinelli & Alessandro Michienzi. (2017) Restricting retrotransposons: ADAR1 is another guardian of the human genome. RNA Biology 14:11, pages 1485-1491.
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Siqi Hu, Chen Liang & Fei Guo. (2016) Stress out the LINEs. Mobile Genetic Elements 6:1.
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Anthony V. Furano & Pamela R. Cook. (2016) The challenge of ORF1p phosphorylation: Effects on L1 activity and its host. Mobile Genetic Elements 6:1.
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Nathaly Castro-Diaz, Marc Friedli & Didier Trono. (2015) Drawing a fine line on endogenous retroelement activity. Mobile Genetic Elements 5:1, pages 1-6.
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Patrick H Maxwell. (2014) Consequences of ongoing retrotransposition in mammalian genomes. Advances in Genomics and Genetics 4, pages 129-142.
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Lixin Dai, John LaCava, Martin S Taylor & Jef D Boeke. (2014) Expression and detection of LINE-1 ORF-encoded proteins. Mobile Genetic Elements 4:3.
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Sara R Heras, Sara Macias, Javier F Cáceres & Jose L Garcia-Perez. (2014) Control of mammalian retrotransposons by cellular RNA processing activities. Mobile Genetic Elements 4:2.
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Astrid M. Roy-Engel. (2012) A tale of an A-tail. Mobile Genetic Elements 2:6, pages 282-286.
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Lixin Dai, Martin S. Taylor, Kathryn A. O'Donnell & Jef D. Boeke. (2012) Poly(A) Binding Protein C1 Is Essential for Efficient L1 Retrotransposition and Affects L1 RNP Formation. Molecular and Cellular Biology 32:21, pages 4323-4336.
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Dustin C. Hancks, Prabhat K. Mandal, Ling E. Cheung & Haig H. Kazazian$suffix/text()$suffix/text(). (2012) The Minimal Active Human SVA Retrotransposon Requires Only the 5′-Hexamer and Alu-Like Domains. Molecular and Cellular Biology 32:22, pages 4718-4726.
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Kyle R. Upton, J. Kenneth Baillie & Geoffrey J. Faulkner. (2011) Is somatic retrotransposition a parasitic or symbiotic phenomenon?. Mobile Genetic Elements 1:4, pages 279-328.
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Martin Muñoz-Lopez, Angela Macia, Marta Garcia-Cañadas, Richard M. Badge & Jose L. Garcia-Perez. (2011) An epi [c] genetic battle. Mobile Genetic Elements 1:2, pages 122-127.
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Thanh Chung, Oliver Siol, Theodor Dingermann & Thomas Winckler. (2007) Protein Interactions Involved in tRNA Gene-Specific Integration of Dictyostelium discoideum Non-Long Terminal Repeat Retrotransposon TRE5-A. Molecular and Cellular Biology 27:24, pages 8492-8501.
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John L. Goodier, Lili Zhang, Melissa R. Vetter & Haig H. Kazazian$suffix/text()$suffix/text(). (2007) LINE-1 ORF1 Protein Localizes in Stress Granules with Other RNA-Binding Proteins, Including Components of RNA Interference RNA-Induced Silencing Complex. Molecular and Cellular Biology 27:18, pages 6469-6483.
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Sergey E. Dmitriev, Dmitri E. Andreev, Ilya M. Terenin, Ivan A. Olovnikov, Vladimir S. Prassolov, William C. Merrick & Ivan N. Shatsky. (2007) Efficient Translation Initiation Directed by the 900-Nucleotide-Long and GC-Rich 5′ Untranslated Region of the Human Retrotransposon LINE-1 mRNA Is Strictly Cap Dependent Rather than Internal Ribosome Entry Site Mediated. Molecular and Cellular Biology 27:13, pages 4685-4697.
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Takumi Matsumoto, Mitsuhiro Hamada, Mizuko Osanai & Haruhiko Fujiwara. (2006) Essential Domains for Ribonucleoprotein Complex Formation Required for Retrotransposition of Telomere-Specific Non-Long Terminal Repeat Retrotransposon SART1. Molecular and Cellular Biology 26:13, pages 5168-5179.
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Shawn M. Christensen & Thomas H. Eickbush. (2005) R2 Target-Primed Reverse Transcription: Ordered Cleavage and Polymerization Steps by Protein Subunits Asymmetrically Bound to the Target DNA. Molecular and Cellular Biology 25:15, pages 6617-6628.
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Mizuko Osanai, Hidekazu Takahashi, Kenji K. Kojima, Mitsuhiro Hamada & Haruhiko Fujiwara. (2004) Essential Motifs in the 3′ Untranslated Region Required for Retrotransposition and the Precise Start of Reverse Transcription in Non-Long-Terminal-Repeat Retrotransposon SART1. Molecular and Cellular Biology 24:18, pages 7902-7913.
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