L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force

L1 is a group of active retrotransposons in humans. Here the authors show that m6A modifications on L1 RNA increase translation efficiency and retrotransposition in human cells. M6A motifs are more enriched in evolutionary young L1s.

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Autores principales: Sung-Yeon Hwang, Hyunchul Jung, Seyoung Mun, Sungwon Lee, Kiwon Park, S. Chan Baek, Hyungseok C. Moon, Hyewon Kim, Baekgyu Kim, Yongkuk Choi, Young-Hyun Go, Wanxiangfu Tang, Jongsu Choi, Jung Kyoon Choi, Hyuk-Jin Cha, Hye Yoon Park, Ping Liang, V. Narry Kim, Kyudong Han, Kwangseog Ahn
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/1961d00465714c29a8b1bed8e65a3309
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spelling oai:doaj.org-article:1961d00465714c29a8b1bed8e65a33092021-12-02T13:30:25ZL1 retrotransposons exploit RNA m6A modification as an evolutionary driving force10.1038/s41467-021-21197-12041-1723https://doaj.org/article/1961d00465714c29a8b1bed8e65a33092021-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21197-1https://doaj.org/toc/2041-1723L1 is a group of active retrotransposons in humans. Here the authors show that m6A modifications on L1 RNA increase translation efficiency and retrotransposition in human cells. M6A motifs are more enriched in evolutionary young L1s.Sung-Yeon HwangHyunchul JungSeyoung MunSungwon LeeKiwon ParkS. Chan BaekHyungseok C. MoonHyewon KimBaekgyu KimYongkuk ChoiYoung-Hyun GoWanxiangfu TangJongsu ChoiJung Kyoon ChoiHyuk-Jin ChaHye Yoon ParkPing LiangV. Narry KimKyudong HanKwangseog AhnNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-14 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sung-Yeon Hwang
Hyunchul Jung
Seyoung Mun
Sungwon Lee
Kiwon Park
S. Chan Baek
Hyungseok C. Moon
Hyewon Kim
Baekgyu Kim
Yongkuk Choi
Young-Hyun Go
Wanxiangfu Tang
Jongsu Choi
Jung Kyoon Choi
Hyuk-Jin Cha
Hye Yoon Park
Ping Liang
V. Narry Kim
Kyudong Han
Kwangseog Ahn
L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
description L1 is a group of active retrotransposons in humans. Here the authors show that m6A modifications on L1 RNA increase translation efficiency and retrotransposition in human cells. M6A motifs are more enriched in evolutionary young L1s.
format article
author Sung-Yeon Hwang
Hyunchul Jung
Seyoung Mun
Sungwon Lee
Kiwon Park
S. Chan Baek
Hyungseok C. Moon
Hyewon Kim
Baekgyu Kim
Yongkuk Choi
Young-Hyun Go
Wanxiangfu Tang
Jongsu Choi
Jung Kyoon Choi
Hyuk-Jin Cha
Hye Yoon Park
Ping Liang
V. Narry Kim
Kyudong Han
Kwangseog Ahn
author_facet Sung-Yeon Hwang
Hyunchul Jung
Seyoung Mun
Sungwon Lee
Kiwon Park
S. Chan Baek
Hyungseok C. Moon
Hyewon Kim
Baekgyu Kim
Yongkuk Choi
Young-Hyun Go
Wanxiangfu Tang
Jongsu Choi
Jung Kyoon Choi
Hyuk-Jin Cha
Hye Yoon Park
Ping Liang
V. Narry Kim
Kyudong Han
Kwangseog Ahn
author_sort Sung-Yeon Hwang
title L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
title_short L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
title_full L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
title_fullStr L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
title_full_unstemmed L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force
title_sort l1 retrotransposons exploit rna m6a modification as an evolutionary driving force
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/1961d00465714c29a8b1bed8e65a3309
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