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L1 retrotransposons exploit RNA m6A modification as an evolutionary driving force

Authors :
Sung-Yeon Hwnag
Hyunchul Jung
Seyoung Mun
Sungwon Lee
S. Chan Baek
Hyungseok Moon
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
Publication Year :
2020
Publisher :
Research Square Platform LLC, 2020.

Abstract

L1 retrotransposons can pose a threat to genome integrity. The host has evolved to restrict L1 replication. However, mechanisms underlying L1 propagation out of the host surveillance remains unclear. Here, we propose a novel survival strategy of L1, which exploits RNA m6A modification. We discover that m6A ‘writer’ METTL3 facilitates L1 retrotransposition, whereas m6A ‘eraser’ ALKBH5 suppresses it. The essential m6A cluster that is located on L1 5′ UTR serves as a docking site for eukaryotic initiation factor 3 (eIF3), enhances translational efficiency and promotes the formation of L1 ribonucleoprotein. Furthermore, through the comparative analysis of human- and primate-specific L1 lineages, we find that the most functional m6A motif-containing L1s have been positively selected and became a distinctive feature of evolutionarily young L1s. Thus, our findings demonstrate that L1 retrotransposons hijack RNA m6A modification system for its successful replication.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........ffe1f6991dd06fd3834f937e9e8a1212
Full Text :
https://doi.org/10.21203/rs.3.rs-40207/v1