Schlafen-5 inhibits LINE-1 retrotransposition

Long interspersed element 1 (LINE-1) is the only currently known active autonomous transposon in humans, and its retrotransposition may cause deleterious effects on the structure and function of host cell genomes and result in sporadic genetic diseases. Host cells therefore developed defense strateg...

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Veröffentlicht in:iScience 2023-10, Vol.26 (10), p.107968-107968, Article 107968
Hauptverfasser: Ding, Jiwei, Wang, Shujie, Liu, Qipeng, Duan, Yuqing, Cheng, Tingting, Ye, Zhongjie, Cui, Zhanding, Zhang, Ao, Liu, Qiuyu, Zhang, Zixiong, Zhang, Ning, Liu, Qian, An, Ni, Zhao, Jianyuan, Yi, Dongrong, Li, Quanjie, Wang, Jing, Zhang, Yongxin, Ma, Ling, Guo, Saisai, Wang, Jinhui, Liang, Chen, Zhou, Jinming, Cen, Shan, Li, Xiaoyu
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Sprache:eng
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Zusammenfassung:Long interspersed element 1 (LINE-1) is the only currently known active autonomous transposon in humans, and its retrotransposition may cause deleterious effects on the structure and function of host cell genomes and result in sporadic genetic diseases. Host cells therefore developed defense strategies to restrict LINE-1 mobilization. In this study, we demonstrated that IFN-inducible Schlafen5 (SLFN5) inhibits LINE-1 retrotransposition. Mechanistic studies revealed that SLFN5 interrupts LINE-1 ribonucleoprotein particle (RNP) formation, thus diminishing nuclear entry of the LINE-1 RNA template and subsequent LINE-1 cDNA production. The ability of SLFN5 to bind to LINE-1 RNA and the involvement of the helicase domain of SLFN5 in its inhibitory activity suggest a mechanism that SLFN5 binds to LINE-1 RNA followed by dissociation of ORF1p through its helicase activity, resulting in impaired RNP formation. These data highlight a new mechanism of host cells to restrict LINE-1 mobilization. [Display omitted] •SLFN5 inhibits LINE-1 retrotransposition•SLFN5 disrupts LINE-1 ribonucleoprotein particle (RNP) formation•SLFN5 interferes with LINE-1 RNP nuclear import•Helicase activity of SLFN5 is required for restricting LINE-1 retrotransposition Molecular biology; Molecular genetics
ISSN:2589-0042
2589-0042
DOI:10.1016/j.isci.2023.107968