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Ribosomes guide pachytene piRNA formation on long intergenic piRNA precursors.


ABSTRACT: PIWI-interacting RNAs (piRNAs) are a class of small non-coding RNAs essential for fertility. In adult mouse testes, most piRNAs are derived from long single-stranded RNAs lacking annotated open reading frames (ORFs). The mechanisms underlying how piRNA sequences are defined during the cleavages of piRNA precursors remain elusive. Here, we show that 80S ribosomes translate the 5'-proximal short ORFs (uORFs) of piRNA precursors. The MOV10L1/Armitage RNA helicase then facilitates the translocation of ribosomes into the uORF downstream regions (UDRs). The ribosome-bound UDRs are targeted by piRNA processing machinery, with the processed ribosome-protected regions becoming piRNAs. The dual modes of interaction between ribosomes and piRNA precursors underlie the distinct piRNA biogenesis requirements at uORFs and UDRs. Ribosomes also mediate piRNA processing in roosters and green lizards, implying that this mechanism is evolutionarily conserved in amniotes. Our results uncover a function for ribosomes on non-coding regions of RNAs and reveal the mechanisms underlying how piRNAs are defined.

SUBMITTER: Sun YH 

PROVIDER: S-EPMC8041231 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Ribosomes guide pachytene piRNA formation on long intergenic piRNA precursors.

Sun Yu H YH   Zhu Jiang J   Xie Li Huitong LH   Li Ziwei Z   Meduri Rajyalakshmi R   Zhu Xiaopeng X   Song Chi C   Chen Chen C   Ricci Emiliano P EP   Weng Zhiping Z   Li Xin Zhiguo XZ  

Nature cell biology 20200203 2


PIWI-interacting RNAs (piRNAs) are a class of small non-coding RNAs essential for fertility. In adult mouse testes, most piRNAs are derived from long single-stranded RNAs lacking annotated open reading frames (ORFs). The mechanisms underlying how piRNA sequences are defined during the cleavages of piRNA precursors remain elusive. Here, we show that 80S ribosomes translate the 5'-proximal short ORFs (uORFs) of piRNA precursors. The MOV10L1/Armitage RNA helicase then facilitates the translocation  ...[more]

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