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T-hairpin structure found in the RNA element involved in piRNA biogenesis.


ABSTRACT: PIWI-interacting RNAs (piRNAs) repress transposons to protect the germline genome from DNA damage caused by transposon transposition. In Drosophila, the Traffic jam (Tj) mRNA is consumed to produce piRNA in its 3'-UTR. A cis element located within the 3'-UTR, Tj-cis, is necessary for piRNA biogenesis. In this study, we analyzed the structure of the Tj-cis RNA, a 100-nt RNA corresponding to the Tj-cis element, by the SHAPE and NMR analyses and found that a stable hairpin structure formed in the 5' half of the Tj-cis RNA. The tertiary structure of the 16-nt stable hairpin was analyzed by NMR, and a novel stem-loop structure, the T-hairpin, was found. In the T-hairpin, four uridine residues are exposed to the solvent, suggesting that this stem-loop is the target of Yb protein, a Tudor domain-containing piRNA biogenesis factor. The piRNA biogenesis assay showed that both the T-hairpin and the 3' half are required for the function of the Tj-cis element, suggesting that both the T-hairpin and the 3' half are recognized by Yb protein.

SUBMITTER: Takase N 

PROVIDER: S-EPMC8925976 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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T-hairpin structure found in the RNA element involved in piRNA biogenesis.

Takase Naomi N   Otsu Maina M   Hirakata Shigeki S   Ishizu Hirotsugu H   Siomi Mikiko C MC   Kawai Gota G  

RNA (New York, N.Y.) 20220105 4


PIWI-interacting RNAs (piRNAs) repress transposons to protect the germline genome from DNA damage caused by transposon transposition. In <i>Drosophila</i>, the <i>Traffic jam</i> (<i>Tj</i>) mRNA is consumed to produce piRNA in its 3'-UTR. A <i>cis</i> element located within the 3'-UTR, <i>Tj-cis</i>, is necessary for piRNA biogenesis. In this study, we analyzed the structure of the <i>Tj-cis</i> RNA, a 100-nt RNA corresponding to the <i>Tj-cis</i> element, by the SHAPE and NMR analyses and foun  ...[more]

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