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Steinberg, J. I.

Publications and source records attributed to Steinberg, J. I..

2 recordsLinked to original sources

3'-tRNA Fragments Target Domesticated LTR-Retrotransposons

Long terminal repeat (LTR) retrotransposons have been extensively co-opted by their mammalian hosts and serve essential functions. 3-tRNA fragments (3-tRFs) mediate post-transcriptional repression of active, murine LTR-retrotransposons through complementarity to their highly conserved tRNA primer binding site (PBS). Here, we found that 3-tRF target sites derived from the PBS are widespread in retrotransposon-derived transcripts, suggesting that domesticated elements remain subject to regulation. Using luciferase reporters, we validated post-transcriptional repression at multiple 5 UTR sites derived from LTR-retrotransposons. We further established paternally expressed 3 (Peg3), an imprinted gene with homology to retroviral Gag, as a target of an Arg-TCT 3-tRF via a conserved 5 UTR site. These findings provide a proof-of-principle for regulation of domesticated LTR-retrotransposons by 3-tRFs, suggesting that their ancient role in transposon defense has been co-opted for endogenous gene regulation.

molecular biology↗

HENMT1 restricts endogenous retrovirus activity by methylation of 3'-tRNA fragments

Long terminal repeat (LTR) retroelements such as endogenous retroviruses (ERVs) utilize host tRNA as a primer for reverse transcription, and are thus susceptible to silencing by small RNAs derived from the 3'-end of mature tRNAs (3'-tRFs). Rigorous quantification reveals that 3-tRF amounts are not directly proportional to tRNA levels, instead, 3-tRFs of specific isodecoder tRNAs are highly enriched in a pattern conserved between mouse and human. We found that 3-tRFs are 2-O methylated by the small RNA methyltransferase HENMT1 protecting them from degradation and promoting ERV silencing. In the absence of HENMT1, 3-tRFs are subjected to non-templated tailing by the terminal nucleotidyltransferases TUT4 and TENT2 that regulate small RNA turnover. Due to the perfect sequence complementarity of 3-tRFs to endogenous retroviral sequences, they have thousands of targets in mammalian genomes. We conducted a massively parallel reporter assay using Mus musculus particle type D, a highly active murine ERV, to determine target site rules for 3-tRFs. Our results suggest that HENMT1 not only stabilizes germline integrity but also serves transposon control by 3-tRFs in the soma.

molecular biology↗