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A programmed wave of uridylation-primed mRNA degradation is essential for meiotic progression and mammalian spermatogenesis
- Source :
- Morgan, M, Kabayama, Y, Much, C, Ivanova, I, Di Giacomo, M, Auchynnikava, T, Monahan, J M, Vitsios, D M, Vasiliauskaite, L, Comazzetto, S, Rappsilber, J, Allshire, R C, Porse, B T, Enright, A J & O'Carroll, D 2019, ' A programmed wave of uridylation-primed mRNA degradation is essential for meiotic progression and mammalian spermatogenesis ', Cell Research, vol. 29, pp. 221-232 . https://doi.org/10.1038/s41422-018-0128-1, Cell Research, Morgan, M, Kabayama, Y, Much, C, Ivanova, I, Di Giacomo, M, Auchynnikava, T, Monahan, J M, Vitsios, D M, Vasiliauskaitė, L, Comazzetto, S, Rappsilber, J, Allshire, R C, Porse, B T, Enright, A J & O'Carroll, D 2019, ' A programmed wave of uridylation-primed mRNA degradation is essential for meiotic progression and mammalian spermatogenesis ', Cell Research, pp. 221–232 . https://doi.org/10.1038/s41422-018-0128-1
- Publication Year :
- 2019
- Publisher :
- Springer Science and Business Media LLC, 2019.
-
Abstract
- Several developmental stages of spermatogenesis are transcriptionally quiescent which presents major challenges associated with the regulation of gene expression. Here we identify that the zygotene to pachytene transition is not only associated with the resumption of transcription but also a wave of programmed mRNA degradation that is essential for meiotic progression. We explored whether terminal uridydyl transferase 4- (TUT4-) or TUT7-mediated 3′ mRNA uridylation contributes to this wave of mRNA degradation during pachynema. Indeed, both TUT4 and TUT7 are expressed throughout most of spermatogenesis, however, loss of either TUT4 or TUT7 does not have any major impact upon spermatogenesis. Combined TUT4 and TUT7 (TUT4/7) deficiency results in embryonic growth defects, while conditional gene targeting revealed an essential role for TUT4/7 in pachytene progression. Loss of TUT4/7 results in the reduction of miRNA, piRNA and mRNA 3′ uridylation. Although this reduction does not greatly alter miRNA or piRNA expression, TUT4/7-mediated uridylation is required for the clearance of many zygotene-expressed transcripts in pachytene cells. We find that TUT4/7-regulated transcripts in pachytene spermatocytes are characterized by having long 3′ UTRs with length-adjusted enrichment for AU-rich elements. We also observed these features in TUT4/7-regulated maternal transcripts whose dosage was recently shown to be essential for sculpting a functional maternal transcriptome and meiosis. Therefore, mRNA 3′ uridylation is a critical determinant of both male and female germline transcriptomes. In conclusion, we have identified a novel requirement for 3′ uridylation-programmed zygotene mRNA clearance in pachytene spermatocytes that is essential for male meiotic progression.
- Subjects :
- Male
UDPglucose-Hexose-1-Phosphate Uridylyltransferase
RNA Stability
Piwi-interacting RNA
Biology
Article
Germline
Transcriptome
Mice
developmental biology
03 medical and health sciences
0302 clinical medicine
Meiosis
microRNA
Animals
RNA, Messenger
Meiotic Prophase I
RNA Processing, Post-Transcriptional
Spermatogenesis
Molecular Biology
030304 developmental biology
Regulation of gene expression
0303 health sciences
Gene targeting
Cell Biology
RNA modification
Cell biology
Mice, Inbred C57BL
Female
Pachytene Stage
030217 neurology & neurosurgery
Subjects
Details
- ISSN :
- 17487838 and 10010602
- Volume :
- 29
- Database :
- OpenAIRE
- Journal :
- Cell Research
- Accession number :
- edsair.doi.dedup.....c3d33cc596cdd101c475d451dfac3008
- Full Text :
- https://doi.org/10.1038/s41422-018-0128-1