Combinatorial control of Spo11 alternative splicing by modulation of RNA polymerase II dynamics and splicing factor recruitment during meiosis

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作者
Eleonora Cesari
Maria Loiarro
Chiara Naro
Marco Pieraccioli
Donatella Farini
Livia Pellegrini
Vittoria Pagliarini
Pamela Bielli
Claudio Sette
机构
[1] Catholic University of the Sacred Heart,Department of Neuroscience, Section of Human Anatomy
[2] IRCCS Fondazione Santa Lucia,Laboratory of Neuroembryology
[3] University of Rome Tor Vergata,Department of Biomedicine and Prevention
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Cell Death & Disease | / 11卷
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摘要
Homologous recombination and chromosome segregation in meiosis rely on the timely expression of two splice variants of the endonuclease SPO11, named α and β, which respectively skip or include exon 2. However, in spite of its physiological importance, the mechanism underlying Spo11 alternative splicing in meiosis is still unknown. By screening the activity of factors that are predicted to bind the alternatively spliced region of Spo11, we identified hnRNPH as a key regulator of SPO11α splicing in mouse spermatocytes. Although hnRNPH was not upregulated in meiosis concomitantly with the switch in splicing, its recruitment to Spo11 pre-mRNA was favored by selective modulation of RNA polymerase II (RNAPII) phosphorylation and processivity in proximity of exon 2. The hnRNPH binding sites were localized near those of splicing factors that promote SPO11β splicing, suggesting that hnRNPH favors exon 2 skipping by competing out positive regulators. Indeed, hnRNPH binds proximal to a consensus motif for Sam68, a positive regulator of SPO11β splicing in vitro and in vivo, and it interferes with Sam68 binding to the Spo11 pre-mRNA. Thus, our work reveals that modulation of RNAPII dynamics in concert with hnRNPH recruitment exerts a combinatorial control of the timely regulated Spo11 splicing during meiosis.
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  • [21] Schmidt D(1987)Synaptonemal complex antigen localization and conservation J. Cell Biol. 105 93-103
  • [22] Pan Q(2019)SAM68 interaction with U1A modulates U1 snRNP recruitment and regulates mTor pre-mRNA splicing Nucleic Acids Res. 47 4181-4197
  • [23] Dujardin G(2011)Sam68 marks the transcriptionally active stages of spermatogenesis and modulates alternative splicing in male germ cells Nucleic Acids Res. 39 4961-4974
  • [24] Soumillon M(2006)The human SWI/SNF subunit Brm is a regulator of alternative splicing Nat. Struct. Mol. Biol. 13 22-29
  • [25] Schmid R(2006)Phosphorylation and functions of the RNA polymerase IICTD Genes Dev. 20 2922-2936
  • [26] Naro C(2014)Pre-mRNA splicing is facilitated by an optimal RNA polymerase II elongation rate Genes Dev. 28 2663-2676
  • [27] Elliott DJ(2012)The RNA polymerase II CTD coordinates transcription and RNA processing Genes Dev. 26 2119-2137
  • [28] Grellscheid SN(2019)Functional Interaction between U1snRNP and Sam68 insures proper 3′ end pre-mRNA processing during germ cell differentiation Cell Rep. 26 2929-2941.e5
  • [29] Paronetto MP(2016)Spermatogenesis: the commitment to meiosis Physiol. Rev. 96 1-17
  • [30] Sette C(2014)Self-organization of meiotic recombination initiation: general principles and molecular pathways Annu. Rev. Genet. 48 187-214