Fertilization triggers cytosolic functions and P-body recruitment of the RNA-binding protein Mei2 to drive fission yeast zygotic development
Vjestica, A.; Salat-Canela, C.; Araoyinbo, A.
Show abstract
Compartmentalized regulation of RNAs is emerging as a key driver of developmental transitions, with RNA-binding proteins performing specialized functions in different subcellular compartments. The RNA-binding protein Mei2, which arrests mitotic proliferation and drives zygotic development in fission yeast, was shown to function in the nucleus to trigger meiotic divisions. Here, using compartment-restricted alleles, we report that Mei2 functions in the cytosol to arrest mitotic growth and initiate development. We find that Mei2 is a zygote-specific component of P-bodies that inhibits the translation of tethered mRNAs. Importantly, we show that P-bodies are necessary for Mei2-driven development. Phosphorylation of Mei2 by the inhibitory Pat1 kinase impedes P-body recruitment of both Mei2 and its target RNA. Finally, we establish that Mei2 recruitment to P-bodies and its cytosolic functions, including translational repression of tethered RNAs, depend on the RNA-binding domain of Mei2 that is dispensable for nuclear Mei2 roles. Collectively, our results dissect how distinct pools of an RNA-binding protein control developmental stages and implicate P-bodies as key regulators of gamete-to-zygote transition.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Germ granule association drives small RNA specificity for a nuclear Argonaute protein 97%
- A DEAD-box helicase drives the partitioning of a pro-differentiation NAB protein into nuclear foci 96%
- Epigenetic memory is governed by an effector recruitment specificity toggle in Heterochromatin Protein 1 96%
Similar papers in this journal
- Drosophila Males Use 5'-to-3' Phased Biogenesis to Make Stellate-silencing piRNAs that Lack Homology to Maternally Deposited piRNA Guides 95%
- Higher-order assembly is a regulatory switch that promotes outer kinetochore recruitment 95%
- Polycomb sustains promoters in a deep OFF-state by limiting PIC formation to counteract transcription 95%
Similar papers in this journal
- Asymmetric nuclear division of neural stem cells contributes to the formation of sibling nuclei with different identities 96%
- Checkpoint-independent association of Mad3BUBR1 with Stu1CLASP directs homolog alignment in meiosis I 96%
- Evolutionary diversification reveals distinct somatic versus germline cytoskeletal functions of the Arp2 branched actin nucleator protein 96%
Similar papers in this journal
- Competition between kinesin-1 and myosin-V define Drosophila posterior determination 97%
- A novel SUN1-ALLAN complex coordinates segregation of the bipartite MTOC across the nuclear envelope during rapid closed mitosis in Plasmodium 96%
- m6A reader Pho92 is recruited co-transcriptionally and couples translation efficacy to mRNA decay to promote meiotic fitness in yeast 96%
Similar papers in this journal
- Meiotic Nuclear Pore Complex Remodeling Provides Key Insights into Nuclear Basket Organization 96%
- Programmed ER fragmentation drives selective ER inheritance and degradation in budding yeast meiosis 96%
- Nuclear-enriched protein phosphatase 4 ensures outer kinetochore assemblyprior to nuclear dissolution 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.