The 14-3-3 Proteins Bmh1 and Bmh2 Are Key Regulators of Meiotic Commitment
Gavade, J.; Puccia, C. M.; Herod, S. G.; Trinidad, J.; Berchowitz, L. E.; Lacefield, S.
Show abstract
Induction of meiosis requires exogenous signals that activate internal gene regulatory networks. Meiotic commitment ensures the irreversible continuation of meiosis, even upon withdrawal of the meiosis inducing signals. Budding yeast cells have a unique property in that cells enter meiosis when starved, but if given nutrient-rich medium prior to the commitment point, they exit meiosis and enter mitosis. After the meiotic commitment point in prometaphase I, cells remain in meiosis even with addition of nutrients. Despite the importance of meiotic commitment in ensuring the production of gametes, only a few genes involved in the commitment process are known. We performed a genome-scale screen in budding yeast and discovered new regulators of meiotic commitment including Bcy1, which is involved in nutrient sensing, the meiosis-specific kinase Ime2, Polo kinase Cdc5, and the 14-3-3 proteins Bmh1 and Bmh2. Importantly, we found that Bmh1 and Bmh2 are involved in multiple processes throughout meiosis including the maintenance of the middle meiosis transcription factor Ndt80, activation of Cdc5, and interaction with an RNA-binding protein Pes4, which is important for regulating the timing of translation of several mRNAs in meiosis II. This study identifies a meiotic commitment regulatory network with the 14-3-3 proteins functioning as central regulators.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Phosphorylation of luminal region of the SUN-domain protein Mps3 promotes nuclear envelope localization during meiosis 97%
- The yeast RNA methylation complex consists of conserved yet reconfigured components with m6A-dependent and independent roles 97%
- Negative regulation of APC/C activation by MAPK-mediated attenuation of Cdc20Slp1 under stress 97%
Similar papers in this journal
- Distinct Aurora B pools at the inner centromere and kinetochore have different contributions to meiotic and mitotic chromosome segregation 98%
- Redistribution of centrosomal proteins by centromeres and Polo kinase controls partial nuclear envelope breakdown in fission yeast 97%
- The microtubule plus-end tracking protein Bik1 is required for chromosome congression 97%
Similar papers in this journal
- A non-canonical Hippo pathway regulates spindle disassembly and cytokinesis during meiosis in Saccharomyces cerevisiae 97%
- Growth-dependent activation of protein kinases suggests a mechanism for measuring cell growth 97%
- Hyperactive Ras disrupts cell size control and a key step in cell cycle entry in budding yeast 97%
"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.