GRAS-1 is a conserved novel regulator of early meiotic chromosome dynamics in C. elegans
Martinez-Garcia, M.; Robles, P.; Skinner, M. W.; Baran, K. A.; Nadarajan, S.; Shin, N.; Silva-Garcia, C. G.; Saito, T. T.; Beese-Sims, S.; Castaner, A.; Pacheco, S.; Martinez-Perez, E.; Jordan, P. W.; Colaiacovo, M. P.
Show abstract
Chromosome movements and licensing of synapsis must be tightly regulated during early meiosis to ensure accurate chromosome segregation and avoid aneuploidy, although how these steps are coordinated is not fully understood. Here we show that GRAS-1, the worm homolog of mammalian GRASP/Tamalin and CYTIP, coordinates early meiotic events with cytoskeletal forces outside the nucleus. GRAS-1 localizes close to the nuclear envelope (NE) in early prophase I and interacts with NE and cytoskeleton proteins. Delayed homologous chromosome pairing, synaptonemal complex (SC) assembly, and DNA double-strand break repair progression are partially rescued by the expression of human CYTIP in gras-1 mutants, supporting functional conservation. However, Tamalin, Cytip double knockout mice do not exhibit obvious fertility or meiotic defects, suggesting evolutionary differences between mammals. gras-1 mutants show accelerated chromosome movement during early prophase I, implicating GRAS-1 in regulating chromosome dynamics. GRAS-1-mediated regulation of chromosome movement is DHC-1-dependent, placing it acting within the LINC-controlled pathway, and depends on GRAS-1 phosphorylation at a C-terminal S/T cluster. We propose that GRAS-1 serves as a scaffold for a multi-protein complex coordinating the early steps of homology search and licensing of SC assembly by regulating the pace of chromosome movement in early prophase I.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The kleisin subunit controls the function of meiotic cohesins by determining the mode of DNA binding and differential regulation by SCC-2 and WAPL-1 98%
- Recruitment of Polo-like kinase couples synapsis to meiotic progression via inactivation of CHK-2 97%
- Proximity labeling identifies LOTUS domain proteins that promote the formation of perinuclear germ granules in C. elegans 97%
Similar papers in this journal
- A PUF hub drives self-renewal in C. elegans germline stem cells 96%
- Ubiquitin ligases and a processive proteasome facilitate protein clearance during the oocyte-to-embryo transition in Caenorhabditis elegans 96%
- A stress-dependent postembryonic role for the core CPA factor CFIM-1 in germline integrity 96%
Similar papers in this journal
Similar papers in this journal
"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.