Ataxin-2 regulates the synaptonemal complex to ensure chromosome pairing during female meiosis
Hurd, T. R.; Monteiro, V. L.; Wang, Z.; Sante, J. F.; Roselli, C.; Bakthavachalu, B.; Ramaswami, M.; Smibert, C. A.
Show abstract
Sexual reproduction relies on meiotic recombination and the accurate segregation of homologous chromosomes to generate viable, genetically diverse gametes. While the molecular mechanisms of recombination and chromosome segregation are well studied, the upstream regulatory cues that drive expression of key meiotic genes remain poorly understood, especially in metazoans. Emerging evidence suggests that post-transcriptional regulation plays a central role in initiating and coordinating the meiotic program in both fruit flies and mammals. Here, we identify the RNA-binding protein Ataxin-2 (Atx2) as a crucial regulator of meiosis in Drosophila melanogaster. We show that Atx2 positively regulates meiotic factors, especially components of the synaptonemal complex (SC), a structure essential for pairing, recombination and segregation of homologous chromosomes. In Atx2-depleted germ cells, SC component mRNA and protein levels are markedly reduced, leading to defective SC assembly and maintenance. Consequently, homologous chromosomes fail to pair properly, which is essential to ensure homolog segregation and prevent aneuploidy. These findings uncover Atx2 as a key regulator of the SC and highlight an underappreciated layer of gene regulation essential for accurate meiotic chromosome segregation and fertility.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Differentiating Drosophila female germ cells initiate Polycomb silencing by altering PRC2 sampling 97%
- TRIP13 localizes to synapsed chromosomes and functions as a dosage-sensitive regulator of meiosis 97%
- 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 97%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Transcriptional repression and enhancer decommissioning silence cell cycle genes in postmitotic tissues. 96%
- An RNAi screen to identify proteins required for cohesion rejuvenation during meiotic prophase in Drosophila oocytes 95%
- A deficiency screen identifies genomic regions critical for sperm head-tail connection 95%
Similar papers in this journal
- A sex-specific switch in a single glial cell patterns the apical extracellular matrix 96%
- The proteomic landscape of centromeric chromatin reveals an essential role for the Ctf19CCAN complex in meiotic kinetochore assembly 95%
- TORC1, BORC, ARL-8 cycling, and kinesin-1 drive vesiculation of cell corpsephagolysosomes 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.