C. elegans BRC-1-BRD-1 functions at an early step of DSB processing and inhibits supernumerary crossovers during male meiosis
Engebrecht, J.; Li, Q.; Hariri, S.
Show abstract
Meiosis is regulated in a sex-specific manner to produce two distinct gametes, sperm and oocytes, for sexual reproduction. To determine how meiotic recombination is regulated in spermatogenesis, we analyzed the meiotic phenotypes of mutants in the tumor suppressor E3 ubiquitin ligase BRC-1-BRD-1 complex in Caenorhabditis elegans male meiosis. Unlike in mammals, this complex is not required for meiotic sex chromosome inactivation, the process whereby hemizygous sex chromosomes are transcriptionally silenced. Interestingly, brc-1 and brd-1 mutants showed meiotic recombination phenotypes that are largely opposing to those previously reported for female meiosis. Fewer meiotic recombination foci marked by the recombinase RAD-51 were observed in brc-1 and brd-1 mutants, and the reduction in RAD-51 foci can be suppressed by mutation of nonhomologous end joining proteins. We show that concentration of BRC-1-BRD-1 to sites of meiotic recombination is dependent on DNA end resection, suggesting that BRC-1-BRD-1 regulates the processing of meiotic double strand breaks to promote repair by homologous recombination, similar to a role for the complex in somatic cells. We also show that BRC-1-BRD-1 is important to promote progeny viability when male meiosis is perturbed by mutations that block the pairing and synapsis of different chromosome pairs, although the complex is not required to stabilize the RAD-51 filament as in female meiosis under the same conditions. Analyses of crossover designation and formation reveal that BRC-1-BRD-1 inhibits supernumerary crossovers when meiosis is perturbed. Together, our findings suggest that BRC-1-BRD-1 regulates different aspects of meiotic recombination in male and female meiosis.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Suppression of meiotic crossovers in pericentromeric heterochromatin requires synaptonemal complex and meiotic recombination factors in Drosophila melanogaster 97%
- The zinc-finger transcription factor LSL-1 is a major regulator of the germline transcriptional program in C. elegans 97%
- A RAD9-dependent cell cycle arrest in response to unresolved recombination intermediates in Saccharomyces cerevisiae 97%
Similar papers in this journal
- C-terminal HA tags compromise function and exacerbate phenotypes of Saccharomyces cerevisiae Bloom's helicase homolog Sgs1 SUMOylation-associated mutants 96%
- NHR-23 and SPE-44 regulate distinct sets of genes during C. elegans spermatogenesis 96%
- Mutator foci are regulated by developmental stage, RNA, and the germline cell cycle in Caenorhabditis elegans 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Heterologous synapsis in C. elegans is regulated by meiotic double-strand breaks and crossovers 97%
- shani mutation in mouse affects splicing of Spata22 and leads to impaired meiotic recombination 96%
- Using evolution as a tool: Replacing corolla in Drosophila melanogaster with its Drosophila mauritiana ortholog creates a novel hypomorphic allele 93%
"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.