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The chromatin-associated 53BP1 ortholog, HSR-9, regulates recombinational repair and chromosome segregation in the germ line. | LitMetric

AI Article Synopsis

  • The protein 53BP1 is important for DNA damage repair and checkpoint signaling in somatic cells, while its function in meiosis is less understood.
  • The study reveals that HSR-9, the counterpart of 53BP1, binds to chromatin in both growing and meiotic germ cells, showing higher levels on chromosome pairs in specific stages of oogenesis.
  • HSR-9 influences the processing of amino acid sequences in meiotic double strand breaks and contributes to chromosome segregation, indicating it has both shared and distinct roles compared to its ortholog in somatic cells.

Article Abstract

53BP1 plays a crucial role in regulating DNA damage repair pathway choice and checkpoint signaling in somatic cells; however, its role in meiosis has remained enigmatic. In this study, we demonstrate that the ortholog of 53BP1, HSR-9, associates with chromatin in both proliferating and meiotic germ cells. Notably, HSR-9 is enriched on the chromosome pair in pachytene oogenic germ cells. HSR-9 is also present at kinetochores during both mitotic and meiotic divisions but does not appear to be essential for monitoring microtubule-kinetochore attachments or tension. Using cytological markers of different steps in recombinational repair, we found that HSR-9 influences the processing of a subset of meiotic double strand breaks into COSA-1-marked crossovers. Additionally, HSR-9 plays a role in meiotic chromosome segregation under conditions where chromosomes fail to pair, synapse, and recombine. Together, these results highlight that chromatin-associated HSR-9 has both conserved and unique functions in the regulation of meiotic chromosome behavior.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11042201PMC
http://dx.doi.org/10.1101/2024.04.12.589267DOI Listing

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