AI Article Synopsis

  • During meiosis, double strand breaks (DSBs) are repaired preferentially between homologous chromosomes, relying on proteins Rad51 and Dmc1 for interhomolog bias and meiotic recombination.
  • In dmc1Δ mutants, Rad51 is inhibited, leading to prophase arrest due to unresolved DSBs, with this inhibition dependent on the kinase Mek1 acting through two mechanisms that prevent Rad51’s accessory factor Rad54 from forming complexes.
  • This study reveals that Mek1 phosphorylates Hed1, strengthening its ability to suppress Rad51 activity, thus ensuring proper chromosome crossover and stability during meiosis.

Article Abstract

During meiosis, programmed double strand breaks (DSBs) are repaired preferentially between homologs to generate crossovers that promote proper chromosome segregation at Meiosis I. In many organisms, there are two strand exchange proteins, Rad51 and the meiosis-specific Dmc1, required for interhomolog (IH) bias. This bias requires the presence, but not the strand exchange activity of Rad51, while Dmc1 is responsible for the bulk of meiotic recombination. How these activities are regulated is less well established. In dmc1Δ mutants, Rad51 is actively inhibited, thereby resulting in prophase arrest due to unrepaired DSBs triggering the meiotic recombination checkpoint. This inhibition is dependent upon the meiosis-specific kinase Mek1 and occurs through two different mechanisms that prevent complex formation with the Rad51 accessory factor Rad54: (i) phosphorylation of Rad54 by Mek1 and (ii) binding of Rad51 by the meiosis-specific protein Hed1. An open question has been why inhibition of Mek1 affects Hed1 repression of Rad51. This work shows that Hed1 is a direct substrate of Mek1. Phosphorylation of Hed1 at threonine 40 helps suppress Rad51 activity in dmc1Δ mutants by promoting Hed1 protein stability. Rad51-mediated recombination occurring in the absence of Hed1 phosphorylation results in a significant increase in non-exchange chromosomes despite wild-type levels of crossovers, confirming previous results indicating a defect in crossover assurance. We propose that Rad51 function in meiosis is regulated in part by the coordinated phosphorylation of Rad54 and Hed1 by Mek1.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4970670PMC
http://dx.doi.org/10.1371/journal.pgen.1006226DOI Listing

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