Dual histone methyl reader ZCWPW1 facilitates repair of meiotic double strand breaks in male mice.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 32352380.
- Also identified by DOI 10.7554/eLife.53360 and PMC identifier 7237205.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Meiotic crossovers result from homology-directed repair of DNA double-strand breaks (DSBs). Unlike yeast and plants, where DSBs are generated near gene promoters, in many vertebrates DSBs are enriched at hotspots determined by the DNA binding activity of the rapidly evolving zinc finger array of PRDM9 (PR domain zinc finger protein 9). PRDM9 subsequently catalyzes tri-methylation of lysine 4 and lysine 36 of Histone H3 in nearby nucleosomes. Here, we identify the dual histone methylation reader ZCWPW1, which is tightly co-expressed during spermatogenesis with <i>Prdm9</i>, as an essential meiotic recombination factor required for efficient repair of PRDM9-dependent DSBs and for pairing of homologous chromosomes in male mice. In sum, our results indicate that the evolution of a dual histone methylation writer/reader (PRDM9/ZCWPW1) system in vertebrates remodeled genetic recombination hotspot selection from an ancestral static pattern near genes towards a flexible pattern controlled by the rapidly evolving DNA binding activity of PRDM9.
Medical subject headings
- Cell Cycle Proteins
- DNA Breaks, Double-Stranded
- DNA Repair
- Histone-Lysine N-Methyltransferase
- Meiosis
- Spermatocytes
- Spermatogenesis