ArticleNature communications2024
FIGNL1-FIRRM is essential for meiotic recombination and prevents DNA damage-independent RAD51 and DMC1 loading.
Article in Nature communications, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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9 citing papers in PubMed.
- R-loops and D-loops: a delicate balance in genomic stability and instability.Cell communication and signaling : CCS · 2026Review
- Sex-linked helicases DDX3X and DDX3Y regulate G-quadruplex-associated stress in neurons.Cell death & disease · 2026Article
- Critical roles of MCM8 in meiotic recombination during mouse spermatogenesis.bioRxiv : the preprint server for biology · 2026Article
- TPTE, a testis-specific PTEN family member, drives spermatogenesis via PI(4,5)PCell death & disease · 2026Article
- Genomic insights into chromosomal fusion and its evolutionary implications for zokors.Molecular biology and evolution · 2026Article
- The expanding roles of homologous recombination proteins in genome stability.The EMBO journal · 2026Review
- PCAF-mediated acetylation regulates RAD51 dynamic localization on chromatin during HR repair.EMBO reports · 2025Article
- Insights into the role of hnRNPK in spermatogenesis via the piRNA pathway.Scientific reports · 2025Article
- Extensive homologous recombination safeguards oocyte genome integrity in mammals.Nucleic acids research · 2025Article
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12 authors.
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Abstract
During meiosis, nucleoprotein filaments of the strand exchange proteins RAD51 and DMC1 are crucial for repairing SPO11-generated DNA double-strand breaks (DSBs) by homologous recombination (HR). A balanced activity of positive and negative RAD51/DMC1 regulators ensures proper recombination. Fidgetin-like 1 (FIGNL1) was previously shown to negatively regulate RAD51 in human cells. However, FIGNL1's role during meiotic recombination in mammals remains unknown. Here, we decipher the meiotic functions of FIGNL1 and FIGNL1 Interacting Regulator of Recombination and Mitosis (FIRRM) using male germline-specific conditional knock-out (cKO) mouse models. Both FIGNL1 and FIRRM are required for completing meiotic prophase in mouse spermatocytes. Despite efficient recruitment of DMC1 on ssDNA at meiotic DSB hotspots, the formation of late recombination intermediates is defective in Firrm cKO and Fignl1 cKO spermatocytes. Moreover, the FIGNL1-FIRRM complex limits RAD51 and DMC1 accumulation on intact chromatin, independently from the formation of SPO11-catalyzed DSBs. Purified human FIGNL1ΔN alters the RAD51/DMC1 nucleoprotein filament structure and inhibits strand invasion in vitro. Thus, this complex might regulate RAD51 and DMC1 association at sites of meiotic DSBs to promote proficient strand invasion and processing of recombination intermediates.
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