Publication | Open Access
In vivo binding of PRDM9 reveals interactions with noncanonical genomic sites
80
Citations
60
References
2017
Year
Vivo BindingGeneticsGenomic MechanismMolecular BiologyMolecular GeneticsEpigeneticsTranscriptional RegulationGene PromotersHuman MeiosisPrdm9 Reveals InteractionsGenome InstabilityMeiosisDna ReplicationChromosomal RearrangementGene ExpressionFunctional GenomicsCell BiologyGene FunctionNoncanonical Genomic SitesChromatinChromatin RemodelingNatural SciencesGene RegulationChromosome BiologySystems BiologyMedicineInsulator Protein Ctcf
In mouse and human meiosis, DNA double-strand breaks (DSBs) initiate homologous recombination and occur at specific sites called hotspots. The localization of these sites is determined by the sequence-specific DNA binding domain of the PRDM9 histone methyl transferase. Here, we performed an extensive analysis of PRDM9 binding in mouse spermatocytes. Unexpectedly, we identified a noncanonical recruitment of PRDM9 to sites that lack recombination activity and the PRDM9 binding consensus motif. These sites include gene promoters, where PRDM9 is recruited in a DSB-dependent manner. Another subset reveals DSB-independent interactions between PRDM9 and genomic sites, such as the binding sites for the insulator protein CTCF. We propose that these DSB-independent sites result from interactions between hotspot-bound PRDM9 and genomic sequences located on the chromosome axis.
| Year | Citations | |
|---|---|---|
Page 1
Page 1