Login / Signup

In vivo binding of PRDM9 reveals interactions with noncanonical genomic sites.

Corinne GreyJulie A J ClémentJérôme BuardBenjamin LeblancIvo GutMarta GutLaurent DuretBernard de Massy
Published in: Genome research (2017)
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.
Keyphrases
  • dna binding
  • copy number
  • dna damage
  • dna repair
  • endothelial cells
  • dna methylation
  • binding protein
  • transcription factor
  • gene expression
  • oxidative stress
  • amino acid
  • cell free
  • clinical practice