Affinity-seq detects genome-wide PRDM9 binding sites and reveals the impact of prior chromatin modifications on mammalian recombination hotspot usage
We report a novel technique, Affinity-seq, that for the first time identifies both the genome-wide binding sites of DNA-binding proteins and quantitates their relative affinities. We have applied this in vitro technique to PRDM9, the zinc-finger protein that activates genetic recombination, obtaining new information on the regulation of hotspots, whose locations and activities determine the recombination landscape. We identified 31,770 binding sites in the mouse genome for the PRDM9Dom2 variant....
Provenance — who produced it, who reused it
Linked to 9 papers in the literature. Roles are inferred factual signals (who deposited the data vs who reused it), with counts — never a judgement about any author.
- The Meiotic Recombination Activator PRDM9 Trimethylates Both H3K... 2016 · 216 cites
- Dynamic reorganization of open chromatin underlies diverse trans... 2017 · 141 cites
- Affinity-seq detects genome-wide PRDM9 binding sites and reveals... 2015 · 88 cites
- Refined spatial temporal epigenomic profiling reveals intrinsic... 2020 · 79 cites
- Meiotic recombination mirrors patterns of germline replication i... 2021 · 77 cites
4 further papers cite this accession but reuse could not be confirmed.
Deep data QC
metadata only · no data-level QC for this typeStandardized, field-standard QC computed by touching the data — every metric states how it was obtained
measured = computed from the data · extrapolated/reported = derived or from the repository · dq-1.0 · provisional — verify independently