Global Reorganization of Chromatin Architecture during Embronic Stem Cell Differentiation
The 3D organization of the genome is important for regulation of diverse nuclear processes ranging from transcription to DNA replication. Knowledge of the higher order chromatin structure is critical for understanding mechanisms of gene regulation by long-range control elements such as enhancers and insulators. We describe high resolution, genome-wide dynamic chromatin interaction maps in human embryonic stem cells (hESC) as they differentiate into four distinct embryonic cell lineages. Extensiv...
Provenance — who produced it, who reused it
Linked to 12 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.
- HiCRep: assessing the reproducibility of Hi-C data using a strat... 2017 · 617 cites
- Disease-Associated Short Tandem Repeats Co-localize with Chromat... 2018 · 293 cites
- Topologically associating domains are ancient features that coin... 2017 · 193 cites
- A map of cis-regulatory elements and 3D genome structures in zeb... 2020 · 169 cites
7 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
No quantitative QC rubric exists for this data type yet, so it is deliberately left unscored — this is an honest "not applicable", not a poor rating.
measured = computed from the data · extrapolated/reported = derived or from the repository · dq-1.0 · provisional — verify independently