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Items: 4

1.

Divergence in DNA specificity among paralogous transcription factors contributes to their differential in vivo binding [uPBM_Elk1Ets1Gabpa_MycMaxMad]

(Submitter supplied) Members of transcription factor (TF) families, i.e. paralogous TFs, are oftentimes reported to have identical DNA-binding motifs, despite the fact that they perform distinct regulatory functions in the cell. Differential genomic targeting by paralogous TFs is generally assumed to be due to interactions with protein cofactors or the chromatin environment. Contrary to previous assumptions, we find that paralogous TFs have different intrinsic preferences for DNA, not captured by current motif models, and these differences partly explain differential genomic binding and functional specificity. more...
Organism:
Homo sapiens
Type:
Other
Platform:
GPL23935
3 Samples
Download data: TXT
Series
Accession:
GSE102810
ID:
200102810
2.

Divergence in DNA specificity among paralogous transcription factors contributes to their differential in vivo binding

(Submitter supplied) This SuperSeries is composed of the SubSeries listed below.
Organism:
Homo sapiens; synthetic construct
Type:
Genome binding/occupancy profiling by array
5 related Platforms
28 Samples
Download data: TXT
Series
Accession:
GSE97794
ID:
200097794
3.

Universal PBM 4x44k (Bulyk lab design)

(Submitter supplied) In situ oligosynthesized array with synthetic sequences that cover all possible 10-mers (Berger et al., Nature Biotechnology 2006)
Organism:
Homo sapiens
9 Series
31 Samples
Download data
Platform
Accession:
GPL23935
ID:
100023935
4.

Mad1 at 1 uM concentration and Max at 100 nM concentration [Universal PBM 4x44k]

Organism:
Homo sapiens
Source name:
Human Mad1 and Max
Platform:
GPL23935
Series:
GSE97794 GSE102810
Download data: TXT
Sample
Accession:
GSM2746659
ID:
302746659
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