Predicted to enable DNA-binding transcription activator activity, RNA polymerase II-specific and RNA polymerase II transcription regulatory region sequence-specific DNA binding activity. Predicted to be involved in positive regulation of transcription by RNA polymerase II and regulation of cell population proliferation. Predicted to act upstream of or within inferior colliculus development; negative regulation of neuron apoptotic process; and positive regulation of DNA-templated transcription. Predicted to be located in chromatin. Predicted to be part of transcription regulator complex. Predicted to be active in nucleus. [provided by Alliance of Genome Resources, Jul 2025]
Transcription factors with Perturb-seq knockdown data for TFAP2D. The Binding column indicates whether any binding evidence exists for this TF–gene pair (ChIP-seq or motif footprint peaks). The Mean coef is the average Perturb-seq regression coefficient across active gRNAs (positive = TFAP2D upregulated upon KD; negative = downregulated). The Outlier column indicates whether this gene is in the top or bottom 5% of all TF knockdown effects.
| TF | Mean coef | Binding | Outlier | TF→Gene link |
|---|
Open chromatin peaks (ATAC-seq) in the genomic neighbourhood of TFAP2D, linked by TSS proximity or chromatin conformation (Multiome / HiCAR). Each element overlaps at least one TF ChIP-seq binding site — the TFs column shows how many distinct TFs bind that element.
| Accessibility | Element | Dist. to TSS | Link type | TFs |
|---|---|---|---|---|
| chr6:50,707,719–50,708,228 | 9.8 kb | Proximal (<10kb) | 122 | |
| chr6:50,714,442–50,716,277 | 1.8 kb | Proximal (<10kb) | 221 | |
| chr6:50,717,796–50,718,815 | at TSS | At TSS | 115 | |
| chr6:50,720,555–50,721,076 | 2.5 kb | Proximal (<10kb) | 152 | |
| chr6:50,723,253–50,723,411 | 5.2 kb | Proximal (<10kb) | 33 | |
| chr6:50,723,855–50,724,263 | 5.8 kb | Proximal (<10kb) | 27 | |
| chr6:50,724,393–50,725,108 | 6.4 kb | Proximal (<10kb) | 111 |
Genomic view of the TFAP2D locus showing ATAC-seq accessibility and RNA-seq expression across the ESC → DE time course, together with TF binding peaks and element-to-TSS loop connections.