Strengths and considerations
No source-reviewed explanatory claims are recorded here yet.
Transcription-factor binding classification evaluates many TF–cell-type labels on chromosome-held-out genomic sequences.
Explanatory profile: limited source coverage · Automated source review, 2026-09-16. Review applies to the cited claims; unresolved fields are listed below. Numerical results retain their own review status.
| Property | Description and evidence |
|---|---|
| Datasets | EPBDXDNA/ENCODE ChIP-seq-derived human genomic bins with multilabel binding annotations.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Splits | Chromosomes 8/9 are held out for testing, chromosome 7 for validation and remaining specified chromosomes for training.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Metrics | Per-label AUROC and AUPR are macro-averaged across TF–cell-type experiments.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Baselines | TBiNet and EPBDXDNABERT-2 are explicit comparators; the latter’s underlying predictions were unavailable for paired statistical analysis.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Leakage controls | Chromosome-separated partitions reduce direct genomic overlap; validation data drive hyperparameter selection.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Uncertainty | Paired t-tests against TBiNet use TF–cell-type combinations as the comparison units; unavailable comparator predictions prevent the same paired analysis for every baseline.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Entity type | Paper-specific computational evaluation protocol.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Organisms | Human.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Assays | ENCODE ChIP-seq transcription-factor binding annotations.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Allowed inputs | Genomic sequence bins with multilabel targets.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
| Adaptation | Supervised binding prediction with chromosome-separated training/validation/test data.SourcesIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages |
Conceptual summary of the cited evaluation; exact task configuration and source version remain part of the protocol.
EPBDXDNA/ENCODE ChIP-seq-derived human genomic bins with multilabel binding annotations. Chromosomes 8/9 are held out for testing, chromosome 7 for validation and remaining specified chromosomes for training. Per-label AUROC and AUPR are macro-averaged across TF–cell-type experiments. TBiNet and EPBDXDNABERT-2 are explicit comparators; the latter’s underlying predictions were unavailable for paired statistical analysis. Chromosome-separated partitions reduce direct genomic overlap; validation data drive hyperparameter selection. Paired t-tests against TBiNet use TF–cell-type combinations as the comparison units; unavailable comparator predictions prevent the same paired analysis for every baseline.
Benchmarks bring together tasks and protocols. A task describes the biological question; a protocol defines a particular test.
These source-backed links do not make different protocols or scores interchangeable.
Explore the results reported under one evaluation protocol. Each figure keeps its source, dataset and metric together; it is not a ranking across studies.
AUROC (fraction) · Higher values are better for this metric.
Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test.
Source order is preserved. Plotted marks show point estimates; uncertainty, where reported, is retained in the printed values and table. Differences do not establish statistical significance.
Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2.: AUROC, TF-cell-type binding on held-out chromosomes8and9Source transcription and grouping reviewed by automated source review on 2026-09-17. These experiments were not independently reproduced by rewire.
Release 2026-09-17-d277315f7d76 · 6 evaluations · 12 metric rows. Different protocols are not a single leaderboard.
| Metric and finding | Coverage and uncertainty | Evidence |
|---|---|---|
| TransBind: transcription-factor DNA binding-site prediction Configuration: TransBindProtocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Author-reported evaluation · Evaluation metadata: needs review | ||
| 0.9508 AUROC Unit: fraction · Direction: higher | Uncertainty: not reported in legacy extract Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction; Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2, TransBind row, AUROC column Source checking is not independent reproduction. |
| 0.3741 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row TransBind, column AUPR; XML row7 column3 Source checking is not independent reproduction. |
| DeepSEA: TF-cell-type binding on held-out chromosomes8and9 Configuration: DeepSEAProtocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Independent external evaluation · Evaluation metadata: needs review | ||
| 0.2509 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row DeepSEA, column AUPR; XML row2 column3 Source checking is not independent reproduction. |
| 0.8934 AUROC Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row DeepSEA, column AUROC; XML row2 column2 Source checking is not independent reproduction. |
| TBiNet: TF-cell-type binding on held-out chromosomes8and9 Configuration: TBiNetProtocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Independent external evaluation · Evaluation metadata: needs review | ||
| 0.9402 AUROC Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row TBiNet, column AUROC; XML row4 column2 Source checking is not independent reproduction. |
| 0.3346 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row TBiNet, column AUPR; XML row4 column3 Source checking is not independent reproduction. |
| DanQ: TF-cell-type binding on held-out chromosomes8and9 Configuration: DanQProtocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Independent external evaluation · Evaluation metadata: needs review | ||
| 0.9254 AUROC Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row DanQ, column AUROC; XML row3 column2 Source checking is not independent reproduction. |
| 0.3065 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row DanQ, column AUPR; XML row3 column3 Source checking is not independent reproduction. |
| EPBDXDNABERT-2: TF-cell-type binding on held-out chromosomes8and9 Configuration: EPBDXDNABERT-2Protocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Result quoted from another source · Evaluation metadata: needs review | ||
| 0.9490 AUROC Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row EPBDXDNABERT-2, column AUROC; XML row6 column2 Source checking is not independent reproduction. |
| 0.3260 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row EPBDXDNABERT-2, column AUPR; XML row6 column3 Source checking is not independent reproduction. |
| finetuned DNABERT-2: TF-cell-type binding on held-out chromosomes8and9 Configuration: finetuned DNABERT-2Protocol: TF-cell-type binding on held-out chromosomes8and9 (transcription-factor DNA binding-site prediction)Dataset: genome-wide TF binding sites Per-label AUROC/AUPR macro-averaged over 690 labels. Same Table 2 test cohort; methods differ in additional protein/dynamics inputs. DeepSEA-derived 690 TF-cell-type labels; chr 7 validation; remaining autosomes+X training; chr 8/9 test. Independent external evaluation · Evaluation metadata: needs review | ||
| 0.9180 AUROC Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row finetuned DNABERT-2, column AUROC; XML row5 column2 Source checking is not independent reproduction. |
| 0.2960 AUPR Unit: fraction · Direction: higher | Uncertainty: unreported Scored: Not reported · Eligible: Not reported | source checkedIntegrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction · Table 2., row finetuned DNABERT-2, column AUPR; XML row5 column3 Source checking is not independent reproduction. |
Last literature check: 2026-09-17. Primary-source discovery and table/protocol screening; source checked is not independently reproduced. Raw acquisitions not automatically numerical publication approval.
| Paper or primary resource | Version | Reference |
|---|---|---|
| Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction | version of record | Read source DOI: 10.1093/nargab/lqag047 |
complete comparison tables extracted pending publication review
No source-reviewed explanatory claims are recorded here yet.
Task-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced.
Stable record: reported-task-ac191e878dff5eTrace each statement to its source and review. A context-only reference supports the record generally; it does not verify an individual field. Source checking does not reproduce an experiment.
One row per statement and cited source. Multiple citations are not independent evaluations. Shared locators are labelled explicitly.
17 evidence rows matching the loaded filters
| Property and statement | Original source and location | Review and provenance |
|---|---|---|
| Diagram caption Conceptual summary of the cited evaluation; exact task configuration and source version remain part of the protocol. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Diagram steps ["Input: Genomic sequence bins with multilabel targets.","Evaluation: Supervised binding prediction with chromosome-separated training/validation/test data.","Readout: Per-label AUROC and AUPR are macro-averaged across TF–cell-type experiments."] Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Diagram title Computational evaluation flow Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Datasets EPBDXDNA/ENCODE ChIP-seq-derived human genomic bins with multilabel binding annotations. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Splits Chromosomes 8/9 are held out for testing, chromosome 7 for validation and remaining specified chromosomes for training. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Adaptation Supervised binding prediction with chromosome-separated training/validation/test data. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Metrics Per-label AUROC and AUPR are macro-averaged across TF–cell-type experiments. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Baselines TBiNet and EPBDXDNABERT-2 are explicit comparators; the latter’s underlying predictions were unavailable for paired statistical analysis. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Leakage controls Chromosome-separated partitions reduce direct genomic overlap; validation data drive hyperparameter selection. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Uncertainty Paired t-tests against TBiNet use TF–cell-type combinations as the comparison units; unavailable comparator predictions prevent the same paired analysis for every baseline. Individual claims | Integrating protein and DNA embeddings for improving genome-wide transcription factor binding site prediction Methods: DNA data; Training and evaluation; cached text lines 13–18, 49–51; comparative evaluation and ablation passages; uncertainty/repeat-run/statistical-comparison passages Version: version of record | source checked automated source review · 2026-09-16 Audit detailsTask-specific computational methodology and field context checked in the cited primary-source artifact. Source-backed fields, inapplicable evaluator dimensions and unresolved details are distinguished. Numerical results were not reproduced. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
Release 2026-09-17-d277315f7d76 · Record review: needs review
Stable ID: reported-task-ac191e878dff5e