Datasets
Combined RNAglib/RNAsite training data; T18, T3 and newly curated T10 tests.
RNA small-molecule binding-site prediction uses independent RNA–ligand test collections with explicit redundancy filtering.
Combined RNAglib/RNAsite training data; T18, T3 and newly curated T10 tests.
Precision, recall, MCC and ROC-AUC.
RNA representations for site prediction.
Conceptual summary of the cited evaluation; exact task configuration and source version remain part of the protocol.
limited source coverage · Automated source review, 2026-09-16. All specifications and missing details
Results are available, but no reviewed comparison panel is linked in this release.
1 evaluation · 1 result. Different protocols are not a single leaderboard.
Applied filters: All linked evaluations
| Tested configuration | Protocol and dataset | Finding | Evidence and details |
|---|---|---|---|
| Configuration: RLsite | Task: RNA-small-molecule binding-site prediction Dataset: T18 | 0.828 AUC fraction · unknown Uncertainty: Not reported Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceRLsite: RNA-small-molecule binding-site prediction RNA language-model plus graph-attention classifier Aggregation: Not reported RNA language model and graph attention network for RNA and small molecule binding sites prediction · Table 1, RLsite row, T18 AUC column |
Source checking is not independent reproduction. Release 2026-09-29-06401fd5b220.
Combined RNAglib/RNAsite training data; T18, T3 and newly curated T10 tests. The named test collections are held separate; T10 uses later PDB entries. Precision, recall, MCC and ROC-AUC. Training data align with MultiModRLBP for comparison. T3 removes high-similarity RNAs relative to training; T10 is clustered and filtered against training RNA. The paper reports t-tests comparing metrics; the exact replication unit should be confirmed before interpreting them as independent-sample uncertainty.
Each evaluation records what was tested and under which conditions.
No runnable recipe has been reviewed for this task. Dataset access, model requirements, licences and compute requirements must be checked against its sources before execution.
A task describes a biological question. Choose a linked protocol to obtain concrete split and scoring instructions.
No source-reviewed explanatory claims are recorded here yet.
Relevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged.
Stable record: reported-task-b00a636d1ed8d9Explanatory 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 | Combined RNAglib/RNAsite training data; T18, T3 and newly curated T10 tests.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Splits | The named test collections are held separate; T10 uses later PDB entries.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Metrics | Precision, recall, MCC and ROC-AUC.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Baselines | Training data align with MultiModRLBP for comparison.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Leakage controls | T3 removes high-similarity RNAs relative to training; T10 is clustered and filtered against training RNA.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Uncertainty | The paper reports t-tests comparing metrics; the exact replication unit should be confirmed before interpreting them as independent-sample uncertainty.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Entity type | Paper-specific computational evaluation protocol.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Organisms | RNAglib/RNAsite-derived RNA chains and PDB-derived test sets define this benchmark. Section 2.1 reports chain and ligand membership criteria but not a taxonomic inventory; synthetic aptamer examples cannot be assigned an organism from the surrounding disease discussion. · Not reported in inspected sourcesSourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · §2.1 Benchmark datasets; RNA–ligand test examples |
| Assays | RNA–small-molecule binding-site annotations.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Allowed inputs | RNA representations for site prediction.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
| Adaptation | Supervised fitting on the combined training data; later PDB entries supply one held-out test.SourcesRNA language model and graph attention network for RNA and small molecule binding sites prediction · Methods §§2.1, 2.7; cached text lines 13–15, 57–58 |
Source checking verifies the cited claim or transcription. It does not establish independent reproduction.
Last literature check: 2026-09-17. Primary-paper discovery and source inspection. Source-checked results are not independently reproduced experiments.
| Paper or primary resource | Version | Reference |
|---|---|---|
| RNA language model and graph attention network for RNA and small molecule binding sites prediction | journal full text in PMC | Read source DOI: 10.1093/bioinformatics/btaf447 |
The catalogue now holds 1 result rows for this benchmark. A note below about pending extraction describes the state on 2026-09-17 and may since have been answered by a later batch. The result rows and their sources are the current record.
primary comparison table screened
Trace 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 | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
Diagram steps
| RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Diagram title Computational evaluation flow Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Datasets Combined RNAglib/RNAsite training data; T18, T3 and newly curated T10 tests. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Splits The named test collections are held separate; T10 uses later PDB entries. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Adaptation Supervised fitting on the combined training data; later PDB entries supply one held-out test. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Metrics Precision, recall, MCC and ROC-AUC. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Baselines Training data align with MultiModRLBP for comparison. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Leakage controls T3 removes high-similarity RNAs relative to training; T10 is clustered and filtered against training RNA. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
| Uncertainty The paper reports t-tests comparing metrics; the exact replication unit should be confirmed before interpreting them as independent-sample uncertainty. Individual claims | RNA language model and graph attention network for RNA and small molecule binding sites prediction Methods §§2.1, 2.7; cached text lines 13–15, 57–58 Version: journal full text in PMC | source checked automated source review · 2026-09-16 Audit detailsRelevant full-paper computational evaluation sections, tables/captions and cited supplementary task passages were reviewed. Reporting omissions are scoped to the inspected sources. Original numerical results are unchanged. Field: Source artifact SHA-256: Hash scope: Hash scope not separately documented; inspect source record |
View linked audit checks and correction history
Release 2026-09-29-06401fd5b220 · Record review: needs review
Stable ID: reported-task-b00a636d1ed8d9