rewirebio.iobenchmarks
Dataset

BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)

Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.

Research readiness

These checks assess whether the evidence supports a reproducible investigation. A source-checked score alone does not meet these requirements.

Release 2026-10-10-6e93f504adfc · Evidence verified: Not verified

Evidence incomplete

Replay metrics

Exact outcomes, predictions, identifiers and evaluator are connected.

Missing or unresolved evidence

  • No verified artifact manifest is linked to this exact record.
  • artifact hashes: verification is missing
  • join integrity: verification is missing
  • score semantics: verification is missing
  • metric replay: verification is missing

Verified: Not verified

Evidence incomplete

Investigate discrepancies

Replay evidence includes annotations and an assessment of dependence. Unknown independence permits descriptive analysis only.

Missing or unresolved evidence

  • No verified artifact manifest is linked to this exact record.
  • artifact hashes: verification is missing
  • join integrity: verification is missing
  • score semantics: verification is missing
  • metric replay: verification is missing
  • annotations: verification is missing
  • dependence: verification is missing

Verified: Not verified

Evidence incomplete

Run locally

A pinned recipe describes the inputs, environment and resource requirements.

Missing or unresolved evidence

  • No verified artifact manifest is linked to this exact record.
  • artifact hashes: verification is missing
  • join integrity: verification is missing
  • score semantics: verification is missing
  • recipe pinned: verification is missing
  • resource estimate: verification is missing

Verified: Not verified

Evidence incomplete

Validate independently

Separate data and exposure records support an independent test.

Missing or unresolved evidence

  • No verified artifact manifest is linked to this exact record.
  • artifact hashes: verification is missing
  • join integrity: verification is missing
  • score semantics: verification is missing
  • independent validation: verification is missing
  • overlap checked: verification is missing

Verified: Not verified

Readiness describes the evidence in this release. Availability on your computer is checked separately when an investigation runs. Existing data exposure can prevent independent validation even when files are available.

Artifacts and reproduction

No verified artifact manifest is connected to this record yet. The gaps above identify what is needed before analysis can begin.

Read reviewed discrepancy investigations

Evaluation results

8 evaluations · 30 results. Different protocols are not a single leaderboard.

Filter evaluations

Applied filters: All linked evaluations

Exact evaluated configurations and original reported results
Tested configurationProtocol and datasetFindingEvidence and details
Configuration: ConSpliceML (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.915 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

ConSpliceML on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B9; row ConSpliceML, column BRCA1
Configuration: ConSpliceML (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.727 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

ConSpliceML on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B17; row Exon_ConSpliceML, column BRCA1
Configuration: ConSpliceML (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.925 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

ConSpliceML on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B25; row Intron_ConSpliceML, column BRCA1
Configuration: ConSpliceML (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.833 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

ConSpliceML on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B33; row Intron_NonCanon_ConSpliceML, column BRCA1
Configuration: HAL (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.909 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

HAL on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B2; row HAL, column BRCA1
Configuration: HAL (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.909 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

HAL on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B10; row Exon_HAL, column BRCA1
Configuration: MMSplice (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.978 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

MMSplice on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B4; row MMSplice, column BRCA1
Configuration: MMSplice (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.818 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

MMSplice on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B12; row Exon_MMSplice, column BRCA1
Configuration: MMSplice (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.986 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

MMSplice on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B20; row Intron_MMSplice, column BRCA1
Configuration: MMSplice (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.969 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

MMSplice on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B28; row Intron_NonCanon_MMSplice, column BRCA1
Configuration: Pangolin (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.982 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

Pangolin on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B8; row Pangolin, column BRCA1
Configuration: Pangolin (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.909 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

Pangolin on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B16; row Exon_Pangolin, column BRCA1
Configuration: Pangolin (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.986 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

Pangolin on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B24; row Intron_Pangolin, column BRCA1
Configuration: Pangolin (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.969 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

Pangolin on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B32; row Intron_NonCanon_Pangolin, column BRCA1
Configuration: S-Cap (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.955 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

S-Cap on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B3; row S-Cap, column BRCA1
Configuration: S-Cap (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
1 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

S-Cap on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B11; row Exon_S-Cap, column BRCA1
Configuration: S-Cap (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.953 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

S-Cap on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B19; row Intron_S-Cap, column BRCA1
Configuration: S-Cap (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.896 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

S-Cap on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B27; row Intron_NonCanon_S-Cap, column BRCA1
Configuration: SPANR (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.753 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SPANR on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B6; row SPANR, column BRCA1
Configuration: SPANR (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.273 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SPANR on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B14; row Exon_SPANR, column BRCA1
Configuration: SPANR (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.778 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SPANR on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B22; row Intron_SPANR, column BRCA1
Configuration: SPANR (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.583 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SPANR on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B30; row Intron_NonCanon_SPANR, column BRCA1
Configuration: SpliceAI (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.982 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SpliceAI on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B7; row SpliceAI, column BRCA1
Configuration: SpliceAI (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.909 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SpliceAI on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B15; row Exon_SpliceAI, column BRCA1
Configuration: SpliceAI (Smith and Kitzman 2023)Protocol: BRCA1 saturation genome editing, synonymous and intronic SNVs: transcriptome-normalised sensitivity at a 10% background call rate (Smith and Kitzman Table S2)
Dataset: BRCA1 saturation genome editing, synonymous and intronic SNVs (Smith and Kitzman benchmark set)
0.986 recall
fraction · higher

Uncertainty: Not reported by the source

Coverage: Not reported scored / Not reported eligible

Independent external evaluation · Source checked
Methods, coverage and source

SpliceAI on BRCA1 saturation genome editing, synonymous and intronic SNVs

splicing-follow-up-20261009-protocol-smith2023-brca1-sge-tn10

Aggregation: Not reported

Benchmarking splice variant prediction algorithms using massively parallel splicing assays; Smith and Kitzman 2023, Additional file 3 (Table S2) · Additional file 3 sheet 'Sensitivity 10% SDV', cell B23; row Intron_SpliceAI, column BRCA1

Source checking is not independent reproduction. Release 2026-10-10-6e93f504adfc.

Dataset and evaluation context

A dataset supplies biological observations. The evaluation protocol defines how those observations are split, used and scored.

Evidence

Source checking verifies the cited claim or transcription. It does not establish independent reproduction.

Evidence table

Inspect claims, sources and review details

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.

12 evidence rows matching the loaded filters

Claims, original sources and review scope · Release 2026-10-10-6e93f504adfc
Property and statementOriginal source and locationReview and provenance
attributes.population
Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.
Context-only references
Benchmarking splice variant prediction algorithms using massively parallel splicing assays

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: Genome Biology 24:294, published 2023-12-21; PMC10734170 full-text XML
Retrieved: 2026-10-09T20:49:26Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.population

Source artifact SHA-256: 5aceff067af63ab59400ade7dd7db563a16fc7f4d6db6fa55d5b34689f7a0769

Hash scope: Hash scope not separately documented; inspect source record

Inspected artifact

attributes.population
Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.
Context-only references
Smith and Kitzman 2023, Additional file 3 (Table S2)

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 13059_2023_3144_MOESM3_ESM.xlsx inside the Europe PMC supplementaryFiles zip for PMC10734170
Retrieved: 2026-10-09T20:49:34Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.population

Source artifact SHA-256: c5ed8dc1488f87a1aff766c0ed4c8b3faab148259ca6e6f28e729b9a57a700fa

Hash scope: SHA-256 of the MOESM3 xlsx member (zip SHA-256 e06758da73eda5d4ba9c61361514ed2d84573bf50df5bf8036102389e019d525; Europe PMC assembles the zip per request).

Inspected artifact

attributes.source_locator
Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'
Context-only references
Benchmarking splice variant prediction algorithms using massively parallel splicing assays

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: Genome Biology 24:294, published 2023-12-21; PMC10734170 full-text XML
Retrieved: 2026-10-09T20:49:26Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.source_locator

Source artifact SHA-256: 5aceff067af63ab59400ade7dd7db563a16fc7f4d6db6fa55d5b34689f7a0769

Hash scope: Hash scope not separately documented; inspect source record

Inspected artifact

attributes.source_locator
Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'
Context-only references
Smith and Kitzman 2023, Additional file 3 (Table S2)

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 13059_2023_3144_MOESM3_ESM.xlsx inside the Europe PMC supplementaryFiles zip for PMC10734170
Retrieved: 2026-10-09T20:49:34Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.source_locator

Source artifact SHA-256: c5ed8dc1488f87a1aff766c0ed4c8b3faab148259ca6e6f28e729b9a57a700fa

Hash scope: SHA-256 of the MOESM3 xlsx member (zip SHA-256 e06758da73eda5d4ba9c61361514ed2d84573bf50df5bf8036102389e019d525; Europe PMC assembles the zip per request).

Inspected artifact

attributes.split
No split; whole set is the benchmark
Context-only references
Benchmarking splice variant prediction algorithms using massively parallel splicing assays

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

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Version: Genome Biology 24:294, published 2023-12-21; PMC10734170 full-text XML
Retrieved: 2026-10-09T20:49:26Z

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Source artifact SHA-256: 5aceff067af63ab59400ade7dd7db563a16fc7f4d6db6fa55d5b34689f7a0769

Hash scope: Hash scope not separately documented; inspect source record

Inspected artifact

attributes.split
No split; whole set is the benchmark
Context-only references
Smith and Kitzman 2023, Additional file 3 (Table S2)

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 13059_2023_3144_MOESM3_ESM.xlsx inside the Europe PMC supplementaryFiles zip for PMC10734170
Retrieved: 2026-10-09T20:49:34Z

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Hash scope: SHA-256 of the MOESM3 xlsx member (zip SHA-256 e06758da73eda5d4ba9c61361514ed2d84573bf50df5bf8036102389e019d525; Europe PMC assembles the zip per request).

Inspected artifact

attributes.version
Additional file 2 Table S1 (as published)
Context-only references
Benchmarking splice variant prediction algorithms using massively parallel splicing assays

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: Genome Biology 24:294, published 2023-12-21; PMC10734170 full-text XML
Retrieved: 2026-10-09T20:49:26Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.version

Source artifact SHA-256: 5aceff067af63ab59400ade7dd7db563a16fc7f4d6db6fa55d5b34689f7a0769

Hash scope: Hash scope not separately documented; inspect source record

Inspected artifact

attributes.version
Additional file 2 Table S1 (as published)
Context-only references
Smith and Kitzman 2023, Additional file 3 (Table S2)

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 13059_2023_3144_MOESM3_ESM.xlsx inside the Europe PMC supplementaryFiles zip for PMC10734170
Retrieved: 2026-10-09T20:49:34Z

not individually reviewed

No individual claim review recorded

Audit details

Field: attributes.version

Source artifact SHA-256: c5ed8dc1488f87a1aff766c0ed4c8b3faab148259ca6e6f28e729b9a57a700fa

Hash scope: SHA-256 of the MOESM3 xlsx member (zip SHA-256 e06758da73eda5d4ba9c61361514ed2d84573bf50df5bf8036102389e019d525; Europe PMC assembles the zip per request).

Inspected artifact

description
Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.
Context-only references
Benchmarking splice variant prediction algorithms using massively parallel splicing assays

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: Genome Biology 24:294, published 2023-12-21; PMC10734170 full-text XML
Retrieved: 2026-10-09T20:49:26Z

not individually reviewed

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Field: description

Source artifact SHA-256: 5aceff067af63ab59400ade7dd7db563a16fc7f4d6db6fa55d5b34689f7a0769

Hash scope: Hash scope not separately documented; inspect source record

Inspected artifact

description
Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.
Context-only references
Smith and Kitzman 2023, Additional file 3 (Table S2)

Original source ↗

Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'

Shared locator for this statement’s cited sources; not a separate locator for each citation.

Version: 13059_2023_3144_MOESM3_ESM.xlsx inside the Europe PMC supplementaryFiles zip for PMC10734170
Retrieved: 2026-10-09T20:49:34Z

not individually reviewed

No individual claim review recorded

Audit details

Field: description

Source artifact SHA-256: c5ed8dc1488f87a1aff766c0ed4c8b3faab148259ca6e6f28e729b9a57a700fa

Hash scope: SHA-256 of the MOESM3 xlsx member (zip SHA-256 e06758da73eda5d4ba9c61361514ed2d84573bf50df5bf8036102389e019d525; Europe PMC assembles the zip per request).

Inspected artifact

Sources and history

Release 2026-10-10-6e93f504adfc · Record review: source checked

2 source records and release historyDownload this release (gzip)
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Stable ID: splicing-follow-up-20261009-data-smith2023-brca1-sge

areas
dna-genomes
contexts
research
version
Additional file 2 Table S1 (as published)
split
No split; whole set is the benchmark
population
Saturation genome editing of 11 BRCA1 exons at the endogenous locus with RNA-seq splicing readout (Findlay et al.); synonymous and intronic variants only.
source locator
Results 'A validation set of variants and splice effects'; Methods 'Saturation mutagenesis datasets' and 'Manual curation of clinical MLH1 variants'
missing metadata
variants: reason: unextracted; note: Per-dataset counts are in Additional file 2 and Figure 1, not read
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