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New PDB Depositions vs. Their Blind AlphaFold Predictions — A Running Test of “Is Folding Solved?”

6O4D_B

Alpha-aminoadipic semialdehyde dehydrogenase · P49419 · RCSB 6O4D · AF-P49419-F1 (v6)

Experimental Cα ribbon coloured by deviation from the AlphaFold model
Experimental structure, coloured by Cα deviation from the AlphaFold model

Blue where the experiment agrees with AlphaFold; amber-to-red where it diverges. The scale is anchored to absolute Ångströms, so hotspots are comparable across structures.

0Å12510Å+
○ N-terminus · ● C-terminus · ribbon widens at helices & strands · faint blue dashes = the superposed AlphaFold backbone
0.98
TM-score
0.97
lDDT
1.88
Cα-RMSD Å
98.38
mean pLDDT
0.05
FRAUD score
0.20%
novelty (99.80% id)

Per-residue accuracy vs. confidence

Reading along the protein chain: red is how far each residue sits from the experiment (Cα deviation in Å, higher = worse); green is local accuracy (lDDT×100); blue dotted is AlphaFold's own confidence (pLDDT). Stretches where confidence stays high but the red line is large are exactly where AlphaFold is confidently wrong.

Take-home: mean confidence pLDDT 98.38 vs. overall accuracy lDDT 0.97 and TM-score 0.98.

The metrics

Cα deviation: how far residue i sits from where the experiment places it, after superposing the whole chain. Δᵢ = |Pᵢ − (R·Qᵢ + t)| Å, with Pᵢ/Qᵢ the experimental/model Cα coordinates and R,t the best-fit rotation and translation.

per-residue lDDT: local accuracy at residue i without superposition — the fraction of i's neighbour distances (within 15 Å) the model preserves. lDDTᵢ = ¼ Σ_t 1[ |d_exp − d_model| < t ], t ∈ {0.5, 1, 2, 4} Å.

pLDDT: AlphaFold's confidence for residue i (0–100) — its own predicted lDDT, output by the network before seeing the experiment.

Is the confidence honest?

Each point is one residue: AlphaFold's predicted confidence (pLDDT, horizontal) against its actual accuracy (lDDT×100, vertical). Points on the dashed diagonal are perfectly calibrated; points well below it are overconfident — AlphaFold was surer than it should have been.

Take-home: pLDDT–lDDT correlation 0.6913 (near 1 = well calibrated; near or below 0 = confidence unrelated to, or opposite, real accuracy).

The metrics

pLDDT (x): AlphaFold's predicted per-residue confidence, 0–100. lDDT×100 (y): the accuracy actually achieved at that residue. Perfect calibration puts every point on the diagonal pLDDTᵢ = 100·lDDTᵢ.

Calibration correlation: the headline is the Pearson correlation of the two across all residues. r = cov(pLDDT, lDDT) / (σ_pLDDT · σ_lDDT) — near 1 means confidence tracks accuracy honestly; ≤ 0 means it does not.

Where the shape differs

The difference between the experimental and predicted residue–residue distance maps (Å). Bright regions mark pairs of residues whose separation AlphaFold got wrong — often a whole domain placed in the wrong position relative to the rest of the structure.

Take-home: mean distance-map difference 0.52 Å.

The metric

Distance-matrix difference: each cell is how much the separation of residues i and j differs between prediction and experiment. |Dᵢⱼ^exp − Dᵢⱼ^model|, where Dᵢⱼ = |rᵢ − rⱼ| is the distance between the two residues. Superposition-free, so a domain in the wrong place shows up as a bright off-diagonal block rather than being averaged away.

Did AlphaFold know it was wrong?

Left: AlphaFold's own predicted error (PAE, Å) for each residue pair. Right: the error we actually measured. Where the right panel is much brighter than the left, AlphaFold underestimated its own error.

Take-home: mean predicted error 2.66 Å vs. mean observed error 0.52 Å; 1.9% of residue pairs were more wrong than AlphaFold predicted.

The metrics

PAE (predicted): AlphaFold's Predicted Aligned Error — PAEᵢⱼ is the position error (Å) it expects for residue j when the structure is aligned on residue i, output by the network.

Observed error: the frame-invariant reality we measure for the same pair. Eᵢⱼ = | |rᵢ−rⱼ|_exp − |rᵢ−rⱼ|_model |. If the observed panel is far brighter than the predicted one, AlphaFold underestimated its own error — it was overconfident.

Per-domain breakdown

SourceDomainRangeResiduesTMRMSD Åmean Cα ΔName
PAEPAE:1-5391-539 5100.98 1.880.80
CATH3.40.605.104-272 2430.99 0.530.29 Aldehyde Dehydrogenase; Chain A, domain 1
CATH3.40.605.10467-513 470.97 0.580.32 Aldehyde Dehydrogenase; Chain A, domain 1
CATH3.40.309.10273-466 1940.99 0.430.35 Aldehyde Dehydrogenase; Chain A, domain 2

All metrics

Global fold agreement

TM-score (norm. experiment)0.98
TM-score (norm. model)0.93
TM-score (norm. shorter)0.98
TM-score (norm. longer)0.93
Cα-RMSD (Å)1.88
backbone-RMSD (Å)1.88
all-atom-RMSD (Å)1.92
core-RMSD (Å)0.41
core fraction0.97
GDT_TS96.52
GDT_HA82.60
MaxSub0.99
structural overlap (3.5 Å)0.98

Local, superposition-free

lDDT0.97
contact-map Jaccard0.94
contact precision0.97
contact recall0.96
distance-matrix mean Δ (Å)0.52
CAD-score (approx)0.93

Backbone & secondary structure

SS agreement Q3 (%)92.75
mean Δφ (°)6.70
mean Δψ (°)7.00
torsion within 30° (frac)0.96
Rg experiment (Å)24.35
Rg model (Å)24.68
ΔRg (Å)0.33

Confidence calibration

mean pLDDT98.38
pLDDT↔lDDT Pearson0.69
pLDDT↔lDDT Spearman0.49
PAE↔observed Pearson0.38
PAE overconfident frac0.02
mean PAE (Å)2.66
mean observed error (Å)0.52

Context & headline

coverage of model0.95
coverage of experiment1.00
seq identity aligned (%)99.61
confidently-wrong residue frac0.02
FRAUD score0.05

Deposited 2019-02-28 · released 2019-07-24 · X-ray · 1.88 Å · closest pre-cutoff chain: 4X0T_1