Peptide Screening — Computational Report
Six top-ranked peptide hits against MMP1 and HYAL1, each scrambled into composition-preserving sequence variants and re-screened through the identical docking → MD → MM-GBSA pipeline used for the original hits, to test whether residue ordering can be improved without changing residue composition.
Counts of scrambled variants surviving each pipeline stage per parent, from initial generation through to the two stages (MD simulation, binding free energy) still in progress.
| Peptide | Sequence | Target | Scrambled | 3-Filter Pass | Folded | Hex OK | COM Filter Pass | HADDOCK3 | Representative Structure | EM Verify | MD Simulation | Binding Free Energy |
|---|---|---|---|---|---|---|---|---|---|---|---|---|
| A596_338-343 | FNQRQG | MMP-1 | 20 | 20 | 20 | 20 | 6 | 6 | 6 | 6 | RESULTS BELOW | RESULTS BELOW |
| A123_18-23 | TTARQL | MMP-1 | 20 | 19 | 19 | 19 | 10 | 10 | 10 | 10 | RESULTS BELOW | RESULTS BELOW |
| B243_184-188 | GQRQP | MMP-1 | 20 | 15 | 15 | 15 | 11 | 11 | 11 | 11 | RESULTS BELOW | RESULTS BELOW |
| A1318orA1117 | QPHQIA | HYAL1 | 20 | 19 | 19 | 19 | 1 | 1 | 1 | 1 | RESULTS BELOW | RESULTS BELOW |
| B194_26-30 | NGNNI | HYAL1 | 19 | 11 | 11 | 11 | 0 | 0 | 0 | 0 | RESULTS BELOW | RESULTS BELOW |
| A67_191-195 | HEAIR | HYAL1 | 20 | 20 | 20 | 20 | 2 | 2 | 2 | 2 | RESULTS BELOW | RESULTS BELOW |
| Total | 119 | 104 | 104 | 104 | 30 | 30 | 30 | 30 |
| Column | Definition |
|---|---|
| 3-Filter Pass | Toxicity, Skin Permeability, AntiAging |
| Folded | Getting 3D structure |
| Hex OK | Blind docking YES/NO |
| COM Filter Pass | Center of mass of peptide within 6Å of active site, at least 5 poses out of 100 |
| HADDOCK3 | Binding at active site |
| Representative Structure | Medoid of the biggest cluster after clustering HADDOCK poses, with at least 1 H-bond |
| EM Verify | Energy minimization |
Four of thirty scrambles outperform their original. Twenty-six do not. One — a single-position transposition against HYAL1 — outperforms its parent by nearly 25 kcal/mol.
| Parent | Target | Sequence | Original ΔG | Scrambles | Best scramble | Outcome |
|---|---|---|---|---|---|---|
| A123_18-23 | MMP1 | TTARQL | −18.73 | 10 | −21.53 (scr06) | beaten, modestly |
| A596_338-343 | MMP1 | FNQRQG | −26.46 | 6 | −11.88 (scr03) | no scramble competitive |
| B243_184-188 | MMP1 | GQRQP | −17.05 | 11 | −23.64 (scr01) | beaten, modestly |
| A67_191-195 | HYAL1 | HEAIR | −14.53 | 2 | −39.25 (scr03) ★ | beaten decisively |
| A1318orA1117 | HYAL1 | QPHQIA | −25.15 | 1 | −6.35 (scr19) | n=1, worse |
| B194_26-30 | HYAL1 | NGNNI | −15.11 | 0 | NO SCRAMBLED PEPTIDE QUALIFIED | no data filtered |
| Variant | Sequence | ΔG (kcal/mol) | vs. original |
|---|---|---|---|
| scr06 | LTTQAR | −21.53 ± 5.56 | −2.8 |
| scr01 | QRTLAT | −16.48 ± 5.30 | +2.3 |
| scr05 | ATQTLR | −15.38 ± 7.12 | +3.4 |
| scr18 | RLTATQ | −14.84 ± 7.98 | +3.9 |
| scr11 | TQATLR | −14.17 ± 5.58 | +4.6 |
| scr17 | QATRTL | −12.18 ± 4.49 | +6.6 |
| scr03 | LTARTQ | −11.00 ± 8.21 | +7.7 |
| scr13 | LTAQRT | −6.20 ± 9.32 | +12.5 |
| scr10 | LAQRTT | −2.82 ± 8.09 | +15.9 |
| scr12 | TLARTQ | +5.41 ± 8.59 | +24.1 |
One scramble (scr06) edges out the original by 2.8 kcal/mol — within the method's noise band, so at best a marginal, not decisive, improvement. The other nine range from flat to substantially worse, with scr12 losing binding altogether. The spread (−21.5 to +5.4 across ten orderings of the same six residues) shows this parent's binding is order-sensitive, but the native arrangement already sits near the top of what's achievable — scrambling mostly costs energy here rather than finding a better solution.
| Variant | Sequence | ΔG (kcal/mol) | vs. original |
|---|---|---|---|
| scr03 | FRQQGN | −11.88 ± 4.29 | +14.6 |
| scr12 | NFQGQR | −11.65 ± 6.29 | +14.8 |
| scr07 | QQNGFR | −8.58 ± 7.17 | +17.9 |
| scr04 | RQQGNF | −8.27 ± 4.56 | +18.2 |
| scr15 | FNQQGR | −7.30 ± 4.45 | +19.2 |
| scr01 | RNQQFG | +4.15 ± 7.87 | +30.6 |
The clearest negative result in the set. Every one of six scrambles underperforms the original, by margins of 14.6 to 30.6 kcal/mol — nothing here is close. This is the strongest evidence in the dataset that a native sequence's specific ordering, not just its residue composition, is load-bearing for binding: for this parent, the phenylalanine/asparagine/glutamine/arginine arrangement found by the original screen already appears close to a local optimum, and no random composition-preserving reshuffle recovers it.
| Variant | Sequence | ΔG (kcal/mol) | vs. original |
|---|---|---|---|
| scr01 | QPGQR | −23.64 ± 7.71 | −6.6 |
| scr17 | PRQQG | −19.27 ± 5.59 | −2.2 |
| scr05 | QPQRG | −14.60 ± 7.20 | +2.5 |
| scr20 | PQGQR | −13.23 ± 5.83 | +3.8 |
| scr03 | RQGPQ | −13.01 ± 8.95 | +4.0 |
| scr04 | RQQGP | −10.35 ± 6.32 | +6.7 |
| scr06 | GPQRQ | −7.37 ± 14.65 | +9.7 (high var.) |
| scr14 | RPQQG | −3.96 ± 6.65 | +13.1 |
| scr18 | QQPRG | −3.51 ± 6.35 | +13.5 |
| scr07 | RQQPG | +0.71 ± 4.25 | +17.8 |
| scr13 | GQQPR | +0.58 ± 2.00 | +17.6 |
The largest scramble set, and the most graded result: two variants (scr01, scr17) beat the original by 2–7 kcal/mol, five sit within roughly 10 kcal/mol either side, and two lose binding entirely. Unlike A596_338-343, the native ordering here is not the ceiling — a genuine, modest improvement is available (scr01) — but nor is it arbitrary, since most reshuffles cost energy. This parent reads as "improvable but order-sensitive," a middle case between the other two MMP1 parents.
| Variant | Sequence | ΔG (kcal/mol) | vs. original |
|---|---|---|---|
| scr03 ★ | HEIAR | −39.25 ± 10.41 | −24.7 |
| scr12 | RHAIE | +1.46 ± 11.93 | +16.0 |
Only two orderings tested, and they land on opposite extremes: scr03 is the single strongest result across all thirty scrambles in this study; scr12 loses binding altogether. With n=2 this parent shows the highest ordering-sensitivity of the set — small positional changes swing ΔG by tens of kcal/mol in either direction. That volatility, combined with scr03 being the standout hit overall, made it worth a mechanistic follow-up rather than taking the number at face value.
scr03 is not a mutation — it's the same five residues as the original, with positions 3 and 4 (Ala, Ile) transposed: HEAIR → HEIAR. Receptor-ligand hydrogen-bond analysis (cpptraj, all 30 trajectory frames) shows this small reordering triggers a real change in how the peptide sits in the pocket, not a statistical fluctuation:
The transposition frees His418 to reach Asp110 directly (previously occupied by Arg422), redirects Arg422 onto a different acidic residue, and opens an almost entirely new reciprocal receptor→peptide network anchored on Arg115/Thr124. The energy decomposition agrees: the ΔΔG is driven mainly by a large electrostatic gain (ΔEEL −95.6 kcal/mol) partly offset by a larger desolvation penalty (ΔEGB +86.8), plus a real van der Waals packing improvement (ΔVDW −13.0) — consistent with a genuinely different, more extensively contacted pose rather than noise.
| Variant | Sequence | ΔG (kcal/mol) | vs. original |
|---|---|---|---|
| scr19 | PQHQIA | −6.35 ± 5.85 | +18.8 |
Only one scramble survived the pipeline for this parent, and it is substantially worse (+18.8 kcal/mol). With a sample of one, this cannot support a general claim about ordering sensitivity — it simply shows this particular reordering doesn't help. More scrambles would be needed before drawing any real conclusion for this parent.
igb=5, saltcon=0.15), same 30-frame / 5–10 ns sampling window, same per-frame topology construction — so scrambled and original ΔG values are directly comparable, not just directionally similar.