| Literature DB >> 27834791 |
Krzysztof P Bzymek1, Kendra A Avery1, Yuelong Ma1, David A Horne1, John C Williams1.
Abstract
Herein, multiple crystal structures of meditope peptide derivatives incorporating natural and unnatural amino acids bound to the cetuximabEntities:
Keywords: X-ray crystallography; cetuximab; meditope; monoclonal antibody; surface plasmon resonance; unnatural amino acids
Mesh:
Substances:
Year: 2016 PMID: 27834791 PMCID: PMC5101583 DOI: 10.1107/S2053230X16016149
Source DB: PubMed Journal: Acta Crystallogr F Struct Biol Commun ISSN: 2053-230X Impact factor: 1.056
Figure 1Meditope binding site. (a) Model of cetuximab IgG based on PDB entry 1igt (Harris et al., 1997 ▸). The light chain is shown in light blue and the heavy chain in light gray. (b, c) The cavity in the Fab arm can accommodate the meditope peptide (PDB entry 4gw1; Donaldson et al., 2013 ▸). The residues that are under investigation in this report are highlighted in green.
Figure 2Tyrosine at position 3 affects Arg8 (stereoviews). (a) Superposition of cQYN (pink C atoms) and F3Y, where the alanine at position 9 (A9) is substituted by Arg (R9) (light blue C atoms), superimposed on the cQFD meditope (green C atoms). The presence of a hydroxyl from Tyr3 (Y3) sterically occludes the Arg8 side chain, resulting in the loss of a hydrogen bond to the backbone of Gln111 in the heavy chain. The hydroxyl group of Y3, however, leads to the coordination of a water molecule. (b) Superposition of the Fab (cQFD in black and cQYN in pink) shows that the hydroxyl substitution leads to a slight reorientation of the meditope with respect to the Fab.
Binding kinetics for meditope variants to cetuximab
| Meditope |
|
|
| |
|---|---|---|---|---|
| CQFDLSTRRLKC | (cQFD) | 8.8 | 0.015 | 0.17 |
| GQFDLSTRRLKG | 1.7 | 0.083 | 5.0 | |
| CQYDLSTRRLKC | F3Y | 8.5 | 0.132 | 1.5 |
| CQQDLSTRRLKC | F3Q | >50 | ||
| CQHDLSTRRLKC | F3H | >50 | ||
| GQ(2-Br)FDLSTRRLKG | F3(2-Br)F | 15 | 0.270 | 1.8 |
| GQ(3-Br)FDLSTRRLKG | F3(3-Br)F | >5.4 | ||
| GQ(4-Br)FDLSTRRLKG | F3(4-Br)F | 29 | ||
| CQ(4-Br)FDLSTRRLKC | F3(4-Br)F disulfide | 3.6 | 0.101 | 2.8 |
| CQA(Ph)2DLSTRRLKC | F3A(Ph)2 | 4.5 | 0.011 | 0.24 |
| CQFDESTRRLKC | L5E | 0.34 | 0.444 | 130 |
| CQFDQSTRRLKC | L5Q | 0.46 | 0.148 | 30 |
| CQFDYSTRRLKC | L5Y | >50 | ||
| CQFDA(Ph)2STRRLKC | L5A(Ph)2 | 13 | 0.068 | 0.53 |
| GQFDLST(Cit)RLKG | R8(Cit) | >50 | ||
| GQFDLSTR(Cit)LKG | R9(Cit) | >8.0 | ||
| CQFDLSTRRQKC | L10Q | 4.1 | 0.390 | 9.5 |
Data from Bzymek et al. (2016 ▸).
Approximate value (k a and/or k d are outside the measurement range for the Biacore T100).
Affinity fit.
Figure 3Substitutions of the phenylalanine at position 3 with brominated phenylalanine analogues, shown in stereo and superimposed on the cQFD meditope (green C atoms). (a) Viewed from the top, tyrosine (purple C atoms) at position 3 blocks the extension of the side chain of Arg8 (R8). (b) Substitution with 2-bromophenylalanine (2-BrF; magenta C atoms) does not affect the positioning of R8; however, there are multiple conformation of the 2-BrF side chain. (c) Substitution with 3-bromophenylalanine (3-BrF; yellow C atoms) affects R8; however, it also produces a conformational change in Leu5 (L5). (d) Substitution with 4-bromophenylalanine (4-BrF; blue C atoms) slightly perturbs R8. (e) Side view with each variant superimposed on the cQFD meditope.
Figure 4Substitutions of the phenylalanine at position 3, shown in stereo and superimposed on the cQFD meditope (green C atoms). (a) Substitution of phenylalanine with glutamine led to multiple side-chain rotamers (hot pink C atoms). (b) Substitution of phenylalanine with histidine led to a single conformation exposed to the solvent (cyan C atoms). (c) Based on these observations, we substituted phenylalanine with diphenylalanine (orange C atoms). One phenyl group of the diphenylalanine substitution superposed with the phenyl ring of the cQFD meditope. The other phenyl group superposed well with the imidazole ring of the histidine meditope variant.
Figure 5Substitutions of leucine at position 5, shown in stereo and superimposed on the cQFD meditope (green C atoms). (a) The leucine side chain resides in a hydrophobic pocket defined by Thr90 (T90), Ile92 (I92) and Leu114 (L114) of the Fab heavy chain and Pro40 (P40) of the Fab light chain. (b) Substitution of leucine with tyrosine in the meditope positions the hydroxyl group near the side chain of Glu154 (E154) and the hydroxyl group of Tyr182 (Y182). (c) The replacement of leucine with glutamine at position 5 was intended to create a hydrogen bond to the hydroxyl group of Y182 in the heavy chain or the hydroxyl of T90 in the light chain. However, the side chain points away from the Fab. (d) Substitution with glutamic acid resulted in positioning of the carboxylic acid in the hydrophobic pocket. The high B factors of the carboxylate suggest that the positioning of the side chain is adventitious. (e) Substitution at position 5 with diphenylalanine places one phenyl group at the same position as the leucine side chain. The other phenyl group extends further into the meditope cavity that is lined with the hydrophobic residues.
Figure 6Citrulline substitutions, shown in stereo and superimposed on the cQFD meditope. The substitution of arginine with citrulline at either (a) position 8 or (b) position 9 gave structures that were indistinguishable from that of the original meditope (c).
Figure 7Substitutions of leucine at position 10, shown in stereo and superimposed on the cQFD meditope. Leu10 packs against a shallow hydrophobic pocket. Glutamine was substituted for Leu10 in an effort to form a hydrogen bond to the hydroxyl group of Tyr87 adjacent to the hydrophobic pocket. The cyan spheres represent two water molecules present in the apo structure (PDB entry 1yy8).
Figure 8Half-lives of meditope variant–cetuximab interactions. While the on-rate of a bimolecular interaction is dependent on concentration, the off-rate is not. The half-life is related to the off-rate through t = ln(2)/k d. The dashed line represents the lower limit on the determination of k d (0.5 s−1, corresponding to a 1.4 s half-life.) Note that several of the variants were cyclized through a diglycine linker, of which GQ(2-Br-F)DLSTRRLKG [F3(2-BrF)] and GQ(4-Br-F)DLSTRRLKG [F3(4-BrF)] allowed the determination of kinetic constants.
Values in parentheses are for the highest resolution shell.
| Meditope (PDB code) | F3H ( | F3Y ( | F3Q ( | F3(2-BrF) ( | F3(3-BrF) ( | F3(4-BrF) ( | F3A(Ph)2 ( |
|---|---|---|---|---|---|---|---|
| Data collection | |||||||
| Space group |
|
|
|
|
|
|
|
|
| 63.93, 82.06, 212.09 | 63.93, 82.06, 212.09 | 63.97, 82.50, 211.88 | 64.01, 82.21, 211.90 | 64.04, 82.51, 211.54 | 64.05, 83.16, 212.26 | 64.02, 82.83, 212.10 |
| α, β, γ (°) | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 |
| Resolution (Å) | 32.83–2.50 (2.56–2.50) | 32.83–2.50 (2.56–2.50) | 32.95–2.55 (2.62–2.55) | 34.14–2.51 (2.58–2.51) | 34.22–2.48 (2.55–2.48) | 34.41–2.50 (2.56–2.50) | 34.36–2.48 (2.54–2.48) |
| Wilson | 33.5 | 31.1 | 35.2 | 38.1 | 31.3 | 32.6 | 31.5 |
|
| 0.126 (0.775) | 0.066 (0.334) | 0.074 (0.390) | 0.046 (0.231) | 0.046 (0.163) | 0.082 (0.421) | 0.065 (0.312) |
| CC1/2 | 0.993 (0.645) | 0.999 (0.931) | 0.998 (0.880) | 0.999 (0.949) | 0.999 (0.977) | 0.998 (0.896) | 0.999 (0.926) |
| 〈 | 11.3 (1.8) | 24.7 (5.2) | 17.8 (3.7) | 25.2 (6.5) | 30.1 (8.9) | 20.5 (4.3) | 24.9 (5.0) |
| Completeness (%) | 99.2 (92.9) | 97.6 (91.3) | 99.0 (90.1) | 98.5 (92.3) | 99.4 (92.5) | 99.2 (92.2) | 99.4 (92.6) |
| Multiplicity | 3.7 (3.0) | 4.9 (4.5) | 4.0 (3.7) | 4.1 (3.5) | 5.8 (4.1) | 6.3 (4.9) | 6.2 (4.3) |
| Refinement | |||||||
| Resolution (Å) | 2.50 | 2.53 | 2.55 | 2.51 | 2.48 | 2.50 | 2.48 |
| No. of reflections | 39421 | 37649 | 37030 | 38565 | 40287 | 39829 | 40642 |
|
| 17.1/23.4 | 15.3/21.6 | 16.0/20.5 | 18.4/22.3 | 16.3/21.5 | 17.7/22.6 | 15.8/20.5 |
| No. of atoms | |||||||
| Protein | 6593 | 6635 | 6580 | 6551 | 6593 | 6536 | 6614 |
| Meditope | 200 | 204 (306) | 194 | 206 | 194 | 194 | 214 |
| Water | 410 | 475 | 333 | 369 | 506 | 414 | 548 |
|
| |||||||
| Fab | 26.2 | 27.9 | 33.2 | 39.6 | 30.1 | 29.9 | 21.7 |
| Meditope | 38.8 | 27.3 (46.8) | 40.2 | 52.6 | 53.4 | 40.6 | 28.3 |
| Water | 31.7 | 28.1 | 36.1 | 39.6 | 33.9 | 35.2 | 26.3 |
| R.m.s.d. | |||||||
| Bond lengths (Å) | 0.008 | 0.007 | 0.007 | 0.003 | 0.008 | 0.004 | 0.008 |
| Bond angles (°) | 1.193 | 1.144 | 0.875 | 0.597 | 1.180 | 0.729 | 1.178 |
| Ramachandran (favored/allowed/disallowed) | 96.6/3.4/0.0 | 97.3/2.7/0.0 | 96.8/3.1/0.1 | 97.5/2.5/0.0 | 96.3/3.7/0.0 | 97.5/2.5/0.0 | 97.4/2.6/0.0 |
| Meditope (PDB code) | L5Y ( | L5E ( | L5Q ( | L5A(Ph)2 ( | R8Cit ( | R9Cit ( | L10Q ( |
|---|---|---|---|---|---|---|---|
| Data collection | |||||||
| Space group |
|
|
|
|
|
|
|
|
| 64.24, 83.14, 211.94 | 64.38, 82.87, 213.00 | 64.19, 83.12, 212.56 | 64.28, 83.25, 212.30 | 64.34, 82.57, 212.05 | 64.14, 83.19, 212.46 | 64.08, 83.05, 212.67 |
| α, β, γ (°) | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 | 90.0, 90.0, 90.0 |
| Resolution (Å) | 33.15–2.48 (2.55–2.48) | 32.65–2.53 (2.60–2.53) | 44.72–1.84 (1.89–1.84) | 33.19–2.48 (2.54–2.48) | 34.29–2.48 (2.54–2.48) | 33.16–2.48 (2.55–2.48) | 33.12–2.50 (2.56–2.50) |
| Wilson | 29.1 | 32.8 | 33.2 | 31.4 | 26.5 | 24.6 | 217.1 |
|
| 0.053 (0.171) | 0.096 (0.534) | 0.060 (0.787) | 0.060 (0.293) | 0.039 (0135) | 0.054 (0.186) | 0.056 (0.185) |
| CC1/2 | 0.998 (0.980) | 0.996 (0.790) | 0.999 (0.677) | 0.999 (0.917) | 0.999 (0.987) | 0.999 (0.969) | 0.999 (0.969) |
| 〈 | 25.2 (9.2) | 15.7 (3.0) | 15.0 (2.0) | 23.5 (4.7) | 38.1 (11.4) | 29.1 (8.3) | 23.5 (7.3) |
| Completeness (%) | 95.1 (72.3) | 99.6 (98.1) | 92.3 (94.6) | 99.1 (90.3) | 98.2 (91.1) | 99.3 (93.2) | 99.3 (92.6) |
| Multiplicity | 5.2 (4.6) | 3.9 (3.4) | 3.5 (3.3) | 4.6 (3.2) | 6.2 (4.2) | 5.8 (4.1) | 4.8 (3.7) |
| Refinement | |||||||
| Resolution (Å) | 2.48 | 2.53 | 1.84 | 2.48 | 2.48 | 2.48 | 2.50 |
| No. of reflections | 39079 | 38822 | 91871 | 41103 | 40196 | 40876 | 39902 |
|
| 16.3/21.6 | 18.0/23.2 | 16.1/18.4 | 16.0/21.3 | 17.6/23.0 | 16.5/21.1 | 15.5/20.1 |
| No. of atoms | |||||||
| Protein | 6566 | 6542 | 6731 | 6604 | 6571 | 6577 | 6614 |
| Meditope | 210 | 204 | 204 | 227 | 192 | 192 | 204 |
| Water | 512 | 389 | 850 | 518 | 537 | 617 | 532 |
|
| |||||||
| Fab | 27.8 | 28.8 | 30.6 | 20.7 | 20.3 | 22.5 | 28.5 |
| Meditope | 32.5 | 34.9 | 37.0 | 27.3 | 27.2 | 28.4 | 34.4 |
| Water | 32.5 | 32.8 | 44.0 | 25.7 | 26.4 | 30.5 | 33.6 |
| R.m.s.d. | |||||||
| Bond lengths (Å) | 0.003 | 0.002 | 0.006 | 0.008 | 0.007 | 0.003 | 0.008 |
| Bond angles (°) | 0.664 | 0.683 | 0.873 | 1.149 | 0.916 | 0.644 | 1.180 |
| Ramachandran (favored/allowed/disallowed) | 97.6/2.4/0.0 | 97.0/2.9/0.1 | 98.4/1.6/0.0 | 97.5/2.5/0.0 | 96.7/3.3/0.0 | 96.9/3.1/0.0 | 96.8/3.2/0.0 |
An additional meditope that was not bound to the meditope binding pocket in the F3H structure was identified and modeled in the asymmetric unit. The binding of a third copy of the peptide appeared to be adventitious and was facilitated by crystal contacts near CH of cetuximab Fab. The numbers in parentheses correspond to the number of atoms and the B factor calculated for all three peptides.