| Literature DB >> 32039888 |
Samuel Davis1, Hugo Rego Campello2, Timothy Gallagher2, William N Hunter1.
Abstract
Cytisine, a natural product with high affinity for clinically relevant nicotinic acetylcholine receptors (nAChRs), is used as a smoking-cessation agent. The compound displays an excellent clinical profile and hence there is an interest in derivatives that may be further improved or find use in the treatment of other conditions. Here, the binding of a cytisine derivative modified by the addition of a 3-(hydroxypropyl) moiety (ligand 4) to Aplysia californica acetylcholine-binding protein (AcAChBP), a surrogate for nAChR orthosteric binding sites, was investigated. Isothermal titration calorimetry revealed that the favorable binding of cytisine and its derivative to AcAChBP is driven by the enthalpic contribution, which dominates an unfavorable entropic component. Although ligand 4 had a less unfavorable entropic contribution compared with cytisine, the affinity for AcAChBP was significantly diminished owing to the magnitude of the reduction in the enthalpic component. The high-resolution crystal structure of the AcAChBP-4 complex indicated close similarities in the protein-ligand interactions involving the parts of 4 common to cytisine. The point of difference, the 3-(hydroxypropyl) substituent, appears to influence the conformation of the Met133 side chain and helps to form an ordered solvent structure at the edge of the orthosteric binding site. open access.Entities:
Keywords: acetylcholine-binding protein; crystal structure; cytisine; ligand-gated ion channel; nicotine
Mesh:
Substances:
Year: 2020 PMID: 32039888 PMCID: PMC7010356 DOI: 10.1107/S2053230X20001168
Source DB: PubMed Journal: Acta Crystallogr F Struct Biol Commun ISSN: 2053-230X Impact factor: 1.056
Figure 1The chemical structures of nicotine {1; 3-[(2S)-1-methyl-2-pyrrolidinyl]pyridine}, cytisine [2; {(1R,5S)-1,2,3,4,5,6-hexahydro-1,5-methano-8H-pyrido[1,2a][1,5]diazocin-8-one}, varenicline {3; (1R,12S)-5,8,14-triazatetracyclo[10.3.1.02,110.04,9]hexadeca-2(11),3,5,7,9-pentaene} and ligand 4 {(1R,5S)-9-(3-hydroxypropyl)-1,2,3,4,5,6-hexahydro-1,5-methano-8H-pyrido[1,2a][1,5]diazocin-8-one}.
Crystallization of the AcAChBP–4 complex
| Method | Vapor diffusion |
| Plate type | Hanging drop (Hampton Research) |
| Temperature (K) | 295 |
| Protein concentration (mg ml−1) | 12.5 |
| Buffer composition of protein solution | 50 m |
| Composition of reservoir solution | 0.8 |
| Volume and ratio of drop | 1.5 µl protein solution:0.2 µl reservoir solution:0.3 µl seed stock |
| Volume of reservoir (µl) | 650 |
Figure 2(a) Hanging drop containing crystals of the AcAChBP–4 complex. The largest crystal provided the data used for structure determination. (b) An OMIT difference density map for ligand 4 contoured at 6.5 standard deviations (associated with subunit A). C-atom positions of residues on the principal side of the binding site (subunit A) are shown in brown, those of residues on the complementary side (subunit D) are in gray and those for ligand 4 are in black. N and O atoms are colored blue and red, respectively. Three water molecules are depicted as blue spheres. Potential hydrogen bonds are identified with blue dashed lines and a C—H⋯O interaction is identified with a red dashed line. Two rotamers for Tyr110 are shown. Distances are in Å.
Diffraction data-collection parameters
| Diffraction source | Beamline I03, DLS |
| Wavelength (Å) | 0.976 |
| Temperature (K) | 100 |
| Detector | EIGER2 XE 16M |
| Crystal-to-detector distance (mm) | 288.18 |
| Rotation range per image (°) | 0.1 |
| Total rotation range (°) | 180 |
Crystallographic statistics for the AcAChBP–4 complex
Values in parentheses are for the highest resolution shell.
| Data statistics | |
| Unit-cell parameters (Å, °) |
|
| Space group |
|
| Wavelength (Å) | 0.976 |
| Subunits per asymmetric unit | 10 |
| Resolution range (Å) | 127.97–1.72 (1.75–1.72) |
| Total No. of reflections | 1225936 (25553) |
| Unique reflections | 353432 (12162) |
| Multiplicity | 3.5 (2.1) |
|
| 0.07 (0.82) |
|
| 0.064 (0.794) |
| Wilson | 25.07 |
| Completeness (%) | 95.5 (66.6) |
| 〈 | 7.6 (0.6) |
| CC1/2
| 0.993 (0.435) |
| Refinement | |
| Resolution range (Å) | 90.12–1.72 |
|
| 16.2/19.2 |
| No. of reflections for | 335977/17388 |
| No. of protein residues | 2058 |
| No. of NAG molecules | 10 |
| No. of molecules of | 10 |
| No. of phosphate molecules | 10 |
| No. of glycerol molecules | 40 |
| No. of water molecules | 2899 |
| No. of chloride ions | 10 |
| No. of potassium ions | 10 |
| R.m.s.d.s | |
| Bond lengths (Å) | 0.013 |
| Angles (°) | 1.84 |
| Ramachandran plot | |
| Residues in favored regions (%) | 98.77 |
| Residues in allowed regions (%) | 1.23 |
| Mean | |
| Protein atoms (subunit | 30.1/29.2/29.7/28.4/30.6/29.8/31.5/31.8/33.4/34.5 |
| NAG molecules (subunit | 93.7/90.2/108.6/87.6/99.5/97.1/104.2/103.6/100.2/92.6 |
| Water molecules | 46.0 |
| Ligand | 28.1/27.9/23.5/22.2/27.9/29.9/23.7/32.4/33.3/31.5 |
| Phosphate ions (subunit | 58.1/54.2/57.4/63.8/49.2/49.5/56.4/71.9/52.6/58.0 |
| Glycerol molecules | 59.9 |
| Chloride ions (subunit | 33.7/34.6/32.0/32.9/33.5/34.0/37.9/35.2/35.9/37.8 |
| Potassium ions (subunit | 37.3/37.4/38.6/40.0/39.5/40.5/41.3/40.5/43.2/44.2 |
| PDB code |
|
R merge = , where I(hkl) is the intensity of the ith measurement of reflection hkl and 〈I(hkl)〉 is the mean value of I(hkl) for all i measurements.
Completeness was <70% in the highest resolution shell owing to the use of a square detector for data collection.
〈I/σ(I)〉 = 2.0 at 1.90 Å resolution.
Pearson correlation coefficient.
R work = , where F obs is the observed structure-factor amplitude and F calc is the structure-factor amplitude calculated from the model. R free is the same as R work except that it was calculated using a subset (5%) of data that were excluded from refinement calculations.
Figure 3Raw and injection heat-normalized thermodynamic traces for the binding of (a) cytisine and (b) ligand 4 to AcAChBP and (c, d) the corresponding signature plots. Error bars represent the standard errors of the mean.
Thermodynamic parameters
Values in parentheses indicate the standard errors of the mean.
| Ligand | Ligand concentration (µ |
| No. of sites |
| Δ | Δ | − |
|---|---|---|---|---|---|---|---|
| Cytisine ( | 100 | 20 | 0.6 (0.01) | 0.6 (0.3) | −8.6 (0.3) | −15.2 (1.2) | 6.6 (1.4) |
|
| 1000 | 50 | 0.9 (0.10) | 53.3 (19.9) | −6.0 (0.3) | −9.1 (2.5) | 3.0 (2.8) |
Figure 4Stereoview of ligand 4 in a representative AcAChBP binding site. In this case, the site is formed between subunit A (principal side) and subunit D (complementary side). A similar color scheme to Fig. 2 ▸(b) is used with the following additions: S-atom positions are shown in yellow, glycerol C atoms are shown in black and the side chain of a Met133 rotamer from a complex with cytisine (PDB entry 5syo) directed into the binding site is shown with blue C atoms.