| Literature DB >> 25760598 |
Janina Sprenger1, Bo Svensson1, Jenny Hålander1, Jannette Carey2, Lo Persson3, Salam Al-Karadaghi1.
Abstract
The enzymes of theEntities:
Keywords: Plasmodium falciparum; malaria; plyamines; spermidine synthase; structure-based drug design
Mesh:
Substances:
Year: 2015 PMID: 25760598 PMCID: PMC4356361 DOI: 10.1107/S1399004714027011
Source DB: PubMed Journal: Acta Crystallogr D Biol Crystallogr ISSN: 0907-4449
Figure 1Polyamine biosynthesis. (a) Schematic representation of the polyamine-metabolic pathway in P. falciparum. (b) Chemical structures of the compounds used in the present study.
Figure 2The overall structure of PfSpdS and ligand binding. (a) The three monomers within the crystallographic asymmetric unit. A stick model of dcAdoMet (green, carbon; red, oxygen; blue, nitrogen; yellow, sulfur) is also shown to highlight the position of the active site. The gatekeeper loop (residues 196–208) is highlighted in orange. (b) A stereoview showing a superposition of the ligands studied in this work. C atoms of dcAdoMet are shown in green, those of MTA and 4MAN in grey, those of putrescine and spermidine in pink and those of BIPA in yellow. All figures were prepared with PyMOL (v1.6; Schrödinger) and chain C was used.
Data-collection and refinement statistics
Values in parentheses are for the highest resolution shell.
| MTA + putrescine | MTA + spermidine | dcAdoMet + 4MAN | MTA + 4AMA | BIPA | |
|---|---|---|---|---|---|
| PDB code |
|
|
|
|
|
| Data collection | |||||
| Source | MAX-lab I911-2 | MAX-lab I911-3 | MAX-lab I911-2 | MAX-lab I911-2 | MAX-lab I911-2 |
| Space group |
|
|
|
|
|
| Unit-cell parameters | |||||
|
| 200.75 | 197.90 | 195.46 | 198.05 | 197.50 |
|
| 34.97 | 134.40 | 132.79 | 135.62 | 134.38 |
|
| 48.60 | 48.30 | 49.16 | 48.31 | 148.28 |
| () | 96.60 | 95.50 | 94.86 | 95.33 | 94.53 |
| Completeness (%) | 99.6 (98.7) | 98.6 (98.7) | 93.7 (78.5) | 96.0 (94.9) | 97.9 (94.2) |
| Resolution range () | 28.652.17 (2.312.17) | 44.941.75 (1.861.75) | 28.651.76 (1.861.76) | 29.542.05 (2.102.05) | 26.632.02 (2.142.02) |
|
| 0.12 (0.67) | 0.05 (0.59) | 0.05 (0.39) | 0.07 (0.48) | 0.09 (0.56) |
|
| 0.142 | 0.065 | 0.062 | 0.088 | 0.070 |
|
| 11.0 (2.2) | 15.0 (2.3) | 15.4 (2.4) | 14.2 (3.2) | 13.2 (3.7) |
| No. of unique reflections | 66992 | 124670 | 117262 | 76131 | 80736 |
| No. of accepted reflections | 228987 | 344231 | 405430 | 247138 | 255888 |
| Wilson | 22.5 | 20.7 | 19.6 | 22.6 | 19.0 |
| CC1/2 | 0.994 (0.705) | 0.999 (0.750) | 0.998 (0.872) | 0.998 (0.873) | 0.998 (0.925) |
| CC* | 0.999 (0.909) | 1.000 (0.926) | 1.000 (0.965) | 0.999 (0.966) | 0.999 (0.980) |
| Refinement | |||||
| Resolution range () | 28.652.17 | 44.941.75 | 28.651.76 | 29.532.05 | 26.632.02 |
|
| 0.187 | 0.188 | 0.188 | 0.199 | 0.213 |
|
| 0.234 | 0.222 | 0.219 | 0.245 | 0.244 |
| Test-set size (%) | 5.10 | 5.28 | 5.25 | 5.29 | 5.26 |
| No. of protein residues | 842 | 848 | 842 | 841 | 839 |
| No. of water molecules | 410 | 496 | 391 | 426 | 352 |
| Bound ligands | 3 MTA, 3 putrescine, 1 glycerol, 1 PEG | 3 MTA, 3 spermidine | 3 dcAdoMet, 3 4MAN, 1 glycerol, 2 PEG | 3 MTA, 3 4AMA, 2 glycerol, 1 PEG | 2 BIPA, 1 PEG |
| Average | 28.1 | 25.0 | 23.4 | 28.0 | 27.0 |
| Clash score | 3.6 | 3.3 | 6.1 | 3.2 | 2.9 |
| Rotamer outliers | 29 [4%] | 19 [2%] | 20 [3%] | 14 [2%] | 13 [2%] |
| Model geometry (r.m.s. deviations from ideal geometry | |||||
| Bond lengths () | 0.021 | 0.025 | 0.025 | 0.021 | 0.021 |
| Bond angles () | 2.03 | 2.10 | 2.43 | 1.92 | 1.93 |
| Ramachandran plot | |||||
| Most favoured (%) | 95.0 | 97.0 | 97.0 | 97.0 | 96.8 |
| Additional allowed (%) | 4.6 | 2.9 | 3.0 | 3.0 | 3.2 |
| Disallowed (%) | 0.4 [chain | 0.1 [chain | 0.0 | 0.0 | 0.0 |
Ideal geometry for proteins (Engh Huber, 1991 ▶).
Ligand-validation statistics
| PDB code | Ligand | Chain | R.m.s.d. | RSCC | LLDF |
|
|---|---|---|---|---|---|---|
|
| MTA |
|
| 0.98 | 0.9 | 23 |
|
|
| 0.98 | 0.6 | 22 | ||
|
|
| 0.98 | 0.2 | 19 | ||
| Putrescine |
|
| 0.91 | 5.0 | 44 | |
|
|
| 0.97 | 3.9 | 25 | ||
|
|
| 0.98 | 3.7 | 23 | ||
|
| MTA |
|
| 0.99 | 0.9 | 22 |
|
|
| 0.98 | 0.6 | 20 | ||
|
|
| 0.98 | 1.0 | 17 | ||
| Spermidine |
|
| 0.94 | 1.6 | 34 | |
|
|
| 0.94 | 4.3 | 28 | ||
|
|
| 0.96 | 2.6 | 23 | ||
|
| dcAdoMet |
|
| 0.96 | 0.2 | 25 |
|
|
| 0.96 | 0.9 | 22 | ||
|
|
| 0.96 | 0.3 | 20 | ||
| 4MAN |
|
| 0.96 | 0.5 | 26 | |
|
|
| 0.99 | 0.6 | 18 | ||
|
|
| 0.98 | 0.8 | 15 | ||
|
| MTA |
|
| 0.97 | 0.3 | 21 |
|
|
| 0.96 | 0.5 | 22 | ||
|
|
| 0.98 | 0.1 | 23 | ||
| 4AMA |
|
| 0.93 | 0.6 | 37 | |
|
|
| 0.96 | 0.9 | 21 | ||
|
|
| 0.98 | 0.8 | 19 | ||
|
| BIPA |
|
| 0.88 | 2.7 | 41 |
|
|
| No ligand | ||||
|
|
| 0.93 | 3.9 | 26 |
R.m.s.d. calculated between corresponding ligand atoms in superimposed protein chains A, B and C.
Values from validation in PHENIX (Adams et al., 2010 ▶).
Values taken from the PDB validation report.
Figure 3Schematic presentation of ligand binding and interactions in the active site of PfSpdS. (a) The complex with putrescine and MTA. (b) The complex with spermidine and MTA. (c) The complex with 4MAN and dcAdoMet. (d) The complex with 4AMA and MTA. The amino-acid side chains and bound compounds are shown in stick representation (N atoms, blue; O atoms, red; C atoms, green; S atoms, yellow). Dashed lines represent potential hydrogen bonds.
Figure 4Complex of PfSpdS with BIPA. (a) Schematic presentation of BIPA binding in the active site of PfSpdS with the potential hydrogen bonds shown as dashed lines. Water molecules are shown as red spheres, N atoms in blue and O atoms in red. (b) A superposition of the crystal structure of BIPA (green C atoms) on the structure of the ligand obtained in docking experiments (brown C atoms; Jacobsson et al., 2008 ▶), showing the shift of about 1.9 Å between the two structures. (c) Superposition of the structure of the complex of PfSpdS with BIPA (blue) on the structure of the dcAdoMet complex, showing the slight relative shift of the C-terminal domain (by about 1 Å). dcAdoMet is shown as a ball-and-stick model (yellow C atoms).