| Literature DB >> 17329804 |
Mihwa Lee1, Megan J Maher, J Mitchell Guss.
Abstract
Crystals of a single-point mutant (T109S) of Escherichia coli dihydroorotase (DHOase) with diminished activity grown in the presence of L-dihydroorotate (L-DHO) are tetragonal, with a monomer in the asymmetric unit. These crystals are extremely unstable and disintegrate shortly after formation, which is followed by the growth of orthorhombic crystals from the remnants of the tetragonal crystals or at new nucleation sites. Orthorhombic crystals, for which a structure has previously been reported [Thoden et al. (2001), Biochemistry, 40, 6989-6997; Lee et al. (2005), J. Mol. Biol. 348, 523-533], contain a dimer of DHOase in the asymmetric unit; the active site of one monomer contains the substrate N-carbamyl-L-aspartate (L-CA-asp) and the active site of the other monomer contains the product of the reaction, L-DHO. In the subunit with L-DHO in the active site, a surface loop (residues 105-115) is 'open'. In the other subunit, with L-CA-asp in the active site, the loop folds inwards, forming specific hydrogen bonds from the loop to the L-CA-asp. The tetragonal crystal form can be stabilized by crystallization in the presence of the inhibitor 5-fluoroorotate (FOA), a product (L-DHO) mimic. Crystals of the complex of T109S DHOase with FOA are tetragonal, space group P4(1)2(1)2, with unit-cell parameters a = b = 72.6, c = 176.1 A. The structure has been refined to R and R(free) values of 0.218 and 0.257, despite severe anisotropy of the diffraction. In this structure, the flexible loops are both in the 'open' conformation, which is consistent with FOA, like L-DHO, binding at both sites. The behaviour of the T109S mutant crystals of DHOase in the presence of L-DHO is explained by initial binding of L-DHO to both subunits, followed by slow conversion to L-CA-asp, with consequent movement of the flexible loop and dissolution of the crystals. Orthorhombic crystals are then able to grow in the presence of L-DHO and L-CA-asp.Entities:
Mesh:
Substances:
Year: 2007 PMID: 17329804 PMCID: PMC2330171 DOI: 10.1107/S1744309107004009
Source DB: PubMed Journal: Acta Crystallogr Sect F Struct Biol Cryst Commun ISSN: 1744-3091
Figure 1Cyclization of N-carbamyl-l-aspartate (l-CA-asp) to l-dihydroorotate (l-DHO).
Figure 2Structure of 5-fluoroorotate (FOA).
Figure 3Diffraction pattern from a tetragonal crystal of E. coli T109S DHOase recorded on beamline 23-ID at APS. The diffraction is severely anisotropic; reflections are observed along c* (indicated by the white arrow) to 2.2 Å (black arrow). The resolution at the edge of the image belonging to 2.13 Å.
Statistics of the data collection and refinement
Values in parentheses are for the outer shell.
| X-ray source | APS 23-ID |
| Wavelength (Å) | 0.9793 |
| Space group | |
| Unit-cell parameters (Å) | |
| Resolution ( | 3.0, 3.0, 2.7 |
| Mosaicity (°) | 0.5 |
| No. of unique reflections | 10367 |
| Completeness | 75.8 (29.9) |
| Redundancy | 6.7 (5.9) |
| 2.3 (8.7) | |
| Average | 20.5 (1.9) |
| 0.218 (0.187) | |
| 0.257 (0.234) | |
| No. of reflections in test set | 490 [4.7%] |
| Protein atoms (including Zn) | 2689 |
| Heteroatoms | 12 |
| Water molecules | 10 |
| R.m.s.d. bond lengths (Å) | 0.01 |
| R.m.s.d. angles (°) | 0.93 |
| Mean protein | 63.0 |
| Estimated standard uncertainties | 0.27 |
| Ramanchandran plot, residues in | |
| Most favoured regions (%) | 87.6 |
| Additional allowed regions (%) | 11.7 |
| Generously allowed regions (%) | 0.7 |
Because of the severe diffraction anisotropy, data beyond these limits were excluded during refinement.
Completeness was calculated using the entire spherical shell of resolution 2.7 Å.
One FOA molecule.
Estimated standard uncertainty in atomic position, based on maximum likelihood (Murshudov et al., 1997 ▶).
Calculated using PROCHECK (Laskowski et al., 1993 ▶).
Completeness statistics of pre- and post-anisotropy correction of diffraction data
Completeness was calculated using the entire spherical shell. The anisotropy correction removes all reflections lying outside the defined ellipsoid. The completeness measured as a percentage of the spherical shell is therefore lower following the correction. Data beyond a resolution of 2.7 Å were not used in the refinement (see Table 1 ▶).
| Before correction | After correction | ||||
|---|---|---|---|---|---|
| Resolution | Expected No. of reflections | Observed No. of reflections | % observed | Observed No. of reflections | % observed |
| 31.00–5.97 | 1397 | 1343 | 96.1 | 1338 | 95.8 |
| 5.97–4.74 | 1299 | 1279 | 98.5 | 1274 | 98.1 |
| 4.74–4.14 | 1274 | 1222 | 95.9 | 1215 | 95.4 |
| 4.14–3.76 | 1257 | 1211 | 96.3 | 1190 | 94.7 |
| 3.76–3.49 | 1249 | 1221 | 97.8 | 1210 | 96.9 |
| 3.49–3.29 | 1226 | 1162 | 94.8 | 1167 | 95.2 |
| 3.29–3.12 | 1246 | 1112 | 89.2 | 999 | 80.2 |
| 3.12–2.99 | 1238 | 872 | 70.4 | 668 | 54.0 |
| 2.99–2.87 | 1226 | 683 | 55.7 | 536 | 43.7 |
| 2.87–2.77 | 1229 | 618 | 50.3 | 434 | 35.3 |
| 2.77–2.69 | 1209 | 540 | 44.7 | 339 | 28.0 |
| 2.69–2.61 | 1225 | 516 | 42.1 | 287 | 23.4 |
| 2.61–2.54 | 1220 | 481 | 39.4 | 237 | 19.4 |
| 2.54–2.48 | 1221 | 418 | 34.2 | 187 | 15.3 |
| 2.48–2.42 | 1197 | 461 | 38.5 | 164 | 13.7 |
| 2.42–2.37 | 1218 | 504 | 41.4 | 123 | 10.1 |
| 2.37–2.32 | 1198 | 462 | 38.6 | 94 | 7.8 |
| 2.32–2.28 | 1212 | 520 | 42.9 | 73 | 6.0 |
| 2.28–2.24 | 1207 | 458 | 37.9 | 52 | 4.3 |
| 2.24–2.20 | 1208 | 462 | 38.2 | 30 | 2.5 |
| Overall | 24756 | 15545 | 62.8 | 11617 | 46.9 |
Figure 4Analysis of the anisotropy of the data calculated using the program TRUNCATE (French & Wilson, 1978 ▶).
Figure 5Crystals of E. coli T109S DHOase. Tetragonal crystals belonging to space group P41212 (a) are very unstable and often disintegrated shortly after crystal formation (b). The small crystals grown around the remnants of the tetragonal crystals are orthorhombic crystals belonging to space group P212121.
Figure 6DHOase crystal packing. (a, b) Tetragonal FOA complex of T109S DHOase. The monomer in the asymmetric unit is shown in yellow, with the flexible surface loops (residues 105–115) in magenta. The other monomer of the dimer is shown in blue. Other symmetry-related dimers are shown in green. (c, d) Crystal packing of the orthorhombic wild-type DHOase. Chain A with the ‘loop-out’ conformation is shown in yellow and chain B with the ‘loop-in’ conformation in blue. The projection is down along the c axis in (a) and (c) and perpendicular to the c axis in (b) and (d).
Figure 7Molecular packing in crystals of the tetragonal FOA complex of T109S DHOase. The flexible surface loops (residues 105–115) are coloured magenta. Symmetry-related molecules that make direct hydrogen-bonded contacts with the central monomer (yellow) are in blue (y, x, −z), green (y − 1/2, −x + 1/2, z − 1/4) and cyan (−y + 1/2, x + 1/2, z + 1/4), respectively. The Zn atoms in the active site are shown as magenta spheres.
Figure 8Crystal contacts between symmetry-related molecules in the tetragonal FOA complex of T109S DHOase. The symmetry-related molecule (y − 1/2, −x + 1/2, z − 1/4) is coloured green. The flexible loop (residues 105–115) is shown in magenta. The Zn atoms and FOA molecule are displayed in the active site. (a) shows the hydrogen bonds involved between the two molecules. (b) displays the superposition of the ‘loop-in’ conformation from the wild-type structure (chain B from PDB code 1xge, blue) onto the tetragonal structure.
Crystal contacts between symmetry-related molecules in the tetragonal T109S crystal
Space group P41212; PDB code 2e25. Dimer-interface interactions were not considered.
| Atom | Atom | Distance | Symmetry operation |
|---|---|---|---|
| Lys8 Nζ | Ser83 O | 3.0 | i |
| Arg10 Nη2 | Asp82 Oδ2 | 2.7 | i |
| Glu292 O∊1 | Ser112 N | 2.7 | i |
| Glu292 O∊2 | Ser112 Oγ | 2.8 | i |
| Asp82 Oδ2 | Arg10 Nη2 | 2.7 | ii |
| Ser83 O | Lys8 Nζ | 3.0 | ii |
| Ser112 N | Glu292 O∊1 | 2.7 | ii |
| Ser112 Oγ | Glu292 O∊2 | 2.8 | ii |
All interactions from 2.5 to 3.3 Å between potential hydrogen-bond donors and acceptors are included.
(i) −y + 1/2, x + 1/2, z + 1/4; (ii) y − 1/2, −x + 1/2, z − 1/4.
Crystal contacts between symmetry-related molecules in the orthorhombic wild-type crystal
Space group P212121; PDB code 1xge.
| Atom | Atom | Distance | Symmetry operation |
|---|---|---|---|
| Chain | |||
| Lys | Ala | 2.8 | i |
| Arg | Asp | 3.1 | i |
| Gly | Asn | 3.0 | ii |
| Asn | Gly | 3.0 | iii |
| Asp | Arg | 2.9 | iv |
| Ser | Lys | 2.8 | iv |
| Ser | Glu | 2.8 | iv |
| Ser | Glu | 2.7 | iv |
| Glu | Arg | 3.3 | v |
| Lys | Leu | 2.7 | v |
| Arg | Glu | 3.3 | vi |
| Leu | Lys | 2.7 | vi |
| Chain | |||
| Lys | Ser | 2.8 | I |
| Arg | Asp | 2.9 | I |
| Glu | Ser | 2.8 | I |
| Glu | Ser | 2.7 | I |
| Asp | Lys | 3.0 | II |
| Asp | Arg | 3.1 | II |
| Ala | Lys | 2.8 | II |
| Arg | Glu | 3.3 | III |
| Arg | Glu | 2.8 | III |
| Arg | Glu | 3.2 | III |
| Asn | Gln | 3.3 | III |
| Glu | Arg | 3.3 | IV |
| Glu | Arg | 3.2 | IV |
| Glu | Arg | 2.8 | IV |
| Gln | Asn | 3.3 | IV |
All interactions from 2.5 to 3.3 Å between potential hydrogen-bond donors and acceptors are included.
(i) x + 1/2, −y + 1/2, −z + 1; (ii) x − 1/2, −y + 3/2, 1 − z; (iii) x + 1/2, −y + 3/2, −z + 1; (iv) −x +1, y + 1/2, −z + 1/2; (v) x + 1, y, z; (vi) x − 1, y, z; (I) −x + 1, y − 1/2, −z + 1; (II) x − 1/2, −y + 1/2, −z + 1; (III) −x, y − 1/2, −z + 1/2; (IV) −x, y + 1/2, −z + 1/2.