| Literature DB >> 29208891 |
Sarah Batson1, Cesira de Chiara2, Vita Majce1,3, Adrian J Lloyd1, Stanislav Gobec3, Dean Rea1, Vilmos Fülöp1, Christopher W Thoroughgood1, Katie J Simmons4, Christopher G Dowson1, Colin W G Fishwick4, Luiz Pedro S de Carvalho5, David I Roper6.
Abstract
D-cycloserine is an antibiotic which targets sequential bacterial cell wall peptidoglycan biosynthesis enzymes: alanine racemase and D-alanine:D-alanine ligase. By a combination of structural, chemical and mechanistic studies here we show that the inhibition of D-alanine:D-alanine ligase by the antibiotic D-cycloserine proceeds via a distinct phosphorylated form of the drug. This mechanistic insight reveals a bimodal mechanism of action for a single antibiotic on different enzyme targets and has significance for the design of future inhibitor molecules based on this chemical structure.Entities:
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Year: 2017 PMID: 29208891 PMCID: PMC5717164 DOI: 10.1038/s41467-017-02118-7
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Fig. 1Active site region of EcDdlB in different complexes. a Active site region of EcDdlB in complex with ATP and D-Ala-D-Ala, and (b) ADP, carbonate ion and D-Ala-D-Ala. c 2F o-F c difference map of EcDdlB in complex with ADP, 2Mg2+ and DCSP. Electron density at 2 σ is shown over the ADP, Mg2+ and DCSP atoms for clarity. EcDdlB residues Glu15 (above) and Arg255 (below) are within hydrogen bonding distance to DCSP
Data collection and refinement statistics
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| Synchrotron radiation beamline, detector and wavelength (Å) | Diamond, IO4, ADSC Q315 CCD 0.9763 | Diamond, IO4, ADSC Q315 CCD 0.9763 | Diamond, IO4, ADSC Q315 CCD 0.9763 |
| Unit cell (Å) |
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| Space group | P212121 | P212121 | P212121 |
| Resolution (Å) | 49–1.65 (1.71–1.65) | 49–1.4 (1.45–1.4) | 48–1.5 (1.55–1.5) |
| Observations | 468913 | 648917 | 601481 |
| Unique reflections | 70170 | 106127 | 91443 |
| | 23.8 (2.1) | 22.4 (2.1) | 18.9 (2.1) |
| | 0.076 (0.655) | 0.069 (0.577) | 0.093 (0.578) |
| Completeness (%) | 99.8 (99.7) | 97.1 (94.6) | 99.9 (99.1) |
| Refinement non-hydrogen atoms | 5100 (including 2 ADP, 4Mg2+, 2 DSC-P, 2 glycerol & 347 water molecules) | 5365 (including 2 ATP, 4Mg2+, 2 D-Ala-D-Ala, 3Mg2+, 1 imidazole, 2 glycerol & 652 water molecules) | 5483 (including 2 ADP, 4Mg2+, 2CO3 2−, 2 D-Ala-D-Ala, 2Mg2+, 1 imidazole, 2 glycerol & 766 water molecules) |
| | 0.205 (0.318) | 0.180 (0.285) | 0.170 (0.263) |
| Reflections used | 67309 (4861) | 101827 (7180) | 87714 (6275) |
| | 0.237 (0.327) | 0.203 (0.284) | 0.200 (0.283) |
| Reflections used | 2861 (210) | 4300 (273) | 3729 (258) |
| | 0.206 | 0.181 | 0.171 |
| Average temperature factor (Å2) | 16.9 | 11.4 | 11.9 |
| Protein | 16.5 | 10.1 | 10.3 |
| Co-factors | 24.2 | 9.9 | 9.1 |
| Solvent | 20.6 | 20.8 | 21.8 |
| Wilson plot | 19.4 | 12.9 | 13.6 |
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| Bonds (Å) | 0.014 | 0.015 | 0.015 |
| Angles (deg) | 1.6 | 1.7 | 1.6 |
| DPI coordinate error (Å) | 0.11 | 0.07 | 0.08 |
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| Most favored (%) | 92.0 | 93.7 | 93.5 |
| Additionally allowed (%) | 8.0 | 6.3 | 6.5 |
a R sym = S j S h|I h,j − |/S j S h where I h,j is the jth observation of reflection h, and is the mean intensity of that reflection
b R cryst = S||F obs| − |F calc||/S|F obs| where F obs and F calc are the observed and calculated structure factor amplitudes, respectively
c R free is equivalent to R cryst for a 4% subset of reflections not used in the refinement[28]
dDPI refers to the diffraction component precision index[30]
The SIGMAA weighted 2mF o-ΔF c electron density[31] is contoured at the 1.0 σ level, where σ represents the rms electron density for the unit cell
Numbers in parentheses refer to values in the highest resolution shell
Fig. 2Mechanism of DCS phosphorylation by EcDdlB as proved by positional isotope exchange (PIX) and steady-state kinetics of ATP hydrolysis and its inhibition by DCS. a Positional isotope exchange (PIX) mechanism for inhibition of EcDdlB by DCS. Position of 18O label in the initial [γ-18O4]-ATP, intermediate and final species is highlighted in red. b 31P NMR spectra monitoring changes in the isotopic composition of γ-P (doublet), (c) β-P (triplet) and (d) α-P (doublet) species of [γ-18O4]-ATP as a function of time: (blue) 15 s, (red) 0.5 h, (green) 3.5 h, (purple) 5.5 h, (yellow) 8 h, (orange) 18 h. In accordance with the reaction scheme reported in a, a PIX effect is observed both at γ-P and β-P position whereas, as expected, α-P remains unaffected. Based on the relative peak intensity the initial fraction of the [γ-18O4]-P species (blue, upfield doublet) and [γ-18O3 16O]-P species (blue, downfield doublet) is 77% and 23%, respectively, consistent with a > 94% isotopic enrichment of each of the 4 oxygens. e Fractional occurrence of the [γ-18O4]-P species during the PIX reaction as a function of time. After 8 h upon addition of the enzyme at 25 °C, the fraction of the [γ-18O4]-P species decreased to 42%. The rate constant was obtained from fitting of the data to Eq. (1). f Phosphatase activity of EcDdlB (black) as a function of ATP concentration and its inhibition by 1 mM DCS (red) were monitored by a coupled enzyme system assay (See Methods for details). Points are experimental data and lines best fit to Eq. (2). g Inhibition of EcDdlB hydrolysis of ATP by DCS. Data were fitted to Eq. (3)