| Literature DB >> 31487328 |
Elise Gasiorowski1,2,3, Rodolphe Auger4, Xudong Tian4, Samia Hicham1,2, Chantal Ecobichon1,2, Sophie Roure4, Martin V Douglass5,6,7, M Stephen Trent5,6,7, Dominique Mengin-Lecreulx4, Thierry Touzé4, Ivo Gomperts Boneca1,2.
Abstract
The biogenesis of bacterial cell-envelope polysaccharides requires the translocation, across the plasma membrane, of sugar sub-units that are produced inside the cytoplasm. To this end, the hydrophilic sugars are anchored to a lipid phosphate carrier (undecaprenyl phosphate (C55-P)), yielding membrane intermediates which are translocated to the outer face of the membrane. Finally, the glycan moiety is transferred to a nascent acceptor polymer, releasing the carrier in the "inactive" undecaprenyl pyrophosphate (C55-PP) form. Thus, C55-P is generated through the dephosphorylation of C55-PP, itself arising from either de novo synthesis or recycling. Two types of integral membrane C55-PP phosphatases were described: BacA enzymes and a sub-group of PAP2 enzymes (type 2 phosphatidic acid phosphatases). The human pathogen Helicobacter pylori does not contain BacA homologue but has four membrane PAP2 proteins: LpxE, LpxF, HP0350 and HP0851. Here, we report the physiological role of HP0851, renamed HupA, via multiple and complementary approaches ranging from a detailed biochemical characterization to the assessment of its effect on cell envelope metabolism and microbe-host interactions. HupA displays a dual function as being the main C55-PP pyrophosphatase (UppP) and phosphatidylglycerol phosphate phosphatase (PGPase). Although not essential in vitro, HupA was essential in vivo for stomach colonization. In vitro, the remaining UppP activity was carried out by LpxE in addition to its lipid A 1-phosphate phosphatase activity. Both HupA and LpxE have crucial roles in the biosynthesis of several cell wall polysaccharides and thus constitute potential targets for new therapeutic strategies.Entities:
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Year: 2019 PMID: 31487328 PMCID: PMC6748449 DOI: 10.1371/journal.ppat.1007972
Source DB: PubMed Journal: PLoS Pathog ISSN: 1553-7366 Impact factor: 6.823
UppP activity of H. pylori PAP2 enzymes.
| UppP specific activity (nmol/min/mg) | ||||
|---|---|---|---|---|
| pH | LpxE | HP0350 | HP0851 (HupA) | LpxF |
| 3 | 10 | ND | 131 | 30.8 |
| 4 | 13.8 | ND | 1227 | 97.2 |
| 6 | 291.3 | ND | 4616 | 97.5 |
| 7 | 671.3 | ND | 3755 | 91.8 |
| 7 | 735 | ND | 4157 | 84.8 |
| 7.4 | 900 | ND | 3493 | 71.5 |
| 8 | 492.5 | ND | 2528 | 48.8 |
| 9 | 285 | ND | 1180 | 28.7 |
| 9 | 76.3 | ND | 974 | 20.5 |
| 10 | 0 | ND | 159 | 9 |
| 11 | 8.8 | ND | 19 | 4.2 |
The enzymatic activity was measured in the presence of 50 μM of [14C]C55-PP substrate and an appropriate amount of enzyme to obtain less than 30% of hydrolysis. Buffering of the reaction mixture was obtained with sodium acetate (pH 3–7), Tris-HCl (pH 7–9) or sodium carbonate (pH 9–11). The C55-P product and the substrate were separated by TLC and further quantified by radioactivity counting. Values represent the mean of at least three individual experiments (the S.D. being within 15% of the presented values). ND, no detectable activity.
Fig 5Growth curves of Helicobacter pylori N6.
WT (black) and the four single mutants lpxE∷Km (purple), hp0350∷Km (blue), hupA∷Km (brown) and lpxF∷Km (red) were grown with classic conditions previously described in Bacterial strains, plasmids and bacterial growth conditions section.
Minimal Inhibitory Concentrations (MIC) of H. pylori strains.
| Colistin | Vancomycin | Teicoplanin | Daptomycin | |
|---|---|---|---|---|
| WT | R | R | R | R |
| R | R | R | ||
| R | R | R | ||
| R | R | R | R | |
| R | R | R |
MICs are reported as μg/ml or R: Resistant. R indicates above the highest concentration on the E-test, i.e. MIC >256 μg/mL.
Bacterial strains and plasmids.
| Strains | Genotype | Resistance | Reference |
|---|---|---|---|
| DH5α | F− | Life Science Technologies | |
| C43(DE3) | F− | Avidis | |
| BWPGPTs | BW25113 Δ | Cm, Kan | [ |
| BWTs | BW25113 Δ | Cm, Kan | [ |
| HP-1 | N6 | [ | |
| HP-2 | N6 | Genta | This work |
| HP-3 | N6 | Kan | This work |
| HP-4 | N6 | Kan | This work |
| HP-13 | N6 | Kan | This work |
| HP-5 | N6 pILL2150 | Cm | This work |
| HP-7 | N6 pILL2150 | Cm | This work |
| HP-8 | N6 pILL2150 | Cm | This work |
| HP-9 | N6 pILL2150 | Cm | This work |
| HP-10 | N6 pILL2150 | Cm | This work |
| HP-14 | N6 pILL2150 | Cm | This work |
| HP-15 | N6 pILL2150 | Cm | This work |
| HP-16 | N6 pILL2150 | Cm | This work |
| N6 +pILL2157 | N6 pILL2157 | Cm | This work |
| N6 +pILL2157 | N6 pILL2157 | Cm | This work |
| N6 +pILL2157 | N6 pILL2157 | Cm | This work |
| N6 +pILL2157 | N6 pILL2157 | Cm | This work |
| HP-22 | X47-2AL | [ | |
| HP-50 | X47 | Kan | This work |
| HP-37 | N6 | Kan, Cm | This work |
| HP-38 | N6 | Kan, Cm | This work |
| HP-39 | N6 | Kan, Cm | This work |
| HP-40 | N6 | Kan, Cm | This work |
| HP-33 | N6 | Kan, Cm | This work |
| HP-49 | N6 | Kan | This work |
| Topo TA | Genta | This work | |
| Topo TA | Kan | This work | |
| Topo TA | Kan | This work | |
| Topo TA | Kan | This work | |
| Topo TA | Kan | This work | |
| p | Amp | This work | |
| p | Amp | This work | |
| p | Amp | This work | |
| p | Amp | This work | |
| p | Amp | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2150 | Cm | This work | |
| pILL2157 | Cm | This work | |
| pILL2157 | Cm | This work | |
| pILL2157 | Cm | This work | |
| pILL2157 | Cm | This work |
(a) Genta or Gm, Kan or Km, Cm and Amp: gentamycin, kanamycin, chloramphenicol and ampicillin resistance cassettes, respectively.
Functional complementation of E. coli BWTsbacA conditional strain by PAP2 encoding genes from H. pylori.
| CFU/mL | ||||
|---|---|---|---|---|
| 30°C | 42°C | 30°C | 42°C | |
| - | 782 | 0 | 876 | 1 |
| +p | 229 | 222 | 0 | 0 |
| +p | 396 | 2 | 354 | 0 |
| +p | 265 | 219 | 186 | 172 |
| +p | 180 | 0 | 0 | 0 |
The E. coli thermosensitive strain was transformed with the pTrcHis30-based plasmids and aliquots were plated onto two ampicillin-containing 2YT agar plates incubated at either 30°C or 42°C. The CFU were counted after 24 h incubation.
Complementation of lpxE/hupA double mutant with an ectopic copy of H. pylori PAP2 encoding genes.
| Transformation rate | ||
|---|---|---|
| -ITPG | +IPTG (1mM) | |
| +pILL2150 empty | 0 | 0 |
| +pILL2150 | 0 | 0 |
| +pILL2150 | 0 | 0 |
Quantification of lpxE gene inactivation in ΔhupA single mutant transformed with plasmids expressing one PAP2 from H. pylori. The transformation rates were measured in the presence and in the absence of IPTG.
Minimal Inhibitory Concentrations (MIC) of polymyxin B of H. pylori strains.
| Polymyxin B | Fold change | |
|---|---|---|
| WT | 2048 | - |
| 64 | 32 | |
| 16 | 128 | |
| 2048 | 1 | |
| 512 | 4 | |
| 2048 | 1 |
MICs are reported as μg/ml and are the average of three experiments.
Complementation of E. coli BWPGPTs conditional strain by PAP2 and PgpA encoding genes from H. pylori.
| CFU/mL | ||
|---|---|---|
| 30°C | 42°C | |
| - | 211 | 1 |
| +p | 97 | 140 |
| +p | 152 | 0 |
| +p | 289 | 279 |
| +p | 75 | 0 |
| +p | 652 | 844 |
The E. coli thermosensitive strain was transformed with the pTrcHis30-based plasmids and aliquots were plated onto two ampicillin-containing 2YT agar plates incubated at either 30°C or 42°C. The CFU were counted after 24 h incubation.
Complementation of lpxE/hupA double mutant with an ectopic copy of E. coli PAP2/BacA encoding genes.
| Transformation rate | ||
|---|---|---|
| -ITPG | +IPTG (1mM) | |
| +pILL2150 empty | 0 | 0 |
| +pILL2150 | 0 | 0 |
| +pILL2150 | 0 | 0 |
| +pILL2150 | 0 | 0 |
| +pILL2157 | ||
Quantification of lpxE gene inactivation in ΔhupA single mutant transformed with plasmids expressing one PAP2/BacA from E. coli. Two types of expression vectors were used: pILL2150 and pILL2157. The pILL2150 vector possesses an E. coli promoter and leads to low levels of expression in H. pylori, while pILL2157 displays a H. pylori promoter yielding high levels of expression in H. pylori. The transformation rates were measured in the presence and in the absence of IPTG.