» Articles » PMID: 9882662

Use of Genomics to Identify Bacterial Undecaprenyl Pyrophosphate Synthetase: Cloning, Expression, and Characterization of the Essential UppS Gene

Overview
Journal J Bacteriol
Specialty Microbiology
Date 1999 Jan 12
PMID 9882662
Citations 50
Authors
Affiliations
Soon will be listed here.
Abstract

The prenyltransferase undecaprenyl pyrophosphate synthetase (di-trans,poly-cis-decaprenylcistransferase; EC 2.5.1.31) was purified from the soluble fraction of Escherichia coli by TSK-DEAE, ceramic hydroxyapatite, TSK-ether, Superdex 200, and heparin-Actigel chromatography. The protein was labeled with the photolabile analogue of the farnesyl pyrophosphate analogue (E, E)-[1-3H]-(2-diazo-3-trifluoropropionyloxy)geranyl diphosphate and was detected on a sodium dodecyl sulfate-polyacrylamide gel as a protein with an apparent molecular mass of 29 kDa. This protein band was cut out from the gel, trypsin digested, and subjected to matrix-assisted laser desorption ionization mass spectrometric analysis. Comparison of the experimental data with computer-simulated trypsin digest data for all E. coli proteins yielded a single match with a protein of unassigned function (SWISS-PROT Q47675; YAES_ECOLI). Sequences with strong similarity indicative of homology to this protein were identified in 25 bacterial species, in Saccharomyces cerevisiae, and in Caenorhabditis elegans. The homologous genes (uppS) were cloned from E. coli, Haemophilus influenzae, and Streptococcus pneumoniae, expressed in E. coli as amino-terminal His-tagged fusion proteins, and purified over a Ni2+ affinity column. An untagged version of the E. coli uppS gene was also cloned and expressed, and the protein purified in two chromatographic steps. We were able to detect Upp synthetase activity for all purified enzymes. Further, biochemical characterization revealed no differences between the recombinant untagged E. coli Upp synthetase and the three His-tagged fusion proteins. All enzymes were absolutely Triton X-100 and MgCl2 dependent. With the use of a regulatable gene disruption system, we demonstrated that uppS is essential for growth in S. pneumoniae R6.

Citing Articles

Systems biology approach for enhancing limonene yield by re-engineering Escherichia coli.

Khanijou J, Hee Y, Scipion C, Chen X, Selvarajoo K NPJ Syst Biol Appl. 2024; 10(1):109.

PMID: 39353984 PMC: 11445242. DOI: 10.1038/s41540-024-00440-7.


Integrating bacterial molecular genetics with chemical biology for renewed antibacterial drug discovery.

Parkhill S, Johnson E Biochem J. 2024; 481(13):839-864.

PMID: 38958473 PMC: 11346456. DOI: 10.1042/BCJ20220062.


Engineering Escherichia coli for increased Und-P availability leads to material improvements in glycan expression technology.

Kay E, Dooda M, Bryant J, Reid A, Wren B, Troutman J Microb Cell Fact. 2024; 23(1):72.

PMID: 38429691 PMC: 10908060. DOI: 10.1186/s12934-024-02339-8.


Lead generation of UPPS inhibitors targeting MRSA: Using 3D-QSAR pharmacophore modeling, virtual screening, molecular docking, and molecular dynamic simulations.

Qandeel B, Mowafy S, Abouzid K, Farag N BMC Chem. 2024; 18(1):14.

PMID: 38245752 PMC: 10800075. DOI: 10.1186/s13065-023-01110-1.


Loss of YhcB results in dysregulation of coordinated peptidoglycan, LPS and phospholipid synthesis during Escherichia coli cell growth.

Goodall E, Isom G, Rooke J, Pullela K, Icke C, Yang Z PLoS Genet. 2021; 17(12):e1009586.

PMID: 34941903 PMC: 8741058. DOI: 10.1371/journal.pgen.1009586.


References
1.
Takahashi I, Ogura K . Prenyltransferases of Bacillus subtilis: undecaprenyl pyrophosphate synthetase and geranylgeranyl pyrophosphate synthetase. J Biochem. 1982; 92(5):1527-37. DOI: 10.1093/oxfordjournals.jbchem.a134077. View

2.
Umbreit J, Strominger J . Isolation of the lipid intermediate in peptidoglycan biosynthesis from Escherichia coli. J Bacteriol. 1972; 112(3):1306-9. PMC: 251564. DOI: 10.1128/jb.112.3.1306-1309.1972. View

3.
Fountoulakis M, Langen H . Identification of proteins by matrix-assisted laser desorption ionization-mass spectrometry following in-gel digestion in low-salt, nonvolatile buffer and simplified peptide recovery. Anal Biochem. 1997; 250(2):153-6. DOI: 10.1006/abio.1997.2213. View

4.
Laemmli U . Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature. 1970; 227(5259):680-5. DOI: 10.1038/227680a0. View

5.
Keenan M, ALLEN Jr C . Characterization of undecaprenyl pyrophosphate synthetase from Lactobacillus plantarum. Arch Biochem Biophys. 1974; 161(2):375-83. DOI: 10.1016/0003-9861(74)90318-x. View