Teichuronic acid operon of Bacillus subtilis 168. 1999

B Soldo, and V Lazarevic, and M Pagni, and D Karamata
Institut de génétique et de biologie microbiennes, Université de Lausanne, Switzerland.

Sequence analysis reveals that the Bacillus subtilis 168 tuaABCDEFGH operon encodes enzymes required for the polymerization of teichuronic acid as well as for the synthesis of one of its precursors, the UDP-glucuronate. Mutants deficient in any of the tua genes, grown in batch cultures under conditions of phosphate limitation, were characterized by reduced amounts of uronate in their cell walls. The teichuronic acid operon belongs to the Pho regulon, as phosphate limitation induces its transcription. Placing the tuaABCDEFGH operon under the control of the inducible Pspac promoter allowed its constitutive expression independently of the phosphate concentration in the medium; the level of uronic acid in cell walls was dependent on the concentration of the inducer. Apparently, owing to an interdependence between teichoic and teichuronic acid incorporation into the cell wall, in examined growth conditions, the balance between the two polymers is maintained in order to insure a constant level of the wall negative charge.

UI MeSH Term Description Entries
D008954 Models, Biological Theoretical representations that simulate the behavior or activity of biological processes or diseases. For disease models in living animals, DISEASE MODELS, ANIMAL is available. Biological models include the use of mathematical equations, computers, and other electronic equipment. Biological Model,Biological Models,Model, Biological,Models, Biologic,Biologic Model,Biologic Models,Model, Biologic
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D009112 Muramic Acids Compounds consisting of glucosamine and lactate joined by an ether linkage. They occur naturally as N-acetyl derivatives in peptidoglycan, the characteristic polysaccharide composing bacterial cell walls. (From Dorland, 28th ed) Muramic Acid,Acid, Muramic,Acids, Muramic
D009238 N-Acetylmuramoyl-L-alanine Amidase An autolytic enzyme bound to the surface of bacterial cell walls. It catalyzes the hydrolysis of the link between N-acetylmuramoyl residues and L-amino acid residues in certain cell wall glycopeptides, particularly peptidoglycan. EC 3.5.1.28. Mucopeptide Amidohydrolase,Autolysin,LE-Enzyme,Murein Hydrolase,Peptidoglycan Hydrolase,T7 Endolysin,T7 Lysozyme,Amidase, N-Acetylmuramoyl-L-alanine,Amidohydrolase, Mucopeptide,Endolysin, T7,Hydrolase, Murein,Hydrolase, Peptidoglycan,LE Enzyme,Lysozyme, T7,N Acetylmuramoyl L alanine Amidase
D009876 Operon In bacteria, a group of metabolically related genes, with a common promoter, whose transcription into a single polycistronic MESSENGER RNA is under the control of an OPERATOR REGION. Operons
D010710 Phosphates Inorganic salts of phosphoric acid. Inorganic Phosphate,Phosphates, Inorganic,Inorganic Phosphates,Orthophosphate,Phosphate,Phosphate, Inorganic
D010957 Plasmids Extrachromosomal, usually CIRCULAR DNA molecules that are self-replicating and transferable from one organism to another. They are found in a variety of bacterial, archaeal, fungal, algal, and plant species. They are used in GENETIC ENGINEERING as CLONING VECTORS. Episomes,Episome,Plasmid
D002473 Cell Wall The outermost layer of a cell in most PLANTS; BACTERIA; FUNGI; and ALGAE. The cell wall is usually a rigid structure that lies external to the CELL MEMBRANE, and provides a protective barrier against physical or chemical agents. Cell Walls,Wall, Cell,Walls, Cell
D004305 Dose-Response Relationship, Drug The relationship between the dose of an administered drug and the response of the organism to the drug. Dose Response Relationship, Drug,Dose-Response Relationships, Drug,Drug Dose-Response Relationship,Drug Dose-Response Relationships,Relationship, Drug Dose-Response,Relationships, Drug Dose-Response
D005798 Genes, Bacterial The functional hereditary units of BACTERIA. Bacterial Gene,Bacterial Genes,Gene, Bacterial

Related Publications

B Soldo, and V Lazarevic, and M Pagni, and D Karamata
December 1999, Microbiology (Reading, England),
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
May 2002, Molecular microbiology,
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
December 1999, Microbiology (Reading, England),
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
May 1984, European journal of biochemistry,
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
November 1997, Microbiology (Reading, England),
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
November 1969, The Biochemical journal,
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
January 1996, Microbial drug resistance (Larchmont, N.Y.),
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
January 1996, Microbial drug resistance (Larchmont, N.Y.),
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
December 1995, Journal of bacteriology,
B Soldo, and V Lazarevic, and M Pagni, and D Karamata
August 1996, Journal of bacteriology,
Copied contents to your clipboard!