Soldo B, Lazarevic V, Pagni M, Karamata D
Institut de génétique et de biologie microbiennes, Université de Lausanne, Switzerland.
Mol Microbiol. 1999 Feb;31(3):795-805. doi: 10.1046/j.1365-2958.1999.01218.x.
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.
序列分析表明,枯草芽孢杆菌168 tuaABCDEFGH操纵子编码聚磷壁酸聚合以及其前体之一UDP - 葡萄糖醛酸合成所需的酶。在磷酸盐限制条件下进行分批培养的任何tua基因突变体,其细胞壁中的糖醛酸含量均降低。聚磷壁酸操纵子属于Pho调节子,因为磷酸盐限制会诱导其转录。将tuaABCDEFGH操纵子置于可诱导的Pspac启动子控制下,可使其组成型表达,而与培养基中的磷酸盐浓度无关;细胞壁中糖醛酸的水平取决于诱导剂的浓度。显然,由于磷壁酸和聚磷壁酸掺入细胞壁之间的相互依存关系,在所研究的生长条件下,两种聚合物之间的平衡得以维持,以确保细胞壁负电荷水平恒定。