Mäder U, Antelmann H, Buder T, Dahl M K, Hecker M, Homuth G
Institut für Mikrobiologie und Molekularbiologie, Ernst-Moritz-Arndt-Universität Greifswald, F.-L.-Jahn-Str. 15, 17487 Greifswald, Germany.
Mol Genet Genomics. 2002 Dec;268(4):455-67. doi: 10.1007/s00438-002-0774-2. Epub 2002 Nov 16.
The DegS-DegU two-component regulatory system of Bacillus subtilis controls various processes that characterize the transition from the exponential to the stationary growth phase, including the induction of extracellular degradative enzymes, expression of late competence genes and down-regulation of the sigma(D) regulon. The degU32(Hy) mutation stabilizes the phosphorylated form of DegU (DegU-P), resulting in overproduction of several extracellular degradative enzymes. In this study, the pleiotropic DegS-DegU regulon was characterized by combining proteomic and transcriptomic approaches. A comparative analysis of wild-type B. subtilis and the degU32(Hy) mutant grown in complex medium was performed during the exponential and in the stationary growth phase. Besides genes already known to be under the control of DegU-P, novel putative members of this regulon were identified. Although the degU32(Hy) mutant is assumed to contain high levels of phosphorylated DegU in the exponential as well as in the stationary growth phase, many genes known to be positively regulated by DegU-P did not show enhanced expression in the mutant strain during exponential growth. This is consistent with the fact that most genes belonging to the DegS-DegU regulon are subject to multiple regulation; this is also reflected in the strong stationary-phase induction of these genes in the mutant strain. As expected, during the exponential growth phase, the sigma(D) regulon was expressed at significantly lower levels in the degU32(Hy) mutant than in the wild type.
枯草芽孢杆菌的DegS-DegU双组分调节系统控制着从指数生长期到稳定生长期转变过程中的各种特征性过程,包括细胞外降解酶的诱导、晚期感受态基因的表达以及σ(D)调节子的下调。degU32(Hy)突变使DegU的磷酸化形式(DegU-P)稳定,导致几种细胞外降解酶的过量产生。在本研究中,通过蛋白质组学和转录组学方法相结合对多效性的DegS-DegU调节子进行了表征。在指数生长期和稳定生长期对野生型枯草芽孢杆菌和在复杂培养基中生长的degU32(Hy)突变体进行了比较分析。除了已知受DegU-P控制的基因外,还鉴定出了该调节子的新的假定成员。尽管degU32(Hy)突变体在指数生长期和稳定生长期都被认为含有高水平的磷酸化DegU,但许多已知受DegU-P正向调节的基因在指数生长期的突变菌株中并未表现出增强的表达。这与大多数属于DegS-DegU调节子的基因受到多种调节这一事实是一致的;这也反映在突变菌株中这些基因在稳定期的强烈诱导上。正如预期的那样,在指数生长期,degU32(Hy)突变体中σ(D)调节子的表达水平明显低于野生型。