Benson A K, Haldenwang W G
Department of Microbiology, University of Texas Health Science Center, San Antonio 78284-7758.
J Bacteriol. 1993 Apr;175(8):2347-56. doi: 10.1128/jb.175.8.2347-2356.1993.
The sigB operon of Bacillus subtilis encodes sigma B plus three additional proteins (RsbV, RsbW, and RsbX) that regulate sigma B activity. Using an anti-sigma B monoclonal antibody to monitor the levels of sigma B protein, PSPAC to control the expression of the sigB operon, and a ctc-lacZ reporter system to monitor sigma B activity, we observed that the rsbV and rsbW products control sigma B activity at the ctc promoter independently of their effects on sigma B levels. In contrast, RsbX was found to have no effect on expression of ctc when the sigB operon was controlled by PSPAC. The data are consistent with RsbV and RsbW being regulators of sigma B activity and RsbX acting primarily as a negative regulator of sigB operon expression. Evidence that stationary-phase induction of the sigma B-dependent ctc promoter is accomplished by a reduction in RsbW-dependent inhibition of sigma B activity is also presented. In addition, Western blot (immunoblot) analyses of sigB operon expression demonstrated that sigma B accumulation is coupled to the synthesis of its primary inhibitor (RsbW). This finding is consistent with RsbW and sigma B being present within the cell in equivalent amounts, a circumstance that would permit RsbW to directly influence sigma B activity by a direct protein-protein interaction.
枯草芽孢杆菌的sigB操纵子编码σB以及另外三种蛋白质(RsbV、RsbW和RsbX),它们调节σB的活性。我们使用抗σB单克隆抗体来监测σB蛋白的水平,利用PSPAC来控制sigB操纵子的表达,并使用一个ctc - lacZ报告系统来监测σB的活性,结果观察到,RsbV和RsbW的产物在ctc启动子处控制σB的活性,这与其对σB水平的影响无关。相比之下,当sigB操纵子由PSPAC控制时,发现RsbX对ctc的表达没有影响。这些数据与RsbV和RsbW作为σB活性的调节因子以及RsbX主要作为sigB操纵子表达的负调节因子相一致。文中还提供了证据,表明依赖σB的ctc启动子在稳定期的诱导是通过降低RsbW对σB活性的抑制作用来实现的。此外,对sigB操纵子表达的蛋白质免疫印迹(Western blot)分析表明,σB的积累与其主要抑制剂(RsbW)的合成相关联。这一发现与细胞内RsbW和σB等量存在的情况相符,这种情况使得RsbW能够通过直接的蛋白质 - 蛋白质相互作用直接影响σB的活性。