Zuber P, Losick R
Cell. 1983 Nov;35(1):275-83. doi: 10.1016/0092-8674(83)90230-1.
A mutation in any one of eight spoO genes of Bacillus subtilis blocks the process of spore formation at its earliest stage. To investigate how the products of the spoO genes may be involved in developmental gene expression, we fused the lacZ gene of E. coli to spoVG, a sporulation gene whose induction at the onset of sporulation is under spoO control. In cells of Spo+ bacteria containing a single copy of the gene fusion, conditions leading to the onset of sporulation resulted in the induction of beta-galactosidase synthesis. This induction was moderately to severely impaired by mutations in any of seven spoO genes. Deletion and hybridization analysis demonstrated that this sporulation-induced enzyme synthesis was exclusively expressed from the two overlapping promoters, which comprise the spoVG transcription-initiation region, and that a small DNA segment (157 bp) containing the spoVG promoters was sufficient to cause spoO-dependent induction of the fused lacZ gene.
枯草芽孢杆菌八个spoO基因中任何一个发生突变,都会在芽孢形成的最早阶段阻断该过程。为了研究spoO基因的产物可能如何参与发育基因表达,我们将大肠杆菌的lacZ基因与spoVG融合,spoVG是一个芽孢形成基因,其在芽孢形成开始时的诱导受spoO控制。在含有单拷贝基因融合体的Spo+细菌细胞中,导致芽孢形成开始的条件会诱导β-半乳糖苷酶的合成。七个spoO基因中任何一个发生突变,都会使这种诱导受到中度至严重的损害。缺失和杂交分析表明,这种芽孢形成诱导的酶合成仅从两个重叠启动子表达,这两个启动子构成spoVG转录起始区域,并且一个包含spoVG启动子的小DNA片段(157 bp)足以引起spoO依赖的融合lacZ基因的诱导。