Stephens M A, Lang N, Sandman K, Losick R
J Mol Biol. 1984 Jul 5;176(3):333-48. doi: 10.1016/0022-2836(84)90493-5.
The formation of endospores in the Gram-positive bacterium Bacillus subtilis proceeds according to a temporally ordered program of gene activation. To investigate timing mechanisms in sporulation gene expression, we have isolated and sequenced the promoter region for a B. subtilis gene known as 0.3 kb whose transcription is switched on at about stage III of development. The 5' terminus of the 0.3 kb mRNA was mapped by the S1 nuclease procedure to a position just upstream from its apparent ribosome binding site and initiation codon and just downstream from the transcription termination site for an adjacent gene. This information enabled us to construct a transcriptional fusion in which the 5' region of the 0.3 kb gene was joined to the lacZ gene of Escherichia coli. When introduced into cells of B. subtilis, the 0.3 kb-lacZ fusion caused the synthesis of a fusion-specified RNA that originated from within the 0.3 kb promoter region and extended into the adjacent E. coli DNA, and the induction of beta-galactosidase synthesis at the third to fourth hour of sporulation. Enzyme synthesis required the 0.3 kb promoter, since a deletion of the 5' region of the 0.3 kb gene in the transcription fusion eliminated the production of beta-galactosidase. Induction of the 0.3 kb-lacZ fusion was under developmental control, since the production of beta-galactosidase was blocked or substantially impaired by chromosomal mutations in the sporulation genes spoOB, spoIIA, spoIIE and spoIIIE, but not by a spoIIC mutation. We conclude that the 0.3 kb gene promoter is subject to a developmental clock, which delays its utilization until an intermediate stage of sporulation, and discuss models for how the timing of gene expression is regulated.
革兰氏阳性细菌枯草芽孢杆菌中芽孢的形成是按照基因激活的时间顺序程序进行的。为了研究芽孢形成基因表达中的时间调控机制,我们分离并测序了枯草芽孢杆菌一个名为0.3 kb基因的启动子区域,该基因的转录在发育的大约III期开启。通过S1核酸酶方法将0.3 kb mRNA的5'末端定位到其明显的核糖体结合位点和起始密码子上游的一个位置,以及相邻基因转录终止位点下游的一个位置。这些信息使我们能够构建一个转录融合体,其中0.3 kb基因的5'区域与大肠杆菌的lacZ基因相连。当导入枯草芽孢杆菌细胞时,0.3 kb-lacZ融合体导致合成一种融合特异性RNA,该RNA起源于0.3 kb启动子区域内并延伸到相邻的大肠杆菌DNA中,并在芽孢形成的第三至第四小时诱导β-半乳糖苷酶的合成。酶的合成需要0.3 kb启动子,因为转录融合体中0.3 kb基因5'区域的缺失消除了β-半乳糖苷酶的产生。0.3 kb-lacZ融合体的诱导受发育控制,因为芽孢形成基因spoOB、spoIIA、spoIIE和spoIIIE中的染色体突变会阻断或严重损害β-半乳糖苷酶的产生,但spoIIC突变则不会。我们得出结论,0.3 kb基因启动子受发育时钟的调控,该时钟会延迟其使用,直到芽孢形成的中间阶段,并讨论了基因表达时间调控的模型。