Ricca E, Cutting S, Losick R
Department of Cellular and Developmental Biology, Harvard University, Cambridge, Massachusetts 02138.
J Bacteriol. 1992 May;174(10):3177-84. doi: 10.1128/jb.174.10.3177-3184.1992.
Sporulating cells of the gram-positive bacterium Bacillus subtilis are partitioned into two cellular compartments called the mother cell and the forespore. Gene expression in the mother cell and the forespore is regulated differentially by the compartment-specific transcription factors sigma K and sigma G, respectively. Gene expression between the two compartments is also coordinated by a signal transduction pathway that couples the activation of sigma K (by processing of its inactive precursor pro-sigma K) in the mother cell to sigma G-directed gene expression in the forespore. To dissect the signal transduction pathway genetically, we previously isolated bypass of forespore mutations at loci called bofA and bofB that relieve the dependence of pro-sigma K processing on the action of sigma G. bofB mutations were previously shown to be allelic to the two-cistron sporulation operon spoIVF, which encodes the pro-sigma K-processing enzyme or its regulator. We now report that bofA mutations are located in a small open reading frame of 87 codons that encodes a putative integral membrane protein with three potential membrane-spanning domains. The possibility is discussed that BofA and the SpoIVF proteins form a heteromeric complex in the mother cell membrane that surrounds the forespore and that this complex mediates the intercompartmental coupling of pro-sigma K processing to events in the forespore.
革兰氏阳性细菌枯草芽孢杆菌的产孢细胞被分隔成两个细胞区室,称为母细胞和前芽孢。母细胞和前芽孢中的基因表达分别由区室特异性转录因子σK和σG进行差异调节。两个区室之间的基因表达也通过一条信号转导途径进行协调,该途径将母细胞中σK的激活(通过加工其无活性前体前体σK)与前芽孢中σG指导的基因表达联系起来。为了从遗传学上剖析该信号转导途径,我们之前在称为bofA和bofB的位点分离出了前芽孢突变的旁路,这些突变消除了前体σK加工对σG作用的依赖性。之前已表明bofB突变与双顺反子产孢操纵子spoIVF等位,该操纵子编码前体σK加工酶或其调节因子。我们现在报告,bofA突变位于一个87个密码子的小开放阅读框中,该阅读框编码一种具有三个潜在跨膜结构域的假定整合膜蛋白。文中讨论了一种可能性,即BofA和SpoIVF蛋白在围绕前芽孢的母细胞膜中形成异源复合物,并且该复合物介导前体σK加工与前芽孢中事件的区室间偶联。