Halberg R, Kroos L
Department of Biochemistry, Michigan State University, East Lansing 48824.
J Mol Biol. 1992 Dec 5;228(3):840-9. doi: 10.1016/0022-2836(92)90868-k.
Sporulation of Bacillus subtilis involves the differentiation of two cell types, the mother cell and the forespore. Two key regulators of mother-cell gene expression are SpoIIID, a DNA-binding protein that activates or represses transcription of many different genes, and sigma K, a subunit of RNA polymerase that directs the enzyme to transcribe genes encoding proteins that form the spore coat. Previous studies showed that SpoIIID is needed to produce sigma K, but suggested that SpoIIID represses sigma K-directed transcription of genes encoding spore coat proteins. Here we show that a feedback loop connects the levels of sigma K and SpoIIID, such that production of sigma K leads to a decrease in the level of SpoIIID. The existence of the feedback loop was demonstrated by using antibodies prepared against SpoIIID to measure the level of SpoIIID during sporulation of wild-type cells, mutants defective in sigma K production, and a mutant engineered to produce sigma K earlier than normal. The feedback loop operates at the level of synthesis and/or stability of spoIIID mRNA, as demonstrated by measuring the level of spoIIID mRNA during sporulation of wild-type cells and mutants defective in sigma K production. Our results suggest that a rise in the level of sigma K during the stage (IV) of spore cortex formation causes a decrease in the level of SpoIIID, which, at least in part, establishes the switch to the stage V (spore coat formation) pattern of mother-cell gene expression.
枯草芽孢杆菌的孢子形成涉及两种细胞类型的分化,即母细胞和前芽孢。母细胞基因表达的两个关键调节因子是SpoIIID,一种可激活或抑制许多不同基因转录的DNA结合蛋白,以及σK,RNA聚合酶的一个亚基,它引导该酶转录编码构成芽孢衣蛋白质的基因。先前的研究表明,产生σK需要SpoIIID,但表明SpoIIID抑制编码芽孢衣蛋白的基因的σK指导转录。在这里,我们表明一个反馈回路连接了σK和SpoIIID的水平,使得σK的产生导致SpoIIID水平的降低。通过使用针对SpoIIID制备的抗体来测量野生型细胞、σK产生缺陷的突变体以及经过工程改造以比正常情况更早产生σK的突变体在孢子形成过程中SpoIIID的水平,证明了反馈回路的存在。如通过测量野生型细胞和σK产生缺陷的突变体在孢子形成过程中spoIIID mRNA的水平所表明的,反馈回路在spoIIID mRNA的合成和/或稳定性水平上起作用。我们的结果表明,在孢子皮层形成阶段(IV)期间σK水平的升高导致SpoIIID水平的降低,这至少部分地建立了向母细胞基因表达的阶段V(芽孢衣形成)模式的转变。