Vasudevan Pradeep, Weaver Amy, Reichert Erin D, Linnstaedt Sarah D, Popham David L
Department of Biological Sciences, Virginia Tech, 2119 Derring Hall MC0406, Blacksburg, VA 24061, USA.
Mol Microbiol. 2007 Sep;65(6):1582-94. doi: 10.1111/j.1365-2958.2007.05896.x. Epub 2007 Aug 21.
The bacterial endospore cortex peptidoglycan is synthesized between the double membranes of the developing forespore and is required for attainment of spore dehydration and dormancy. The Bacillus subtilis spoVB, spoVD and spoVE gene products are expressed in the mother cell compartment early during sporulation and play roles in cortex synthesis. Here we show that mutations in these genes block synthesis of cortex peptidoglycan and cause accumulation of peptidoglycan precursors, indicating a defect at the earliest steps of peptidoglycan polymerization. Loss of spoIV gene products involved in activation of later, sigma(K)-dependent mother cell gene expression results in decreased synthesis of cortex peptidoglycan, even in the presence of the SpoV proteins that were synthesized earlier, apparently due to decreased precursor production. Data show that activation of sigma(K) is required for increased synthesis of the soluble peptidoglycan precursors, and Western blot analyses show that increases in the precursor synthesis enzymes MurAA, MurB, MurC and MurF are dependent on sigma(K) activation. Overall, our results indicate that a decrease in peptidoglycan precursor synthesis during early sporulation, followed by renewed precursor synthesis upon sigma(K) activation, serves as a regulatory mechanism for the timing of spore cortex synthesis.
细菌芽孢皮层肽聚糖在发育中的前芽孢的双层膜之间合成,是实现孢子脱水和休眠所必需的。枯草芽孢杆菌的spoVB、spoVD和spoVE基因产物在芽孢形成早期在母细胞区室中表达,并在皮层合成中发挥作用。在这里,我们表明这些基因中的突变会阻断皮层肽聚糖的合成,并导致肽聚糖前体的积累,这表明在肽聚糖聚合的最早步骤存在缺陷。参与后期σ(K)依赖性母细胞基因表达激活的spoIV基因产物的缺失会导致皮层肽聚糖合成减少,即使存在早期合成的SpoV蛋白,这显然是由于前体产量降低所致。数据表明,σ(K)的激活是可溶性肽聚糖前体合成增加所必需的,蛋白质印迹分析表明,前体合成酶MurAA、MurB、MurC和MurF的增加依赖于σ(K)的激活。总体而言,我们的结果表明,在芽孢形成早期肽聚糖前体合成减少,随后在σ(K)激活时前体合成重新开始,这是孢子皮层合成时间的一种调节机制。