Boylan S A, Chun K T, Edson B A, Price C W
Department of Food Science and Technology, University of California, Davis 95616.
Mol Gen Genet. 1988 May;212(2):271-80. doi: 10.1007/BF00334696.
The physiological roles of the gene subset defined by early-blocked sporulation mutations (spo0) and their second-site suppressor alleles (rvtA11 and crsA47) remain cryptic for both vegetative and sporulating Bacillus subtilis cells. To test the hypothesis that spo0 gene products affect global regulation, we assayed the levels of carbon- and nitrogen-sensitive enzymes in wild-type and spo0 strains grown in a defined minimal medium containing various carbon and nitrogen sources. All the spo0 mutations (except spo0J) affected both histidase and arabinose isomerase levels in an unexpected way: levels of both carbon-sensitive enzymes were two- to six-fold higher in spo0 strains compared to wild type, when cells were grown on the derepressing carbon sources arabinose or maltose. There was no difference in enzyme levels with glucose-grown cells, nor was there a significant difference in levels of the carbon-independent enzymes glutamine synthetase and glucose-6-phosphate dehydrogenase. This effect was not due to a slower growth rate for the spo0 mutants on the poor carbon and nitrogen sources used. The levels of carbon-sensitive enzymes were not simply correlated with sporulation ability in genetically suppressed spo0 mutants, but the rvtA and crsA suppressors each had such marked effects on wild-type growth and enzyme levels that these results were difficult to interpret. We conclude that directly or indirectly the spo0 mutations, although blocking the sporulation process, increase levels of carbon-sensitive enzymes, possibly at the level of gene expression.
对于枯草芽孢杆菌的营养细胞和芽孢形成细胞而言,由早期阻断芽孢形成突变(spo0)及其第二位点抑制等位基因(rvtA11和crsA47)所定义的基因子集的生理作用仍然不明。为了验证spo0基因产物影响全局调控这一假说,我们检测了在含有各种碳源和氮源的限定基本培养基中生长的野生型和spo0菌株中碳敏感酶和氮敏感酶的水平。所有spo0突变(除spo0J外)均以一种意想不到的方式影响组氨酸酶和阿拉伯糖异构酶的水平:当细胞在去阻遏碳源阿拉伯糖或麦芽糖上生长时,spo0菌株中这两种碳敏感酶的水平比野生型高两到六倍。在以葡萄糖生长的细胞中,酶水平没有差异,在与碳无关的酶谷氨酰胺合成酶和葡萄糖-6-磷酸脱氢酶的水平上也没有显著差异。这种效应并非由于spo0突变体在所用的贫碳和氮源上生长速度较慢所致。在基因抑制的spo0突变体中,碳敏感酶的水平与芽孢形成能力并非简单相关,但rvtA和crsA抑制子对野生型生长和酶水平均有如此显著的影响,以至于这些结果难以解释。我们得出结论,spo0突变虽然阻断了芽孢形成过程,但直接或间接地可能在基因表达水平上增加了碳敏感酶的水平。