A Toxin-Antitoxin Module in Bacillus subtilis Can Both Mitigate and Amplify Effects of Lethal Stress
文献类型: 外文期刊
作者: Wu, Xiangli;Wang, Xiuhong;Drlica, Karl;Zhao, Xilin
作者机构:
期刊名称: PLOS ONE
ISSN: 1932-6203
年卷期: 2011 年 6 卷 8 期
页码:
收录情况: SCI
摘要: Background: Bacterial type-2 (protein-protein) toxin-antitoxin (TA) modules are two-gene operons that are thought to participate in the response to stress. Previous work with Escherichia coli has led to a debate in which some investigators conclude that the modules protect from stress, while others argue that they amplify lethal stress and lead to programmed cell death. To avoid ambiguity arising from the presence of multiple TA modules in E. coli, the effect of the sole type-2 toxin-antitoxin module of Bacillus subtilis was examined for several types of lethal stress.Methodology/Principal Findings: Genetic knockout of the toxin gene, ndoA (ydcE), conferred protection to lethal stressors that included kanamycin, moxifloxacin, hydrogen peroxide, and UV irradiation. However, at low doses of UV irradiation the ndoA deficiency increased lethality. Indeed, gradually increasing UV dose with the ndoA mutant revealed a crossover response - from the mutant being more sensitive than wild-type cells to being less sensitive. For high temperature and nutrient starvation, the toxin deficiency rendered cells hypersensitive. The ndoA deficiency also reduced sporulation frequency, indicating a role for toxin-antitoxin modules in this developmental process. In the case of lethal antimicrobial treatment, deletion of the toxin eliminated a surge in hydrogen peroxide accumulation observed in wild-type cells.Conclusions: A single toxin-antitoxin module can mediate two opposing effects of stress, one that lowers lethality and another that raises it. Protective effects are thought to arise from toxin-mediated inhibition of translation based on published work. The enhanced, stress-mediated killing probably involves toxin-dependent accumulation of reactive oxygen species, since a deficiency in the NdoA toxin suppressed peroxide accumulation following antimicrobial treatment. The type and perhaps the level of stress appear to be important for determining whether this toxin will have a protective or detrimental effect.
分类号:
- 相关文献
作者其他论文 更多>>
-
The transcription factor PoMbp1 promotes the growth and development of Pleurotus ostreatus by regulating polysaccharide utilisation
作者:Zhang, Lijiao;Zhang, Yingjie;Wu, Zeyin;Zhao, Mengran;Wu, Xiangli;Huang, Chenyang
关键词:Mbp1 transcription factor;Pleurotus ostreatus;fruit body development;carbohydrate metabolism;transcriptome sequencing
-
The Metacaspase Gene PoMCA1 Enhances the Mycelial Heat Stress Tolerance and Regulates the Fruiting Body Development of Pleurotus ostreatus
作者:Pei, Jingqi;Zhao, Mengran;Zhang, Lijiao;Wu, Xiangli
关键词:fruiting body development;genetic transformation;heat stress;metacaspase;Pleurotus ostreatus;qRT-PCR
-
The famous cultivated mushroom Bailinggu is a separate species of the Pleurotus eryngii species complex
作者:Zhao, Mengran;Zhang, Jinxia;Chen, Qiang;Wu, Xiangli;Gao, Wei;Huang, Chenyang;Zhao, Mengran;Zhang, Jinxia;Chen, Qiang;Wu, Xiangli;Gao, Wei;Huang, Chenyang;Deng, Wangqiu
关键词:
-
Genetic Variability and Population Structure of the Mushroom Pleurotus eryngii var. tuoliensis
作者:Zhao, Mengran;Huang, Chenyang;Chen, Qiang;Wu, Xiangli;Qu, Jibin;Zhang, Jinxia
关键词:
-
The Prevalence of Parasites and Pathogens in Asian Honeybees Apis cerana in China
作者:Li, Jilian;Qin, Haoran;Wu, Jie;Wang, Xiuhong;Peng, Wenjun;Evans, Jay D.;Chen, Yanping;Sadd, Ben M.
关键词:
-
Heat Stress Induces Apoptotic-Like Cell Death in Two Pleurotus Species
作者:Song, Chi;Chen, Qiang;Wu, Xiangli;Zhang, Jinxia;Huang, Chenyang
关键词:
-
A novel laccase with inhibitory activity towards HIV-I reverse transcriptase and antiproliferative effects on tumor cells from the fermentation broth of mushroom Pleurotus cornucopiae
作者:Wu, Xiangli;Huang, Chenyang;Chen, Qiang;Zhang, Jinxia;Wu, Xiangli;Wang, Hexiang;Wu, Xiangli;Wang, Hexiang
关键词:Fermentation broth;FPLC;Isolation;Laccase;Mushroom;Pleurotus cornucopiae