Zhang Tengfei, Zhu Jiawen, Wei Shun, Luo Qingping, Li Lu, Li Shengqing, Tucker Alexander, Shao Huabin, Zhou Rui
State Key Laboratory of Agricultural Microbiology and Key Laboratory of Veterinary Diagnosis (Ministry of Agriculture), College of Veterinary Medicine, Huazhong Agricultural University, Wuhan 430070, China.
Hubei Key Laboratory of Animal Embryo and Molecular Breeding, Institute of Animal and Veterinary Science, Hubei Academy of Agricultural Sciences, Wuhan 430064, China.
Sci Rep. 2016 Jun 3;6:27169. doi: 10.1038/srep27169.
The (p)ppGpp signal molecules play a central role in the stringent response (SR) to adapt to nutrient starvation in bacteria, yet the carbohydrate starvation induced adaptive response and the roles of SR in this response is not well characterized, especially in Gram-positives. Here, two (p)ppGpp synthetases RelA and RelQ are identified in Streptococcus suis, an important emerging zoonotic Gram-positive bacterium, while only RelA is functional under glucose starvation. To characterize the roles of RelA/(p)ppGpp in glucose starvation response in S. suis, the growth curves and transcriptional profiles were compared between the mutant strain ΔrelA [a (p)ppGpp(0) strain under glucose starvation] and its parental strain SC-19 [(p)ppGpp(+)]. The results showed great difference between SC-19 and ΔrelA on adaptive responses when suffering glucose starvation, and demonstrated that RelA/(p)ppGpp plays important roles in adaptation to glucose starvation. Besides the classic SR including inhibition of growth and related macromolecular synthesis, the extended adaptive response also includes inhibited glycolysis, and carbon catabolite repression (CCR)-mediated carbohydrate-dependent metabolic switches. Collectively, the pheno- and genotypic characterization of the glucose starvation induced adaptive response in S. suis makes a great contribution to understanding better the mechanism of SR.
(p)ppGpp信号分子在细菌适应营养饥饿的严紧反应(SR)中起核心作用,然而,碳水化合物饥饿诱导的适应性反应以及SR在该反应中的作用尚未得到充分表征,尤其是在革兰氏阳性菌中。在此,在重要的新发人畜共患革兰氏阳性菌猪链球菌中鉴定出两种(p)ppGpp合成酶RelA和RelQ,而在葡萄糖饥饿条件下只有RelA具有功能。为了表征RelA/(p)ppGpp在猪链球菌葡萄糖饥饿反应中的作用,比较了突变株ΔrelA[葡萄糖饥饿条件下的(p)ppGpp(0)菌株]与其亲本菌株SC-19[(p)ppGpp(+)]的生长曲线和转录谱。结果表明,SC-19和ΔrelA在遭受葡萄糖饥饿时的适应性反应存在很大差异,表明RelA/(p)ppGpp在适应葡萄糖饥饿中起重要作用。除了包括生长抑制和相关大分子合成抑制在内的经典SR外,扩展的适应性反应还包括糖酵解抑制和碳分解代谢物阻遏(CCR)介导的碳水化合物依赖性代谢转换。总的来说,猪链球菌葡萄糖饥饿诱导的适应性反应的表型和基因型表征为更好地理解SR机制做出了重要贡献。