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Degradation of ppGpp by Nudix Pyrophosphatase Modulates the Transition of Growth Phase in the Bacterium Thermus thermophilus

机译:Nudix焦磷酸酶降解ppGpp可调节嗜热菌细菌生长期的转变。

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摘要

A major bacterial alarmone, guanosine 3′,5′-bispyrophosphate (ppGpp), controls cellular growth under conditions of nutritional starvation. For most bacteria, intracellular ppGpp levels are tightly controlled by the synthesis/degradation cycle of RelA and SpoT activities. This study shows a novel ppGpp regulatory protein governing the cellular growth of Thermus thermophilus, Ndx8, a member of the Nudix pyrophosphatase family that degrades ppGpp to yield guanosine 3′,5′-bisphosphate. The ndx8-null mutant strain exhibited early stage growth arrest accompanied by the stationary phase-specific morphologies and global transcriptional modulation under nutritionally defined conditions. Several possible substrate compounds of Ndx8, which specifically accumulated in the ndx8 mutant cells, were identified by employing a capillary electrophoresis time-of-flight mass spectrometry-based metabolomics approach. Among them, the hydrolytic activity of Ndx8 for ppGpp was significant not only in vitro but also in vivo. Finally, the elimination of ppGpp synthetic activity suppressed the observed phenotype of the ndx8 mutation, suggesting that the function of Ndx8 as a growth regulator is involved in ppGpp accumulation, which is thought to act as a trigger of the growth phase transition. These results suggest a novel mechanism of ppGpp-mediated growth control by the functional relay between Ndx8 and SpoT activity as ppGpp scavengers.
机译:主要的细菌警报蛋白鸟嘌呤3',5'-双焦磷酸盐(ppGpp)在营养饥饿的情况下控制细胞的生长。对于大多数细菌,细胞内ppGpp的水平由RelA和SpoT活性的合成/降解周期严格控制。这项研究显示了一种新的ppGpp调控蛋白,可调控嗜热栖热菌Ndx8的细胞生长,Nudx焦磷酸酶家族的成员可降解ppGpp,产生鸟苷3',5'-双磷酸酯。在营养条件下,ndx8-null突变株表现出早期生长停滞,并伴有固定相特异性形态和整体转录调控。通过使用基于毛细管电泳飞行时间质谱的代谢组学方法,鉴定了ndx8突变细胞中特异性积累的Ndx8的几种可能的底物化合物。其中,Ndx8对ppGpp的水解活性不仅在体外而且在体内都很重要。最后,消除ppGpp合成活性抑制了观察到的ndx8突变表型,表明Ndx8作为生长调节剂的功能与ppGpp积累有关,这被认为是生长相转变的触发因素。这些结果表明,通过Ndx8和SpoT活性之间的功能传递作为ppGpp清除剂,ppGpp介导的生长控制的新机制。

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