Department of Natural Resource Sciences, McGill University, Montreal, QC, Canada.
Antonie Van Leeuwenhoek. 2011 Aug;100(2):259-77. doi: 10.1007/s10482-011-9584-z. Epub 2011 May 21.
Cold tolerant strains of Acidithiobacillus ferrooxidans play a role in metal leaching and acid mine drainage (AMD) production in northern latitude/boreal mining environments. In this study we used a proteomics and bioinformatics approach to decipher the proteome changes related to sustained growth at low temperatures to increase our understanding of cold adaptation mechanisms in A. ferrooxidans strains. Changes in protein abundance in response to low temperatures (5 and 15°C) were monitored and protein analyses of a psychrotrophic strain (D6) versus a mesophilic strain (F1) showed that both strains increased levels of 11 stress-related and metabolic proteins including survival protein SurA, trigger factor Tig, and AhpC-Tsa antioxidant proteins. However, a unique set of changes in the proteome of psychrotrophic strain D6 were observed. In particular, the importance of protein fate, membrane transport and structure for psychrotrophic growth were evident with increases in numerous chaperone and transport proteins including GroEL, SecB, ABC transporters and a capsule polysaccharide export protein. We also observed that low temperature iron oxidation coincides with a relative increase in the key iron metabolism protein rusticyanin, which was more highly expressed in strain D6 than in strain F1 at colder growth temperatures. We demonstrate that the psychrotrophic strain uses a global stress response and cold-active metabolism which permit growth of A. ferrooxidans in the extreme AMD environment in colder climates.
耐冷嗜酸硫杆菌菌株在北温带/北方矿区的金属浸出和酸性矿山排水(AMD)生产中发挥作用。在这项研究中,我们使用蛋白质组学和生物信息学方法来破解与低温持续生长相关的蛋白质组变化,以增加我们对嗜酸硫杆菌菌株的冷适应机制的理解。监测了低温(5 和 15°C)对蛋白质丰度的影响,对耐寒菌株(D6)与嗜温菌株(F1)的蛋白质分析表明,两种菌株都增加了 11 种与应激和代谢相关的蛋白质水平,包括生存蛋白 SurA、触发因子 Tig 和 AhpC-Tsa 抗氧化蛋白。然而,耐寒菌株 D6 的蛋白质组发生了一组独特的变化。特别是,蛋白质命运、膜转运和结构对耐寒生长的重要性显而易见,增加了许多伴侣蛋白和转运蛋白,包括 GroEL、SecB、ABC 转运体和荚膜多糖外排蛋白。我们还观察到,低温铁氧化与关键铁代谢蛋白锈色蛋白的相对增加相吻合,在较冷的生长温度下,D6 菌株中的锈色蛋白表达高于 F1 菌株。我们证明,耐寒菌株使用了一种全局应激反应和冷活性代谢机制,使嗜酸硫杆菌能够在更冷的气候下的极端 AMD 环境中生长。