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Label-free quantification reveals major proteomic changes in Pseudomonas putida F1 during the exponential growth phase

机译:无标记量化显示在指数增长阶段期间Pseudomonas Pivida F1的主要蛋白质组学变化

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The physiological adaptation to stationary growth by Pseudomonas putida F1, a model organism for the degradation of aromatic compounds, was investigated by proteome-wide label-free quantification. The data unveiled that entrance to the stationary phase did not involve an abrupt switch within the P. putida F1 proteome, but rather an ongoing adaptation that started already during the mid-exponential growth phase. The proteomic adaptations involved a clear increase in amino acid degradation capabilities and a loss of transcriptional as well as translational capacity. The final entrance to the stationary phase was accompanied by increased oxidative stress protection, although the stress and stationary sigma factor RpoS increased in abundance already during mid-exponential growth. The results show that it is important to consider significant sample variations when exponentially growing cultures are studied alone or compared across proteomic or transcriptomic literature. All MS data have been deposited in the ProteomeXchange with identifier PXDO01219 (http://proteomecentral.proteomexchange.org/dataset/PXDO01219).
机译:通过蛋白质组 - 无标记定量研究了假单胞菌普赖达F1,对芳族化合物降解的模型生物体的生理适应。揭开了静止阶段的进入的数据并不涉及P.Putida F1蛋白质组内的突然切换,而是在中指数增长阶段开始的持续适应。蛋白质组学适应涉及氨基酸降解能力的明显增加以及转录的转录和平移能力。固定阶段的最终入口伴随着增加的氧化应激保护,尽管在中指数增长期间,压力和静止的Σ因子RPO在丰度上增加。结果表明,当单独或在蛋白质组学或转录组文献中进行指数增长的培养时,重要的是考虑显着的样本变异。所有MS数据都已寄存在Proteomexchange中,标识符PXDO01219(http://proteomecentral.proteomexchange.org/dataset/pxdo01219)。

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