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首页> 外文期刊>Journal of bacteriology >Effect of growth temperatures on the protein levels in a psychrotrophic bacterium, Pseudomonas fragi.
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Effect of growth temperatures on the protein levels in a psychrotrophic bacterium, Pseudomonas fragi.

机译:生长温度对精神营养细菌脆弱假单胞菌蛋白质水平的影响。

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Pseudomonas fragi has the ability to grow between 0 and 35 degrees C and grows optimally at 30 degrees C. Cellular proteins from mid-log-phase cells growing from 4 to 34 degrees C were labeled with L-[35S]methionine during 1 generation time and analyzed by two-dimensional gel electrophoresis. The electrophoretic patterns revealed differences in the patterns of protein synthesis over this temperature span. A qualitative comparison of cellular proteins led to their separation into five thermal classes. The first class contained proteins whose relative rates of synthesis were unaffected by the growth temperature. Three other classes included proteins with optimal expression at 4 to 10, 15 to 20, and 25 to 30 degrees C. A fifth class contained proteins which were more specifically synthesized at a supraoptimal growth temperature (34 degrees C). Two low-molecular-mass proteins, designated C7.0 and C8.0, were highly concentrated at 4 to 10 degrees C, and their relative rates of synthesis steadily increased with decreasing temperature. Polyclonal antibodies were separately raised against these two proteins. Immunological analyses revealed cross-reaction between these two proteins and between two additional low-molecular-mass proteins which were maximally produced at elevated temperatures. Antisera directed against C8.0 recognized the major cold shock protein of Escherichia coli, CspA, indicating the presence of similarities between these proteins.
机译:脆弱的假单胞菌能够在0至35摄氏度之间生长,并在30摄氏度下最佳生长。在1代时间内用L- [35S]蛋氨酸标记对数中期细胞从4至34摄氏度的细胞蛋白标记并通过二维凝胶电泳进行分析。电泳图谱显示在此温度范围内蛋白质合成图谱的差异。细胞蛋白的定性比较将其分为五个热类别。第一类蛋白质的相对合成速率不受生长温度的影响。其他三类包括在4至10、15至20和25至30摄氏度具有最佳表达的蛋白质。第五类包含在超最佳生长温度(34摄氏度)下更特异性地合成的蛋白质。两种低分子量蛋白质,分别称为C7.0和C8.0,在4至10摄氏度时高度浓缩,它们的相对合成速率随温度降低而稳定增加。分别产生针对这两种蛋白质的多克隆抗体。免疫学分析显示,这两种蛋白质之间以及两个额外的低分子量蛋白质之间的交叉反应是在高温下产生的。针对C8.0的抗血清识别了大肠杆菌的主要冷激蛋白CspA,表明这些蛋白之间存在相似性。

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