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首页> 外文期刊>Journal of bacteriology >Effect of growth temperature on the acquisition of iron by Salmonella typhimurium and Escherichia coli.
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Effect of growth temperature on the acquisition of iron by Salmonella typhimurium and Escherichia coli.

机译:生长温度对鼠伤寒沙门氏菌和大肠杆菌获取铁的影响。

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摘要

We have examined the effect of growth temperature on three systems normally induced under conditions of iron limitation: synthesis of the siderophore enterochelin (enterobactin), transport of ferric enterochelin, and production of the outer membrane protein which serves as the colicin I receptor. We found that although Salmonella typhimurium produces less enterochelin when grown at 42 degrees C, synthesis of this siderophore was not diminished in Escherichia coli grown under the same conditions. Growth at 42 degrees C under a condition of iron stress led to a reduction in the ability of cells to transport ferric enterochelin in both organisms. A two- to threefold decrease in the number of colicin I receptors was observed in cells of E. coli or S. typhimurium grown at 42 degrees C as compared with the number of receptors observed in cells grown at 37 degrees C. The colicin I receptor was shown not to be inherently unstable at 42 degrees C. By using a cir-lacZ operon fusion, it was shown that at least part of the decrease in receptor levels found in cells grown at high temperature was the result of decreased transcription of cir, the receptor structural gene. The effect of growth temperature on these systems was shown to be independent of fur, a regulatory element which mediates their enhanced production in response to iron stress. We suggest that a second regulatory element common to gene products involved in iron sequestration may be responsible for temperature regulation of these systems.
机译:我们已经研究了生长温度对通常在铁限制条件下诱导的三个系统的影响:铁载体肠螯合素(肠杆菌素)的合成,肠铁螯合铁的转运以及用作大肠菌素I受体的外膜蛋白的产生。我们发现,尽管鼠伤寒沙门氏菌在42摄氏度下生长时产生的肠螯合素较少,但在相同条件下生长的大肠杆菌中铁矿的合成并没有减少。在铁胁迫下在42摄氏度下生长会导致两种生物体内细胞转运肠铁螯合铁的能力降低。与在37摄氏度下生长的细胞中观察到的受体数量相比,在42摄氏度下生长的大肠杆菌或鼠伤寒沙门氏菌细胞中观察到的大肠菌素I受体数量减少了两到三倍。已证明在42℃时并非固有地不稳定。通过使用cir-lacZ操纵子融合,表明在高温下生长的细胞中发现的受体水平降低的至少一部分是cir转录降低的结果,受体结构基因。结果表明,生长温度对这些系统的影响与毛皮无关,毛皮是调节元素,可调节其响应铁胁迫而提高的产量。我们建议涉及铁螯合的基因产物共有的第二个调控元件可能负责这些系统的温度调控。

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