Gao Haichun, Yang Zamin K, Wu Liyou, Thompson Dorothea K, Zhou Jizhong
Institute for Environmental Genomics and Department of Botany and Microbiology, University of Oklahoma, Norman, OK 73019, USA.
J Bacteriol. 2006 Jun;188(12):4560-9. doi: 10.1128/JB.01908-05.
This study presents a global transcriptional analysis of the cold shock response of Shewanella oneidensis MR-1 after a temperature downshift from 30 degrees C to 8 or 15 degrees C based on time series microarray experiments. More than 700 genes were found to be significantly affected (P < or = 0.05) upon cold shock challenge, especially at 8 degrees C. The temporal gene expression patterns of the classical cold shock genes varied, and only some of them, most notably so1648 and so2787, were differentially regulated in response to a temperature downshift. The global response of S. oneidensis to cold shock was also characterized by the up-regulation of genes encoding membrane proteins, DNA metabolism and translation apparatus components, metabolic proteins, regulatory proteins, and hypothetical proteins. Most of the metabolic proteins affected are involved in catalytic processes that generate NADH or NADPH. Mutational analyses confirmed that the small cold shock proteins, So1648 and So2787, are involved in the cold shock response of S. oneidensis. The analyses also indicated that So1648 may function only at very low temperatures.
本研究基于时间序列微阵列实验,对嗜铁钩端螺旋菌MR-1从30℃温度骤降至8℃或15℃后的冷休克反应进行了全基因组转录分析。研究发现,超过700个基因在冷休克刺激下受到显著影响(P≤0.05),尤其是在8℃时。经典冷休克基因的时间基因表达模式各不相同,其中只有一部分基因,最显著的是so1648和so2787,在温度骤降时受到差异调节。嗜铁钩端螺旋菌对冷休克的全局反应还表现为编码膜蛋白、DNA代谢和翻译装置成分、代谢蛋白、调节蛋白和假设蛋白的基因上调。大多数受影响的代谢蛋白参与产生NADH或NADPH的催化过程。突变分析证实,小冷休克蛋白So1648和So2787参与了嗜铁钩端螺旋菌的冷休克反应。分析还表明,So1648可能仅在极低温度下起作用。