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Translational control plays an important role in the adaptive heat-shock response of Streptomyces coelicolor

机译:翻译控制在天蓝色链霉菌的适应性热休克反应中起重要作用

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摘要

Stress-induced adaptations require multiple levels of regulation in all organisms to repair cellular damage. In the present study we evaluated the genome-wide transcriptional and translational changes following heat stress exposure in the soil-dwelling model actinomycete bacterium, Streptomyces coelicolor. The combined analysis revealed an unprecedented level of translational control of gene expression, deduced through polysome profiling, in addition to transcriptional changes. Our data show little correlation between the transcriptome and ‘translatome’; while an obvious downward trend in genome wide transcription was observed, polysome associated transcripts following heat-shock showed an opposite upward trend. A handful of key protein players, including the major molecular chaperones and proteases were highly induced at both the transcriptional and translational level following heat-shock, a phenomenon known as ‘potentiation’. Many other transcripts encoding cold-shock proteins, ABC-transporter systems, multiple transcription factors were more highly polysome-associated following heat stress; interestingly, these protein families were not induced at the transcriptional level and therefore were not previously identified as part of the stress response. Thus, stress coping mechanisms at the level of gene expression in this bacterium go well beyond the induction of a relatively small number of molecular chaperones and proteases in order to ensure cellular survival at non-physiological temperatures.
机译:压力诱导的适应需要在所有生物体中进行多种水平的调节以修复细胞损伤。在本研究中,我们评估了暴露在土壤中的模型放线菌细菌coelicolor的热应激后全基因组转录和翻译的变化。组合分析显示,除转录变化外,还通过多核糖体谱分析推断出基因表达的翻译控制水平达到空前水平。我们的数据显示,转录组和“翻译组”之间几乎没有相关性。虽然观察到了全基因组转录的明显下降趋势,但热休克后多核糖体相关转录本却呈现相反的上升趋势。热激后,在转录和翻译水平上都高度诱导了一些关键的蛋白质分子,包括主要的分子伴侣和蛋白酶,这种现象被称为“增强”。在热应激后,编码冷激蛋白,ABC-转运蛋白系统,多种转录因子的许多其他转录物与多核糖体的相关性更高。有趣的是,这些蛋白质家族并未在转录水平上被诱导,因此先前并未被鉴定为应激反应的一部分。因此,在该细菌中基因表达水平的应激应对机制远远超出了诱导相对少量的分子伴侣和蛋白酶的范围,以确保在非生理温度下的细胞存活。

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