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Escherichia coli cold-shock gene profiles in response to overexpression/deletion of CsdA RNase R and PNPase and relevance to low-temperature RNA metabolism

机译:大肠杆菌冷冲击基因曲线响应于过表达/缺失CSDARNase R和PNPase以及与低温RNA代谢的相关性

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摘要

Cold shock response is elicited by the transfer of exponentially growing cells from their optimum temperature to a significantly lower growth temperature and is characterized by the induction of several cold shock proteins. These proteins, which presumably possess a variety of different activities, are critical for survival and continued growth at low temperature. One of the main consequences of cold shock is stabilization of the secondary structures in nucleic acids leading to hindrance of RNA degradation. Cold-shock proteins such as RNA helicase CsdA, and 3’-5’ processing exoribonucleases such as PNPase and RNase R, are presumably involved in facilitating the RNA metabolism at low temperature. As a step towards elucidating the individual contributions of these proteins to low-temperature RNA metabolism, the global transcript profiles of cells lacking CsdA, RNase R, and PNPase proteins as well as cells individually overexpressing these proteins as compared to the wild-type cells were analyzed at 15°C. The analysis revealed distinct sets of genes, which are possible targets of each of these proteins. This analysis will help further our understanding of the low temperature RNA metabolism.
机译:通过将指数生长的细胞从其最佳温度转移到明显降低的生长温度来引发冷激反应,其特征是诱导了几种冷激蛋白。这些蛋白质可能具有多种不同的活性,对于低温下的存活和持续生长至关重要。冷休克的主要后果之一是稳定核酸中的二级结构,从而阻碍RNA降解。据推测,冷休克蛋白(例如RNA解旋酶CsdA)和3'-5'加工外切核糖核酸酶(例如PNPase和RNase R)参与了低温下RNA的代谢。为了阐明这些蛋白质对低温RNA代谢的个体贡献,与野生型细胞相比,缺少CsdA,RNase R和PNPase蛋白质的细胞以及分别过度表达这些蛋白质的细胞的总体转录谱是在15°C进行分析。分析揭示了不同的基因集,这些基因可能是每种蛋白质的靶标。该分析将有助于我们进一步了解低温RNA代谢。

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