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- W2074063722 abstract "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 C sd A , and 3′‐5′ processing exoribonucleases, such as PNP ase and RN ase R , are presumably involved in facilitating the RNA metabolism at low temperature. As a step toward elucidating the individual contributions of these proteins to low‐temperature RNA metabolism, the global transcript profiles of cells lacking C sd A , RN ase R and PNP ase proteins as well as cells individually over‐expressing these proteins as compared to the wild‐type cells were analyzed at 15 °C. The analysis showed 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." @default.
- W2074063722 created "2016-06-24" @default.
- W2074063722 creator A5071705992 @default.
- W2074063722 date "2012-09-07" @default.
- W2074063722 modified "2023-10-02" @default.
- W2074063722 title "<i>Escherichia coli</i>cold-shock gene profiles in response to over-expression/deletion of CsdA, RNase R and PNPase and relevance to low-temperature RNA metabolism" @default.
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- W2074063722 doi "https://doi.org/10.1111/gtc.12002" @default.
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