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首页> 外文期刊>eLife journal >Gene network analysis identifies a central post-transcriptional regulator of cellular stress survival
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Gene network analysis identifies a central post-transcriptional regulator of cellular stress survival

机译:基因网络分析确定了细胞应激存活的转录后中央调控因子

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Cells adapt to shifts in their environment by remodeling transcription. Measuring changes in transcription at the genome scale is now routine, but defining the functional significance of individual genes within large gene expression datasets remains a major challenge. We applied a network-based algorithm to interrogate publicly available gene expression data to predict genes that serve major functional roles in Caulobacter crescentus stress survival. This approach identified GsrN, a conserved small RNA that is directly activated by the general stress sigma factor, σT, and functions as a potent post-transcriptional regulator of survival across distinct conditions including osmotic and oxidative stress. Under hydrogen peroxide stress, GsrN protects cells by base pairing with the leader of katG mRNA and activating expression of KatG catalase/peroxidase protein. We conclude that GsrN convenes a post-transcriptional layer of gene expression that serves a central functional role in Caulobacter stress physiology.
机译:细胞通过重塑转录适应环境的变化。现在,在基因组规模上测量转录的变化已成为常规,但是在大型基因表达数据集中定义单个基因的功能意义仍然是一个重大挑战。我们应用了基于网络的算法来询问公开可用的基因表达数据,以预测在新月形杆菌压力胁迫存活中起主要功能作用的基因。该方法鉴定了GsrN,这是一种保守的小RNA,可直接由一般应激sigma因子σT激活,并在不同条件下(包括渗透压和氧化应激)作为有效的转录后生存调节剂。在过氧化氢胁迫下,GsrN通过与katG mRNA的前导序列碱基配对并激活KatG过氧化氢酶/过氧化物酶蛋白的表达来保护细胞。我们得出的结论是GsrN召集了基因表达的转录后层,该过程在杆状杆菌应激生理中起着核心的作用。

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