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Transcriptional and Translational Regulatory Responses to Iron Limitation in the Globally Distributed Marine Bacterium Candidatus Pelagibacter ubique

机译:在全球分布的海洋假丝酵母念珠菌中对铁限制的转录和翻译调控反应。

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摘要

Iron is recognized as an important micronutrient that limits microbial plankton productivity over vast regions of the oceans. We investigated the gene expression responses of Candidatus Pelagibacter ubique cultures to iron limitation in natural seawater media supplemented with a siderophore to chelate iron. Microarray data indicated transcription of the periplasmic iron binding protein sfuC increased by 16-fold, and iron transporter subunits, iron-sulfur center assembly genes, and the putative ferroxidase rubrerythrin transcripts increased to a lesser extent. Quantitative peptide mass spectrometry revealed that sfuC protein abundance increased 27-fold, despite an average decrease of 59% across the global proteome. Thus, we propose sfuC as a marker gene for indicating iron limitation in marine metatranscriptomic and metaproteomic ecological surveys. The marked proteome reduction was not directly correlated to changes in the transcriptome, implicating post-transcriptional regulatory mechanisms as modulators of protein expression. Two RNA-binding proteins, CspE and CspL, correlated well with iron availability, suggesting that they may contribute to the observed differences between the transcriptome and proteome. We propose a model in which the RNA-binding activity of CspE and CspL selectively enables protein synthesis of the iron acquisition protein SfuC during transient growth-limiting episodes of iron scarcity.
机译:铁被认为是一种重要的微量营养素,会限制海洋广大区域的微生物浮游生物生产力。我们调查了天然海水培养基中补充了铁螯合物螯合铁的自然念珠菌对泛铁假丝酵母的基因表达反应。微阵列数据表明,周质铁结合蛋白sfuC的转录增加了16倍,铁转运子亚基,铁硫中心装配基因和推定的亚铁氧化酶红血球蛋白转录本增加的程度较小。定量肽质谱分析表明,尽管全球蛋白质组平均下降了59%,但sfuC蛋白的丰度增加了27倍。因此,我们建议sfuC作为标记基因,用于在海洋转录组学和蛋白质组学生态学调查中指示铁限制。明显的蛋白质组减少与转录组的变化没有直接关系,暗示转录后调控机制是蛋白质表达的调节剂。两种RNA结合蛋白CspE和CspL与铁的有效性相关性很好,表明它们可能有助于观察到转录组和蛋白质组之间的差异。我们提出了一个模型,其中CspE和CspL的RNA结合活性选择性地使铁获取蛋白SfuC的蛋白质合成在铁缺乏的短暂生长限制事件中发生。

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