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Physiological and Transcriptional Responses of Saccharomyces cerevisiae to Zinc Limitation in Chemostat Cultures

机译:啤酒酵母对化石文化中锌限制的生理和转录响应

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Transcriptional responses of the yeast Saccharomyces cerevisiae to Zn availability were investigated at a fixed specific growth rate under limiting and abundant Zn concentrations in chemostat culture. To investigate the context dependency of this transcriptional response and eliminate growth rate-dependent variations in transcription, yeast was grown under several chemostat regimens, resulting in various carbon (glucose), nitrogen (ammonium), zinc, and oxygen supplies. A robust set of genes that responded consistently to Zn limitation was identified, and the set enabled the definition of the Zn-specific Zap1p regulon, comprised of 26 genes and characterized by a broader zinc-responsive element consensus (MHHAACCBYNMRGGT) than so far described. Most surprising was the Zn-dependent regulation of genes involved in storage carbohydrate metabolism. Their concerted down-regulation was physiologically relevant as revealed by a substantial decrease in glycogen and trehalose cellular content under Zn limitation. An unexpectedly large number of genes were synergistically or antagonistically regulated by oxygen and Zn availability. This combinatorial regulation suggested a more prominent involvement of Zn in mitochondrial biogenesis and function than hitherto identified.
机译:在化学恒化培养物中有限和丰富的Zn浓度下,以固定的特定生长速率研究了酿酒酵母对Zn的转录响应。为了研究这种转录反应的背景依赖性并消除转录中生长速率依赖性的变异,使酵母在几种恒化方案下生长,从而产生各种碳(葡萄糖),氮(铵),锌和氧。鉴定出了一组对Zn限制持续响应的健壮基因,该基因组使得能够定义Zn特异性Zap1p regulon,该基因由26个基因组成,并具有比迄今为止描述的更广泛的锌响应元件共有序列(MHHAACCBYNMRGGT)。最令人惊讶的是参与碳水化合物代谢的基因的锌依赖性调节。它们的协同下调在生理上是相关的,如在锌限制下糖原和海藻糖细胞含量的大幅降低所揭示。出乎意料的大量基因受氧和锌利用率的协同或拮抗作用。这种组合调节表明锌比迄今确定的更明显地参与线粒体的生物发生和功能。

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