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酵母中代谢网络和基因表达对营养环境瞬时变化的短期和长期动态响应。

Short- and long-term dynamic responses of the metabolic network and gene expression in yeast to a transient change in the nutrient environment.

作者信息

Dikicioglu Duygu, Dunn Warwick B, Kell Douglas B, Kirdar Betul, Oliver Stephen G

机构信息

Department of Chemical Engineering, Bogazici University, Istanbul, Turkey.

出版信息

Mol Biosyst. 2012 Jun;8(6):1760-74. doi: 10.1039/c2mb05443d. Epub 2012 Apr 11.

Abstract

Quantitative data on the dynamic changes in the transcriptome and the metabolome of yeast in response to an impulse-like perturbation in nutrient availability was integrated with the metabolic pathway information in order to elucidate the long-term dynamic re-organization of the cells. This study revealed that, in addition to the dynamic re-organization of the de novo biosynthetic pathways, salvage pathways were also re-organized in a time-dependent manner upon catabolite repression. The transcriptional and the metabolic responses observed for nitrogen catabolite repression were not as severe as those observed for carbon catabolite repression. Selective up- or down regulation of a single member of a paralogous gene pair during the response to the relaxation from nutritional limitation was identified indicating a differentiation of functions among paralogs. Our study highlighted the role of inosine accumulation and recycling in energy homeostasis and indicated possible bottlenecks in the process.

摘要

关于酵母转录组和代谢组对营养可用性脉冲式扰动响应的动态变化的定量数据,与代谢途径信息相结合,以阐明细胞的长期动态重组。这项研究表明,除了从头生物合成途径的动态重组外,补救途径在分解代谢物阻遏时也会以时间依赖性方式进行重组。观察到的氮分解代谢物阻遏的转录和代谢反应不如碳分解代谢物阻遏的反应严重。在对营养限制解除的响应过程中,鉴定出同源基因对单个成员的选择性上调或下调,表明同源物之间存在功能分化。我们的研究强调了肌苷积累和循环在能量稳态中的作用,并指出了该过程中可能的瓶颈。

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