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循环、来源和汇:使用酵母代谢网络概念化磷酸盐平衡如何调节碳通量。

Cycles, sources, and sinks: Conceptualizing how phosphate balance modulates carbon flux using yeast metabolic networks.

机构信息

Institute for Stem Cell Science and Regenerative Medicine (inStem), Bangalore, India.

出版信息

Elife. 2021 Feb 5;10:e63341. doi: 10.7554/eLife.63341.

Abstract

Phosphates are ubiquitous molecules that enable critical intracellular biochemical reactions. Therefore, cells have elaborate responses to phosphate limitation. Our understanding of long-term transcriptional responses to phosphate limitation is extensive. Contrastingly, a systems-level perspective presenting unifying biochemical concepts to interpret how phosphate balance is critically coupled to (and controls) metabolic information flow is missing. To conceptualize such processes, utilizing yeast metabolic networks we categorize phosphates utilized in metabolism into cycles, sources and sinks. Through this, we identify metabolic reactions leading to putative phosphate sources or sinks. With this conceptualization, we illustrate how mass action driven flux towards sources and sinks enable cells to manage phosphate availability during transient/immediate phosphate limitations. We thereby identify how intracellular phosphate availability will predictably alter specific nodes in carbon metabolism, and determine signature cellular metabolic states. Finally, we identify a need to understand intracellular phosphate pools, in order to address mechanisms of phosphate regulation and restoration.

摘要

磷酸盐是普遍存在的分子,能够促进关键的细胞内生化反应。因此,细胞对磷酸盐限制有精细的反应。我们对长期转录对磷酸盐限制的反应有广泛的理解。相比之下,缺乏一种系统层面的视角,该视角用统一的生化概念来解释磷酸盐平衡如何与(并控制)代谢信息流紧密偶联。为了概念化这些过程,我们利用酵母代谢网络将代谢中使用的磷酸盐分为循环、来源和汇。通过这种方式,我们确定导致潜在磷酸盐源或汇的代谢反应。通过这种概念化,我们说明了物质流向源和汇的驱动力如何使细胞能够在瞬态/即时磷酸盐限制期间管理磷酸盐的可用性。我们因此确定了细胞内磷酸盐的可用性将如何可预测地改变碳代谢中的特定节点,并确定细胞代谢状态的特征。最后,我们确定需要了解细胞内磷酸盐池,以解决磷酸盐调节和恢复的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbf2/7864628/f82833d7daba/elife-63341-fig1.jpg

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