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观点:代谢在细胞中扮演着激动人心的角色。

Perspective: a stirring role for metabolism in cells.

机构信息

Molecular Systems Biology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, The Netherlands.

Molecular Dynamics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, Groningen, The Netherlands.

出版信息

Mol Syst Biol. 2022 Apr;18(4):e10822. doi: 10.15252/msb.202110822.

Abstract

Based on recent findings indicating that metabolism might be governed by a limit on the rate at which cells can dissipate Gibbs energy, in this Perspective, we propose a new mechanism of how metabolic activity could globally regulate biomolecular processes in a cell. Specifically, we postulate that Gibbs energy released in metabolic reactions is used to perform work, allowing enzymes to self-propel or to break free from supramolecular structures. This catalysis-induced enzyme movement will result in increased intracellular motion, which in turn can compromise biomolecular functions. Once the increased intracellular motion has a detrimental effect on regulatory mechanisms, this will establish a feedback mechanism on metabolic activity, and result in the observed thermodynamic limit. While this proposed explanation for the identified upper rate limit on cellular Gibbs energy dissipation rate awaits experimental validation, it offers an intriguing perspective of how metabolic activity can globally affect biomolecular functions and will hopefully spark new research.

摘要

基于最近的研究发现,代谢可能受到细胞耗散吉布斯能量速率的限制,在本观点中,我们提出了一种新的机制,即代谢活性如何能够在细胞内全局调节生物分子过程。具体来说,我们假设代谢反应中释放的吉布斯能量用于做功,使酶能够自行推进或从超分子结构中挣脱出来。这种催化诱导的酶运动将导致细胞内运动增加,从而可能破坏生物分子功能。一旦增加的细胞内运动对调节机制产生不利影响,这将在代谢活性上建立一个反馈机制,并导致观察到的热力学限制。虽然这种对细胞吉布斯能量耗散率确定的上限速率的解释尚待实验验证,但它提供了一个有趣的视角,即代谢活性如何能够全局影响生物分子功能,并有望激发新的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0941/8972047/609512a1e91b/MSB-18-e10822-g004.jpg

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