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当代谢遇到细菌的细胞周期。

When the metabolism meets the cell cycle in bacteria.

机构信息

Bacterial Cell Cycle & Development (BCcD), Biology of Microorganisms Research Unit (URBM), Namur Research Institute for Life Science (NARILIS), University of Namur, Namur (5000), Belgium.

Bacterial Cell Cycle & Development (BCcD), Biology of Microorganisms Research Unit (URBM), Namur Research Institute for Life Science (NARILIS), University of Namur, Namur (5000), Belgium; Namur Research College (NARC), University of Namur, Namur (5000), Belgium; WELBIO, University of Namur, Namur (5000), Belgium.

出版信息

Curr Opin Microbiol. 2021 Apr;60:104-113. doi: 10.1016/j.mib.2021.02.006. Epub 2021 Mar 4.

Abstract

Nutrients availability is the sinews of the war for single microbial cells, driving growth and cell cycle progression. Therefore, coordinating cellular processes with nutrients availability is crucial, not only to survive upon famine or fluctuating conditions but also to rapidly thrive and colonize plentiful environments. While metabolism is traditionally seen as a set of chemical reactions taking place in cells to extract energy and produce building blocks from available nutrients, numerous connections between metabolic pathways and cell cycle phases have been documented. The few regulatory systems described at the molecular levels show that regulation is mediated either by a second messenger molecule or by a metabolite and/or a metabolic enzyme. In the latter case, a secondary moonlighting regulatory function evolved independently of the primary catalytic function of the enzyme. In this review, we summarize our current understanding of the complex cross-talks between metabolism and cell cycle in bacteria.

摘要

营养物质的可利用性是单个微生物细胞进行战争的关键,它推动了微生物的生长和细胞周期进程。因此,将细胞过程与营养物质的可利用性相协调至关重要,不仅对于在饥荒或波动条件下生存,而且对于快速繁荣和在丰富的环境中定殖也是如此。虽然代谢通常被视为一组在细胞中发生的化学反应,用于从可用营养物质中提取能量并产生构建块,但已经记录了代谢途径和细胞周期阶段之间的许多联系。在分子水平上描述的少数调节系统表明,调节是通过第二信使分子或代谢物和/或代谢酶来介导的。在后一种情况下,酶的次要兼职调节功能是在酶的主要催化功能之外独立进化的。在这篇综述中,我们总结了我们目前对细菌中代谢和细胞周期之间复杂交叉对话的理解。

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