The energetics of cellular life transitions.

Life metabolism Pub Date : 2024-06-01 Epub Date: 2023-12-27 DOI:10.1093/lifemeta/load051
Anna S Monzel, Michael Levin, Martin Picard
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Abstract

Major life transitions are always difficult because change costs energy. Recent findings have demonstrated how mitochondrial oxidative phosphorylation (OxPhos) defects increase the energetic cost of living, and that excessive integrated stress response (ISR) signaling may prevent cellular identity transitions during development. In this perspective, we discuss general bioenergetic principles of life transitions and the costly molecular processes involved in reprograming the cellular hardware/software as cells shift identity. The energetic cost of cellular differentiation has not been directly quantified, representing a gap in knowledge. We propose that the ISR is an energetic checkpoint evolved to i) prevent OxPhos-deficient cells from engaging in excessively costly transitions, and ii) allow ISR-positive cells to recruit systemic energetic resources by signaling via the brain.

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细胞生命转换的能量学。
生命的重大转变总是困难重重,因为改变需要耗费能量。最近的研究结果表明,线粒体氧化磷酸化(OxPhos)缺陷如何增加了生命的能量成本,而过度的综合应激反应(ISR)信号传导可能会阻止发育过程中的细胞身份转换。在这一视角中,我们讨论了生命转换的一般生物能原理,以及细胞身份转换时重新编程细胞硬件/软件所涉及的高成本分子过程。细胞分化的能量成本尚未被直接量化,这是一个知识空白。我们提出,ISR 是一种能量检查点,其进化目的是:i)防止 OxPhos 缺乏的细胞进行代价过高的转换;ii)允许 ISR 阳性的细胞通过大脑发出信号来招募系统能量资源。
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