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涨潮还是落潮:线粒体核苷酸的转运与代谢

High tide or low tide: the transport and metabolism of mitochondrial nucleotides.

作者信息

MacVicar Thomas

机构信息

Cancer Research UK Scotland Institute, Glasgow, United Kingdom.

School of Cancer Sciences, University of Glasgow, Glasgow, United Kingdom.

出版信息

Biochem J. 2025 Aug 18;482(16):BCJ20253237. doi: 10.1042/BCJ20253237.

Abstract

Mitochondria are multifaceted organelles that support numerous cellular metabolic pathways, including the biosynthesis of nucleotides required for cell growth and proliferation. Owing to an ancient endosymbiotic origin, mitochondria contain multiple copies of their own genome and therefore demand sufficient (deoxy)nucleotides in the mitochondrial matrix for DNA replication and transcription into RNA. Disturbed mitochondrial deoxynucleotide homeostasis can lead to a decline in mitochondrial DNA abundance and integrity, causing mitochondrial diseases with diverse and severe symptoms. Mitochondrial nucleotides are not only required for nucleic acid synthesis but also for bioenergetics and mitochondrial enzymatic activity. This review first explores how mitochondria supply energy and anabolic precursors for nucleotide synthesis and how the mitochondrial network influences the spatial control of cellular nucleotide metabolism. Then follows an in-depth discussion of the mechanisms that supply mitochondria with sufficient and balanced nucleotides and why these mechanisms are relevant to human mitochondrial disease. Lastly, the review highlights the emergence of regulated mitochondrial nucleotide supply in physiological processes including innate immunity and discusses the implications of dysregulated mitochondrial and cytosolic nucleotide homeostasis in pathophysiology.

摘要

线粒体是多面性的细胞器,支持众多细胞代谢途径,包括细胞生长和增殖所需核苷酸的生物合成。由于其古老的内共生起源,线粒体含有多个自身基因组拷贝,因此在线粒体基质中需要足够的(脱氧)核苷酸用于DNA复制和转录为RNA。线粒体脱氧核苷酸稳态受到干扰会导致线粒体DNA丰度和完整性下降,引发具有多样且严重症状的线粒体疾病。线粒体核苷酸不仅是核酸合成所必需的,也是生物能量学和线粒体酶活性所必需的。本综述首先探讨线粒体如何为核苷酸合成提供能量和合成代谢前体,以及线粒体网络如何影响细胞核苷酸代谢的空间控制。接着深入讨论为线粒体提供充足且平衡的核苷酸的机制,以及这些机制为何与人类线粒体疾病相关。最后,本综述强调了在包括先天免疫在内的生理过程中受调控的线粒体核苷酸供应的出现,并讨论了线粒体和胞质核苷酸稳态失调在病理生理学中的影响。

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