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线粒体的低氧适应及其对肿瘤细胞功能的影响。

Hypoxic adaptation of mitochondria and its impact on tumor cell function.

机构信息

Department of Radiation Oncology, OSU Wexner Medical Center, James Cancer Hospital and Solove Research Institute, Ohio State University, Columbus, OH, USA.

Department of Radiation Oncology, OSU Wexner Medical Center, James Cancer Hospital and Solove Research Institute, Ohio State University, Columbus, OH, USA; Pelotonia Institute for Immuno-Oncology, The Ohio State University Comprehensive Cancer Center, Columbus, OH, USA.

出版信息

Semin Cancer Biol. 2024 May;100:28-38. doi: 10.1016/j.semcancer.2024.03.004. Epub 2024 Mar 30.

Abstract

Mitochondria are the major sink for oxygen in the cell, consuming it during ATP production. Therefore, when environmental oxygen levels drop in the tumor, significant adaptation is required. Mitochondrial activity is also a major producer of biosynthetic precursors and a regulator of cellular oxidative and reductive balance. Because of the complex biochemistry, mitochondrial adaptation to hypoxia occurs through multiple mechanisms and has significant impact on other cellular processes such as macromolecule synthesis and gene regulation. In tumor hypoxia, mitochondria shift their location in the cell and accelerate the fission and quality control pathways. Hypoxic mitochondria also undergo significant changes to fundamental metabolic pathways of carbon metabolism and electron transport. These metabolic changes further impact the nuclear epigenome because mitochondrial metabolites are used as enzymatic substrates for modifying chromatin. This coordinated response delivers physiological flexibility and increased tumor cell robustness during the environmental stress of low oxygen.

摘要

线粒体是细胞中耗氧量最大的细胞器,在产生 ATP 的过程中消耗氧气。因此,当肿瘤中的环境氧水平下降时,需要进行重大的适应。线粒体活性也是生物合成前体的主要产生者,也是细胞氧化还原平衡的调节剂。由于生化反应复杂,线粒体通过多种机制适应缺氧,对其他细胞过程(如大分子合成和基因调控)有重大影响。在肿瘤缺氧时,线粒体在细胞内移动位置,并加速分裂和质量控制途径。缺氧的线粒体还会对碳代谢和电子传递的基本代谢途径发生显著变化。这些代谢变化进一步影响核表观基因组,因为线粒体代谢物被用作修饰染色质的酶底物。这种协调反应在低氧的环境压力下为肿瘤细胞提供了生理灵活性和增强的健壮性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a50d/11320707/c45d5330890a/nihms-2011460-f0001.jpg

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