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癌症细胞类型中跨质膜电子传递异质性的机制见解。

Mechanistic insight into heterogeneity of trans-plasma membrane electron transport in cancer cell types.

机构信息

Division of Regenerative Medicine and Cellular Therapies, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD, United Kingdom.

Walgreens Boots Alliance, Nottingham NG2 3AA, United Kingdom.

出版信息

Biochim Biophys Acta Bioenerg. 2019 Aug 1;1860(8):628-639. doi: 10.1016/j.bbabio.2019.06.012. Epub 2019 Jun 20.

Abstract

Trans-plasma membrane electron transfer (tMPET) is a process by which reducing equivalents, either electrons or reductants like ascorbic acid, are exported to the extracellular environment by the cell. TPMET is involved in a number of physiological process and has been hypothesised to play a role in the redox regulation of cancer metabolism. Here, we use a new electrochemical assay to elucidate the 'preference' of cancer cells for different trans tPMET systems. This aids in proving a biochemical framework for the understanding of tPMET role, and for the development of novel tPMET-targeting therapeutics. We have delineated the mechanism of tPMET in 3 lung cancer cell models to show that the external electron transfer is orchestrated by ascorbate mediated shuttling via tPMET. In addition, the cells employ a different, non-shuttling-based mechanism based on direct electron transfer via Dcytb. Results from our investigations indicate that tPMETs are used differently, depending on the cell type. The data generated indicates that tPMETs may play a fundamental role in facilitation of energy reprogramming in malignant cells, whereby tPMETs are utilised to supply the necessary energy requirement when mitochondrial stress occurs. Our findings instruct a deeper understanding of tPMET systems, and show how different cancer cells may preferentially use distinguishable tPMET systems for cellular electron transfer processes.

摘要

跨质膜电子转移(tMPET)是一种将还原当量(电子或还原剂如抗坏血酸)从细胞输出到细胞外环境的过程。tMPET 参与了许多生理过程,并被假设在癌症代谢的氧化还原调节中发挥作用。在这里,我们使用一种新的电化学测定法来阐明癌细胞对不同的跨 tMPET 系统的“偏好”。这有助于为理解 tMPET 作用提供生化框架,并为开发新型 tMPET 靶向治疗方法提供依据。我们已经描述了 3 种肺癌细胞模型中的 tMPET 机制,表明外部电子转移是由抗坏血酸介导的通过 tMPET 的穿梭来协调的。此外,细胞还采用基于 Dcytb 的直接电子转移的不同非穿梭机制。我们的研究结果表明,tMPET 根据细胞类型的不同而被不同地使用。生成的数据表明,tMPET 可能在促进恶性细胞能量重编程中发挥着基本作用,当线粒体应激发生时,tMPET 被用来提供必要的能量需求。我们的发现指导了对 tMPET 系统的更深入理解,并展示了不同的癌细胞如何可能优先使用可区分的 tMPET 系统来进行细胞电子转移过程。

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