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纳米尺度下的线粒体:物理学与生物学的交汇——这对医学意味着什么?

Mitochondria at the Nanoscale: Physics Meets Biology-What Does It Mean for Medicine?

作者信息

Mourokh Lev, Friedman Jonathan

机构信息

Physics Department, Queens College, The City University of New York, 65-30 Kissena Blvd. Flushing, New York, NY 11367, USA.

出版信息

Int J Mol Sci. 2024 Feb 29;25(5):2835. doi: 10.3390/ijms25052835.

Abstract

Mitochondria are commonly perceived as "cellular power plants". Intriguingly, power conversion is not their only function. In the first part of this paper, we review the role of mitochondria in the evolution of eukaryotic organisms and in the regulation of the human body, specifically focusing on cancer and autism in relation to mitochondrial dysfunction. In the second part, we overview our previous works, revealing the physical principles of operation for proton-pumping complexes in the inner mitochondrial membrane. Our proposed simple models reveal the physical mechanisms of energy exchange. They can be further expanded to answer open questions about mitochondrial functions and the medical treatment of diseases associated with mitochondrial disorders.

摘要

线粒体通常被视为“细胞发电厂”。有趣的是,能量转换并非其唯一功能。在本文的第一部分,我们回顾了线粒体在真核生物进化以及人体调节中的作用,特别关注与线粒体功能障碍相关的癌症和自闭症。在第二部分,我们概述了我们之前的工作,揭示了线粒体内膜质子泵复合物的运行物理原理。我们提出的简单模型揭示了能量交换的物理机制。它们可以进一步扩展,以回答有关线粒体功能以及与线粒体疾病相关疾病的医学治疗的开放性问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bcb9/10932015/17365bffb53f/ijms-25-02835-g001.jpg

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