电子传输链
电子转移
线粒体
胶体金
生物物理学
化学
膜
氧化还原
线粒体内膜
纳米颗粒
纳米技术
光化学
材料科学
生物化学
生物
有机化学
作者
Yuseung Jo,Jin Seok Woo,A Ram Lee,Seon-Yeong Lee,Yonghee Shin,Luke P. Lee,Mi‐La Cho,Taewook Kang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2022-09-22
卷期号:22 (19): 7927-7935
被引量:7
标识
DOI:10.1021/acs.nanolett.2c02957
摘要
Electron transfer through the mitochondrial electron transport chain (ETC) can be critically blocked by the dysfunction of protein complexes. Redox-active molecules have been used to mediate the electron transfer in place of the dysfunctional complexes; however, they are limited to replacing complex I and are known to be toxic. Here we report artificial mitochondrial electron transfer pathways that enhance ETC activity by exploiting inner-membrane-bound gold nanoparticles (GNPs) as efficient electron transfer mediators. The hybridization of mitochondria with GNPs, driven by electrostatic interaction, is successfully visualized in real time at the level of a single mitochondrion. By observing quantized quenching dips via plasmon resonance energy transfer, we reveal that the hybridized GNPs are bound to the inner membrane of mitochondria irrespective of the presence of the outer membrane. The ETC activity of mitochondria with GNPs such as membrane potential, oxygen consumption, and ATP production is remarkably increased in vitro.
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