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Modulating inter-mitochondrial contacts to increase membrane potential for mitigating blue light damage.


ABSTRACT: Mitochondrial membrane potential (MMP) is essential for mitochondrial functions, yet current methods for modulating MMP lack precise spatial and temporal control. Here, we present an optogenetic system that enables reversible formation of inter-mitochondrial contacts (mito-contacts) with high spatiotemporal precision. Blue light stimulation induces rapid formation of mito-contacts, which fully dissipate upon cessation of illumination. These light-induced mito-contacts can enhance MMP, leading to increased ATP production under stress conditions. Moreover, in human retinal cells and C. elegans, high MMP induced by mito-contacts alleviates the deleterious effects of prolonged blue light exposure, restoring energy metabolism and extending organismal lifespan. This optogenetic approach provides a powerful tool for modulating MMP and offers potential therapeutic applications for diseases linked to mitochondrial dysfunction.

SUBMITTER: Wang Y 

PROVIDER: S-EPMC12633366 | biostudies-literature | 2025 Oct

REPOSITORIES: biostudies-literature

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Modulating inter-mitochondrial contacts to increase membrane potential for mitigating blue light damage.

Wang Yuxin Y   Qiu Kangqiang K   Zou Weiwei W   Amom Prativa P   Ganjawala Tushar H TH   Lee Eugene E   Tian Zhiqi Z   Xu Xiuqiong X   Huang Taosheng T   Tsai Nien-Pei NP   Shi Donglu D   Kang Ping P   Bai Hua H   Zacharias Amanda L AL   Zhang Kai K   Diao Jiajie J  

bioRxiv : the preprint server for biology 20251025


Mitochondrial membrane potential (MMP) is essential for mitochondrial functions, yet current methods for modulating MMP lack precise spatial and temporal control. Here, we present an optogenetic system that enables reversible formation of inter-mitochondrial contacts (mito-contacts) with high spatiotemporal precision. Blue light stimulation induces rapid formation of mito-contacts, which fully dissipate upon cessation of illumination. These light-induced mito-contacts can enhance MMP, leading to  ...[more]

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