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Analysing the mechanism of mitochondrial oxidation-induced cell death using a multifunctional iridium(III) photosensitiser

Chaiheon Lee, Jung Seung Nam, Chae Gyu Lee, Mingyu Park, Chang‐Mo Yoo, Hyun‐Woo Rhee, Jeong Kon Seo, Tae‐Hyuk Kwon

2021Nature Communications77 citationsDOIOpen Access PDF

Abstract

Mitochondrial oxidation-induced cell death, a physiological process triggered by various cancer therapeutics to induce oxidative stress on tumours, has been challenging to investigate owing to the difficulties in generating mitochondria-specific oxidative stress and monitoring mitochondrial responses simultaneously. Accordingly, to the best of our knowledge, the relationship between mitochondrial protein oxidation via oxidative stress and the subsequent cell death-related biological phenomena has not been defined. Here, we developed a multifunctional iridium(III) photosensitiser, Ir-OA, capable of inducing substantial mitochondrial oxidative stress and monitoring the corresponding change in viscosity, polarity, and morphology. Photoactivation of Ir-OA triggers chemical modifications in mitochondrial protein-crosslinking and oxidation (i.e., oxidative phosphorylation complexes and channel and translocase proteins), leading to microenvironment changes, such as increased microviscosity and depolarisation. These changes are strongly related to cell death by inducing mitochondrial swelling with excessive fission and fusion. We suggest a potential mechanism from mitochondrial oxidative stress to cell death based on proteomic analyses and phenomenological observations.

Topics & Concepts

Oxidative stressMitochondrionOxidative phosphorylationMitochondrial fissionProgrammed cell deathCell biologyChemistryMitochondrial permeability transition poreReactive oxygen speciesmitochondrial fusionBiologyBiophysicsApoptosisBiochemistryMitochondrial DNAGeneRedox biology and oxidative stressNanoplatforms for cancer theranosticsMitochondrial Function and Pathology
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