The 'mitoflash' probe cpYFP does not respond to superoxide.
basic_science · Level V
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- Record sourced from PubMed, PMID 25341790.
- Also identified by DOI 10.1038/nature13858 and PMC identifier 4346172.
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Abstract
Ageing and lifespan of organisms are determined by complicated interactions between their genetics and the environment, but the cellular mechanisms remain controversial. There have been a number of studies suggesting that cellular energy metabolism and free radical dynamics affect lifespan, implicating mitochondrial function. Recently, Shen <i>et al.</i> provided apparent mechanistic insight by reporting that mitochondrial oscillations of ‘free radical production’, called ‘mitoflashes’, in the pharynx of 3-day old <i>Caenorhabditis elegans</i> correlated inversely with lifespan. The interpretation of ‘mitoflashes’ as ‘bursts of superoxide’ radicals assumes that circularly permuted yellow fluorescent protein (cpYFP) is a reliable indicator of mitochondrial superoxide. This interpretation has been criticised because experiments and theoretical considerations both show that changes in cpYFP fluorescence are due to alterations in pH, not superoxide<sup>-</sup>. We now provide direct evidence that purified cpYFP is completely unresponsive to superoxide. Therefore ‘mitoflashes’ do not reflect superoxide generation and are not evidence for a link between mitochondrial free radical dynamics and lifespan.
Medical subject headings
- Caenorhabditis elegans
- Longevity
- Mitochondria
- Superoxides