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Haplogroup J mitogenomes are the most sensitive to the pesticide rotenone: Relevance for human diseases

Academic Article
Publication Date:
2018
abstract:
There is growing evidence that the sequence variation of mitochondrial DNA (mtDNA), which clusters in population- and/or geographic-specific haplogroups, may result in functional effects that, in turn, become relevant in disease predisposition or protection, interaction with environmental factors and ultimately in modulating longevity. To unravel functional differences between mtDNA haplogroups we here employed transmitochondrial cytoplasmic hybrid cells (cybrids) grown in galactose medium, culture condition that force oxidative phosphorylation, and in the presence of rotenone, the classic inhibitor of respiratory Complex I. Under this experimental paradigm we assessed functional parameters such as cell viability and respiration, ATP synthesis, reactive oxygen species production and mtDNA copy number. Our analyses show that haplogroup J1, which is common in western Eurasian populations, is the most sensitive to rotenone, whereas K1 mitogenomes orchestrate the best compensation, possibly because of the haplogroup-specific missense variants impinging on Complex I function. Remarkably, haplogroups J1 and K1 fit the genetic associations previously established with Leber's hereditary optic neuropathy (LHON) for J1, as a penetrance enhancer, and with Parkinson's disease (PD) for K1, as a protective background. Our findings provide functional evidences supporting previous well-established genetic associations of specific haplogroups with two neurodegenerative pathologies, LHON and PD. Our experimental paradigm is instrumental to highlighting the subtle functional differences characterizing mtDNA haplogroups, which will be increasingly needed to dissect the role of mtDNA genetic variation in health, disease and longevity.
Iris type:
1.1 Articolo in rivista
Keywords:
Complex I; Cybrids; Haplogroups; Mitochondrial DNA; Rotenone
List of contributors:
Strobbe, Daniela; Caporali, Leonardo; Iommarini, Luisa; Maresca, Alessandra; Montopoli, Monica; Martinuzzi, Andrea; Achilli, Alessandro; Olivieri, Anna; Torroni, Antonio; Carelli, Valerio; Ghelli, Anna
Authors of the University:
ACHILLI ALESSANDRO
OLIVIERI ANNA
TORRONI ANTONIO
Handle:
https://iris.unipv.it/handle/11571/1212626
Published in:
NEUROBIOLOGY OF DISEASE
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S0969996118300421
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