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A conserved role of Parkinson-associated DJ-1 metabolites in sperm motility, mitosis, and embryonic development

Bour, S.; Dening, Y.; Balbach, M.; Poser, I.; Ramirez-Alvarez, I.; den Haan, H.; Kluge, C.; Naumann, R.; Oertel, R.; Alba-Alejandre, I.; Accardi, D.; Stief, C. G.; Dieterich, M.; Falkai, P.; Boeckmann, R. A.; Perez-Sanchez, H.; Hyman, A. A.; Trottmann, M.; Pan-Montojo, F. J.

2021-01-17 developmental biology
10.1101/2021.01.16.426934 bioRxiv
Show abstract

Fertility rates in the developing world have dramatically dropped in the last decades. This drop is likely due to a decline in sperm quality and women having children at older ages. Loss of function mutations in DJ-1, a Parkinsons associated gene, are linked to alterations in multiple cellular processes such as mitochondrial activity, ROS production or sperm motility and lead to an early onset of Parkinsons disease and male infertility in humans and other species. Glycolate (GA) and D-lactate (DL), products of DJ-1 glyoxalase activity, sustain mitochondrial function and protect against environmental aggressions. We, therefore, tested whether these substances could also have a rescue effect on these phenotypes. Here, we show that DJ-1 loss of function not only affects sperm motility but also leads to defects in mitosis and an age-dependent increase in the abortion rate. Remarkably, whereas DL was only able to rescue embryonic lethality in C. elegans, GA rescued these phenotypes in all model systems tested and even increased sperm motility in wild-type sperm. These positive effects seem to be mediated through an increase in NAD(P)H production and the regulation of intracellular calcium. These findings not only strongly suggest GA as a new therapeutic candidate to improve male and female fertility but also show its potential to treat diseases associated with a decline in mitochondrial function or to improve mitochondrial function in aging.

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