Mitochondrial glutathione peroxidase 4 disruption causes male infertility

Manuela Schneider(Helmholtz Zentrum München), Heidi Förster(Helmholtz Zentrum München), Auke Boersma(Helmholtz Zentrum München), Alexander Seiler(Helmholtz Zentrum München), Helga Wehnes(Helmholtz Zentrum München), Fred Sinowatz(Ludwig-Maximilians-Universität München), Christine Neumüller(Ludwig-Maximilians-Universität München), Manuel J. Deutsch(Helmholtz Zentrum München), Axel Walch(Helmholtz Zentrum München), Martin Hrabě de Angelis(Helmholtz Zentrum München), Wolfgang Wurst(Helmholtz Zentrum München), Fulvio Ursini(University of Padua), Antonella Roveri(University of Padua), Marek Maleszewski(University of Warsaw), Matilde Maiorino(University of Padua), Marcus Conrad(Helmholtz Zentrum München)
The FASEB Journal
May 5, 2009
Cited by 325Open Access
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Abstract

ABSTRACT Selenium is linked to male fertility. Glutathione peroxidase 4 (GPx4), first described as an antioxidant enzyme, is the predominant selenoenzyme in testis and has been suspected of being vital for spermatogenesis. Cytosolic, mitochondrial, and nuclear isoforms are all encoded by the same gene. While disruption of entire GPx4 causes early embryonic lethality in mice, inactivation of nuclear GPx4 does not impair embryonic development or fertility. Here, we show that deletion of mitochondrial GPx4 (mGPx4) allows both normal embryogenesis and postnatal development, but causes male infertility. Infertility was associated with impaired sperm quality and severe structural abnormalities in the midpiece of spermatozoa. Knockout sperm display higher protein thiol content and recapitulate features typical of severe selenodeficiency. Interestingly, male infertility induced by mGPx4 depletion could be bypassed by intracytoplasmic sperm injection. We also show for the first time that mGPx4 is the prevailing GPx4 product in male germ cells and that mGPx4 disruption has no effect on proliferation or apoptosis of germinal or somatic tissue. Our study finally establishes that mitochondrial GPx4 confers the vital role of selenium in mammalian male fertility and identifies cytosolic GPx4 as the only GPx4 isoform being essential for embryonic development and apoptosis regulation.—Schneider, M., Forster, H., Boersma, A., Seiler, A., Wehnes, H., Sinowatz, F., Neumüller, C., Deutsch, M. J., Walch, A., Hrabede Angelis, M., Wurst, W., Ursini, F., Roveri, A., Maleszewski, M., Maiorino, M. Conrad, M. Mitochondrial glutathione peroxidase 4 disruption causes male infertility. FASEB J . 23, 3233–3242 (2009). www.fasebj.org


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