Male Subfertility Induced by Heterozygous Expression of Catalytically Inactive Glutathione Peroxidase 4 Is Rescued in Vivo by Systemic Inactivation of the Alox15 Gene

被引:31
作者
Bruetsch, Simone Hanna [1 ]
Rademacher, Marlena [1 ]
Roth, Sophia Regina [1 ]
Mueller, Karin [2 ]
Eder, Susanne [2 ]
Viertel, Dagmar [2 ]
Franz, Christiane [2 ]
Kuhn, Hartmut [1 ]
Borchert, Astrid [1 ]
机构
[1] Charite, Inst Biochem, Virchowweg 6,Chariteplatz 1, D-10117 Berlin, Germany
[2] Leibniz Inst Zoo & Wildlife Res, Alfred Kowalke Str 17, D-10315 Berlin, Germany
关键词
eicosanoid; lipoxygenase pathway; mitochondria; oxidative stress; sperm; OXIDATIVE STRESS; EMBRYONIC LETHALITY; REDOX HOMEOSTASIS; RAT TESTIS; 15-LIPOXYGENASE; LIPOXYGENASE; PHGPX; ACID; SPECIFICITY; MUTATIONS;
D O I
10.1074/jbc.M116.738930
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Glutathione peroxidase 4 (GPX4) and arachidonic acid 15-lipoxygenase (ALOX15) are antagonizing enzymes in the metabolism of hydroperoxy lipids. In spermatoid cells and/or in the male reproductive system both enzymes are apparently expressed, and GPX4 serves as anti-oxidative enzyme but also as a structural protein. In this study we explored whether germ line inactivation of the Alox15 gene might rescue male subfertility induced by heterozygous expression of catalytically silent Gpx4. To address this question we employed Gpx4 knock-in mice expressing the Sec46Ala-Gpx4 mutant, in which the catalytic selenocysteine was replaced by a redox inactive alanine. Because homozygous Gpx4 knock-in mice (Sec46Ala-Gpx4(+/+)) are not viable we created heterozygous animals (Sec46Ala-Gpx4(+/-)) and crossed them with Alox15 knock-out mice (Alox15(-/-)). Male Sec46Ala-Gpx4(+/-) mice, but not their female littermates, were subfertile. Sperm extracted from the epididymal cauda showed strongly impaired motility characteristics and severe structural midpiece alterations (swollen mitochondria, intramitochondrial vacuoles, disordered mitochondrial capsule). Despite these structural alterations, they exhibited similar respiration characteristics than wild-type sperm. When Sec46Ala-Gpx4(+/-) mice were crossed with Alox15-deficient animals, the resulting males (Sec46Ala-Gpx4(+/-)+Alox15(-/-)) showed normalized fertility, and sperm motility was reimproved to wild-type levels. Taken together these data suggest that systemic inactivation of the Alox15 gene normalizes the reduced fertility of male Sec46Ala-Gpx4(+/-) mice by improving the motility of their sperm. If these data can be confirmed in humans, ALOX15 inhibitors might counteract male infertility related to GPX4 deficiency.
引用
收藏
页码:23578 / 23588
页数:11
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