Involvement of Bicarbonate-Induced Radical Signaling in Oxysterol Formation and Sterol Depletion of Capacitating Mammalian Sperm During In Vitro Fertilization

Publication date

2013-01-01

Authors

Boerke, A.ISNI 0000000392320126
Brouwers, JosISNI 0000000390722770
Olkkonen, Vesa M.
van de Lest, ChrisORCID 0000-0003-2143-2825ISNI 0000000389810933
Sostaric, EditaISNI 000000039636672X
Schoevers, Eric JISNI 0000000389863111
Helms, J BerndISNI 0000000390424642
Gadella, B.M.ISNI 0000000395892373

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Abstract

This study demonstrates for the first time that porcine and mouse sperm incubated in capacitation media supplemented with bicarbonate produce oxysterols. The production is depen- dent on a reactive oxygen species (ROS) signaling pathway that is activated by bicarbonate and can be inhibited or blocked by addition of vitamin E or vitamin A or induced in absence of bicarbonate with pro-oxidants. The oxysterol formation was required to initiate albumin dependent depletion of 30% of the total free sterol and >50% of the formed oxysterols. Incubation of bicarbonate treated sperm with oxysterol-binding proteins (ORP-1 or ORP-2) caused a reduction of >70% of the formed oxysterols in the sperm pellet but no free sterol depletion. Interestingly, both ORP and albumin treatments led to similar signs of sperm capacitation: hyperactivated motility, tyrosin phosphorylation, and aggregation of flotillin in the apical ridge area of the sperm head. However, only albumin incubations led to high in vitro fertilization rates of the oocytes, whereas the ORP-1 and ORP-2 incubations did not. A pretreatment of sperm with vitamin E or A caused reduced in vitro fertilization rates with 47% and 100%, respectively. Artificial depletion of sterols mediated by methyl-beta cyclodextrin bypasses the bicarbonate ROS oxysterol signaling pathway but resulted only in low in vitro fertilization rates and oocyte degeneration. Thus, bicarbonate- induced ROS formation causes at the sperm surface oxysterol formation and a simultaneous activation of reverse sterol transport from the sperm surface, which appears to be required for efficient oocyte fertilization. © 2013 by the Society for the Study of Reproduction, Inc.

Keywords

Acrosome reaction, In vitro fertilization (IVF), Oxidative stress, Porcine/pig, Sperm capacitation, Cell Biology, International

Citation

Boerke, A, Brouwers, J F, Olkkonen, V M, van de Lest, C H A, Sostaric, E, Schoevers, E J, Helms, J B & Gadella, B M 2013, 'Involvement of Bicarbonate-Induced Radical Signaling in Oxysterol Formation and Sterol Depletion of Capacitating Mammalian Sperm During In Vitro Fertilization', Biology of Reproduction, vol. 88, no. 1, 21, pp. 1-18. https://doi.org/10.1095/biolreprod.112.101253