Mass Spectrometric Detection of Cholesterol Oxidation in Bovine Sperm

被引:58
作者
Brouwers, Jos F. [1 ]
Boerke, Arjan [1 ]
Silva, Patricia F. N. [1 ,2 ]
Garcia-Gil, Nuria [1 ,4 ]
van Gestel, Renske A. [1 ,5 ,6 ]
Helms, J. Bernd [1 ]
van de Lest, Chris H. A. [1 ,3 ]
Gadella, Bart M. [1 ,2 ]
机构
[1] Univ Utrecht, Fac Vet Med, Dept Biochem & Cell Biol, Utrecht, Netherlands
[2] Univ Utrecht, Fac Vet Med, Dept Farm Anim Hlth, Utrecht, Netherlands
[3] Univ Utrecht, Fac Vet Med, Dept Equine Sci, Utrecht, Netherlands
[4] IRTA, Inst Food Technol, Monells, Spain
[5] Univ Utrecht, Dept Biomol Mass Spectrometry, Netherlands Prote Ctr Biomol Res, Utrecht, Netherlands
[6] Univ Utrecht, Utrecht Inst Pharmaceut Sci, Utrecht, Netherlands
关键词
cholesterol; cryopreservation; lipid peroxidation; mass spectrometry; oxidative stress; oxysterols; sperm; sperm capacitation; PROTEIN-TYROSINE PHOSPHORYLATION; PRESSURE CHEMICAL-IONIZATION; OXYSTEROL-INDUCED APOPTOSIS; METHYL-BETA-CYCLODEXTRIN; IN-VITRO FERTILIZATION; LIPID-PEROXIDATION; PLASMA-MEMBRANE; HUMAN SPERMATOZOA; ALPHA-TOCOPHEROL; BOAR SPERM;
D O I
10.1095/biolreprod.111.091207
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
We report on the presence and formation of cholesterol oxidation products (oxysterols) in bovine sperm. Although cholesterol is the most abundant molecule in the membrane of mammalian cells and is easily oxidized, this is the first report on cholesterol oxidation in sperm membranes as investigated by state-of-the-art liquid chromatographic and mass spectrometric methods. First, oxysterols are already present in fresh semen samples, showing that lipid peroxidation is part of normal sperm physiology. After chromatographic separation (by high-performance liquid chromatography), the detected oxysterol species were identified with atmospheric pressure chemical ionization mass spectrometry in multiple-reaction-monitoring mode that enabled detection in a broad and linear concentration range (0.05-100 pmol for each oxysterol species detected). Second, exposure of living sperm cells to oxidative stress does not result in the same level and composition of oxysterol species compared with oxidative stress imposed on reconstituted vesicles from protein-free sperm lipid extracts. This suggests that living sperm cells protect themselves against elevated oxysterol formation. Third, sperm capacitation induces the formation of oxysterols, and these formed oxysterols are almost completely depleted from the sperm surface by albumin. Fourth, and most importantly, capacitation after freezing/thawing of sperm fails to induce both the formation of oxysterols and the subsequent albumin-dependent depletion of oxysterols from the sperm surface. The possible physiological relevance of capacitation-dependent oxysterol formation and depletion at the sperm surface as well as the omission of this after freezing/thawing semen is discussed.
引用
收藏
页码:128 / 136
页数:9
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