Pini Taylor, Farmer Kiri, Druart Xavier, Teixeira-Gomes Ana Paula, Tsikis Guillaume, Labas Valerie, Leahy Tamara, de Graaf Simon P
School of Life and Environmental Sciences, Faculty of Science, University of Sydney, Sydney, New South Wales 2006, Australia.
School of Life and Environmental Sciences, Faculty of Science, University of Sydney, Sydney, New South Wales 2006, Australia.
Cryobiology. 2018 Jun;82:78-87. doi: 10.1016/j.cryobiol.2018.04.005. Epub 2018 Apr 10.
Cryopreservation causes sub-lethal damage which limits the fertility of frozen thawed spermatozoa. Seminal plasma has been investigated as a cryoprotectant, but has yielded inconsistent results due to considerable variation in its constituents. Individual seminal plasma proteins offer an ideal alternative to whole seminal plasma, and several have been correlated with freezing success. Binder of Sperm Proteins (BSPs) are abundant ram seminal plasma proteins which have been suggested to have significant protective effects on ram spermatozoa during cold shock. This is in direct opposition to bull spermatozoa, where BSPs cause sperm deterioration during in vitro handling. We investigated the potential of BSP1 and BSP5 to prevent freezing associated damage to important functional parameters of ram spermatozoa. BSPs purified by size exclusion chromatography improved post thaw motility and penetration through artificial mucus. Highly purified BSP1 and BSP5, isolated by gelatin affinity and RP-HPLC, improved motility and membrane integrity, and reduced post thaw protein tyrosine phosphorylation. Exposure to BSP5 before freezing increased the amount of phosphatidylethanolamine on the sperm surface after thawing. Neither BSP1 nor BSP5 prevented freezing associated changes in membrane lipid disorder. These results suggest that BSPs may significantly improve freezing outcomes of ram spermatozoa.
冷冻保存会造成亚致死损伤,这限制了冻融后精子的生育能力。精浆已被作为一种冷冻保护剂进行研究,但由于其成分存在相当大的差异,结果并不一致。单个精浆蛋白为整个精浆提供了理想的替代物,并且有几种已被证明与冷冻成功率相关。精子蛋白结合蛋白(BSPs)是丰富的公羊精浆蛋白,有人认为它们在冷休克期间对公羊精子具有显著的保护作用。这与公牛精子的情况直接相反,在公牛精子中,BSPs在体外处理过程中会导致精子退化。我们研究了BSP1和BSP5预防冷冻对公羊精子重要功能参数造成损伤的潜力。通过尺寸排阻色谱法纯化的BSPs提高了解冻后的活力以及穿过人工黏液的能力。通过明胶亲和和反相高效液相色谱法分离得到的高度纯化的BSP1和BSP5提高了活力和膜完整性,并减少了解冻后蛋白质酪氨酸磷酸化。在冷冻前暴露于BSP5可增加解冻后精子表面磷脂酰乙醇胺的含量。BSP1和BSP5均未阻止冷冻引起的膜脂质紊乱变化。这些结果表明,BSPs可能会显著改善公羊精子的冷冻效果。