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乳蛋白与山羊精子结合蛋白(BSP)相互作用,并降低它们与精子的结合。

Milk proteins interact with goat Binder of SPerm (BSP) proteins and decrease their binding to sperm.

作者信息

de Menezes Erika Bezerra, van Tilburg Mauricio, Plante Geneviève, de Oliveira Rodrigo V, Moura Arlindo A, Manjunath Puttaswamy

机构信息

Maisonneuve-Rosemont Hospital Research Center and Faculty of Medicine, University of Montreal, Centre Ville, Montréal, Québec, Canada, H3C 3J7.

Department of Animal Science, Federal University of Ceara, Av. Mister Hull S/N, Campus Pici, Bloco 808, Fortaleza, CE, Brazil, 60021-970.

出版信息

Cell Tissue Res. 2016 Nov;366(2):427-442. doi: 10.1007/s00441-016-2438-2. Epub 2016 Jul 19.

Abstract

Seminal plasma Binder of SPerm (BSP) proteins bind to sperm at ejaculation and promote capacitation. When in excess, however, BSP proteins damage the sperm membrane. It has been suggested that milk components of semen extenders associate with BSP proteins, potentially protecting sperm. Thus, this study was conducted to investigate if milk proteins interact with BSP proteins and reduce BSP binding to goat sperm. Using gel filtration chromatography, milk was incubated with goat seminal plasma proteins and loaded onto columns with and without calcium. Milk was also fractionated into parts containing mostly whey proteins or mostly caseins, incubated with seminal plasma proteins and subjected to gel filtration. Eluted fractions were evaluated by immunoblot using anti-goat BSP antibodies, confirming milk protein-BSP protein interactions. As determined by ELISA, milk proteins coated on polystyrene wells bound to increasing of goat BSP proteins. Far-western dot blots confirmed that BSP proteins bound to caseins and β-lactoglobulin in a concentration-dependent manner. Then, cauda epididymal sperm from five goats was incubated with seminal plasma; seminal plasma followed by milk; and milk followed by seminal plasma. Sperm membrane proteins were extracted and evaluated by immunoblotting. The pattern of BSP binding to sperm membrane proteins was reduced by 59.3 % when epididymal sperm were incubated with seminal plasma and then with skimmed milk (p < 0.05). When epididymal sperm were treated with milk followed by seminal plasma, coating of sperm with BSP proteins was not significantly reduced (57.6 %; p > 0.05). In conclusion, goat BSP proteins have an affinity for caseins and whey proteins. Milk reduces BSP binding to goat sperm, depending whether or not sperm had been previously exposed to seminal plasma. Such events may explain the protective effect of milk during goat sperm preservation.

摘要

精液浆精子结合蛋白(BSP)在射精时与精子结合并促进获能。然而,当BSP蛋白过量时,会损害精子膜。有研究表明,精液稀释剂中的乳成分与BSP蛋白结合,可能对精子起到保护作用。因此,本研究旨在调查乳蛋白是否与BSP蛋白相互作用,并减少BSP与山羊精子的结合。使用凝胶过滤色谱法,将牛奶与山羊精液浆蛋白一起孵育,然后加载到含或不含钙的柱上。牛奶还被分离成主要含乳清蛋白或主要含酪蛋白的部分,与精液浆蛋白一起孵育并进行凝胶过滤。通过使用抗山羊BSP抗体的免疫印迹法评估洗脱级分,证实了乳蛋白与BSP蛋白的相互作用。通过酶联免疫吸附测定法确定,包被在聚苯乙烯孔上的乳蛋白与山羊BSP蛋白的结合量增加。Far-western斑点印迹证实,BSP蛋白以浓度依赖的方式与酪蛋白和β-乳球蛋白结合。然后,将五只山羊的附睾尾精子与精液浆一起孵育;先与精液浆孵育,再与牛奶孵育;以及先与牛奶孵育,再与精液浆孵育。提取精子膜蛋白并通过免疫印迹法进行评估。当附睾精子先与精液浆孵育,然后与脱脂牛奶孵育时,BSP与精子膜蛋白的结合模式减少了59.3%(p<0.05)。当附睾精子先用牛奶处理,然后再用精液浆处理时,BSP蛋白对精子的包被没有显著减少(57.6%;p>0.05)。总之,山羊BSP蛋白对酪蛋白和乳清蛋白具有亲和力。牛奶减少BSP与山羊精子的结合,这取决于精子之前是否接触过精液浆。这些情况可能解释了牛奶在山羊精子保存过程中的保护作用。

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