Amari S, Yonezawa N, Mitsui S, Katsumata T, Hamano S, Kuwayama M, Hashimoto Y, Suzuki A, Takeda Y, Nakano M
Graduate School of Science and Technology, Chiba University, Chiba, Japan.
Mol Reprod Dev. 2001 Jun;59(2):221-6. doi: 10.1002/mrd.1026.
It has been proposed that mammalian sperm bind species-specifically to carbohydrate chains of zona pellucida glycoproteins at fertilization. Although the sperm ligand carbohydrate chains have been characterized in mice and pigs, the existence of the ligands of other mammals remains unclear. In order to explore the bovine sperm ligand, two in vitro competition assay methods were applied. As a result, a high-mannose-type carbohydrate chain, Manalpha1-6(Manalpha1-3)Manalpha1-6(Manalpha1-3)Manbeta1-4GlcNAcbeta1-4GlcNAc, which is the major neutral chain in bovine egg zona glycoproteins, was shown to possess bovine sperm ligand activity. When nonreducing terminal alpha-mannosyl residues were eliminated from the zona glycoproteins by alpha-mannosidase digestion, the ligand activity was reduced, indicating that the alpha-mannosyl residues play an essential role in bovine sperm-egg binding. The number of sperm binding to eggs was reduced to about one-half after fertilization. The ligand-active high-mannose-type chain may be buried after fertilization, since its amount remains unchanged. Pretreatment of bovine sperm with the sperm ligand-carbohydrate chain significantly inhibited penetration of the sperm into oocyte and the male pronucleus formation. Thus, a correlation between the sperm ligand activity and in vitro fertilization rate was observed.
有人提出,在受精过程中,哺乳动物精子会特异性地与透明带糖蛋白的碳水化合物链结合。尽管在小鼠和猪中已经对精子配体碳水化合物链进行了表征,但其他哺乳动物中配体的存在仍不清楚。为了探索牛精子配体,应用了两种体外竞争测定方法。结果表明,高甘露糖型碳水化合物链,即Manα1-6(Manα1-3)Manα1-6(Manα1-3)Manβ1-4GlcNAcβ1-4GlcNAc,是牛卵透明带糖蛋白中的主要中性链,具有牛精子配体活性。当通过α-甘露糖苷酶消化从透明带糖蛋白中去除非还原末端α-甘露糖基残基时,配体活性降低,这表明α-甘露糖基残基在牛精子与卵子的结合中起重要作用。受精后,精子与卵子结合的数量减少到大约一半。配体活性高甘露糖型链的量在受精后保持不变,可能是因为它在受精后被掩埋了。用精子配体碳水化合物链对牛精子进行预处理,可显著抑制精子穿透卵母细胞和雄性原核的形成。因此,观察到了精子配体活性与体外受精率之间的相关性。