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公猪精子黏附素在附属性腺液以及附睾、射出和获能精子表面的定量分析。

Quantitation of boar spermadhesins in accessory sex gland fluids and on the surface of epididymal, ejaculated and capacitated spermatozoa.

作者信息

Dostàlovà Z, Calvete J J, Sanz L, Töpfer-Petersen E

机构信息

Institut für Reproduktionsmedizin, Tierärztliche Hochschule Hannover, FRG.

出版信息

Biochim Biophys Acta. 1994 May 25;1200(1):48-54. doi: 10.1016/0304-4165(94)90026-4.

Abstract

Spermadhesins are multifunctional proteins involved in boar sperm capacitation and gamete recognition. Using anti-AWN antibodies, we have followed the fate of spermadhesin AWN along the maturation and capacitation stages of boar spermatozoa. In addition, the amount of spermadhesins AQN-1, AQN-2, and AQN-3 relative to that of AWN was determined by amino acid analysis after reverse-phase HPLC isolation. Our data show that AWN-1 is the only spermadhesin on the surface of epididymal sperm and that a large amount of AQN-1, AQN-2, AQN-3, AWN-1 and AWN-2 become coated on ejaculated spermatozoa. The number of spermadhesin molecules on ejaculated sperm (12-60 x 10(6)/spermatozoa) is sufficient to form a many-molecules-thick coat over the sperm head. However, 50-75% of the AQN-1, AQN-2, and AQN-3 population, and around 90% of coated AWN (1 + 2) are released from ejaculated sperm during capacitation. This indicates that a large subpopulation of each boar spermadhesin is loosely associated to the sperm surface and may function as decapacitation factors. The remaining spermadhesin molecules, which are tightly bound to the sperm head's surface may play a role as either positive capacitation factors and/or in gamete recognition and binding.

摘要

精黏附素是参与公猪精子获能和配子识别的多功能蛋白质。利用抗AWN抗体,我们追踪了精黏附素AWN在公猪精子成熟和获能阶段的变化情况。此外,在反相高效液相色谱分离后,通过氨基酸分析确定了精黏附素AQN-1、AQN-2和AQN-3相对于AWN的含量。我们的数据表明,AWN-1是附睾精子表面唯一的精黏附素,并且大量的AQN-1、AQN-2、AQN-3、AWN-1和AWN-2会包被在射出的精子上。射出精子上精黏附素分子的数量(12 - 60×10⁶/精子)足以在精子头部形成多层分子厚的包被。然而,在获能过程中,50 - 75%的AQN-1、AQN-2和AQN-3群体,以及大约90%包被的AWN(1 + 2)会从射出的精子中释放出来。这表明每种公猪精黏附素的很大一部分亚群体与精子表面松散结合,可能作为去能因子发挥作用。其余紧密结合在精子头部表面的精黏附素分子可能作为正向获能因子和/或在配子识别与结合中发挥作用。

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