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小鼠的精囊自身抗原能够抑制由血清白蛋白刺激的精子获能相关事件。

A seminal vesicle autoantigen of mouse is able to suppress sperm capacitation-related events stimulated by serum albumin.

作者信息

Huang Y H, Chu S T, Chen Y H

机构信息

Institute of Biological Chemistry, Academia Sinica, and Institute of Biochemical Sciences, College of Science, National Taiwan University, Taipei 106, Taiwan.

出版信息

Biol Reprod. 2000 Nov;63(5):1562-6. doi: 10.1095/biolreprod63.5.1562.

Abstract

We studied the effect of a mouse seminal vesicle autoantigen (SVA) on BSA-stimulated functions of mouse sperm. Uncapacitated, capacitated, and acrosome-reacted stages of sperm were morphologically scored, and the cellular zinc content was examined cytologically in a modified Tyrode solution at 37 degrees C for 80 min. More than 85% of control cells remained uncapacitated. Addition of 0.3% SVA to the cell incubation did not affect the cell status. Approximately 65% of cells were capacitated in the incubation medium containing 0.3% BSA. Only 30% of the cells became capacitated after incubation with 0.3% BSA and 0.3% SVA together. The decapacitation effect by 0.3% SVA could be subdued by more than 3% BSA in the cell incubation. Whereas BSA did, SVA did not cause removal of Zn(2+) from sperm, but SVA could suppress the BSA effect. The tyrosine phosphorylated proteins in sperm were detected after incubation in a modified HEPES medium containing 0.3% BSA and/or 0.3% SVA at 37 degrees C for 90 min. Whereas BSA enhanced greatly, SVA did not cause phosphorylation of proteins in the range of M:(r) 40 000-120 000. The BSA-stimulated protein tyrosine phosphorylation could be suppressed by SVA in the cell incubation.

摘要

我们研究了小鼠精囊自身抗原(SVA)对牛血清白蛋白(BSA)刺激的小鼠精子功能的影响。对未获能、获能和顶体反应阶段的精子进行形态学评分,并在37℃的改良Tyrode溶液中进行80分钟的细胞学检查,以检测细胞锌含量。超过85%的对照细胞仍未获能。在细胞孵育中添加0.3%的SVA不影响细胞状态。在含有0.3% BSA的孵育培养基中,约65%的细胞获能。在与0.3% BSA和0.3% SVA共同孵育后,只有30%的细胞获能。在细胞孵育中,超过3%的BSA可减弱0.3% SVA的去获能作用。与BSA不同,SVA不会导致精子中Zn(2+)的去除,但SVA可抑制BSA的作用。在含有0.3% BSA和/或0.3% SVA的改良HEPES培养基中于37℃孵育90分钟后,检测精子中的酪氨酸磷酸化蛋白。与BSA显著增强不同,SVA不会导致分子量在40 000 - 120 000范围内的蛋白质磷酸化。在细胞孵育中,SVA可抑制BSA刺激的蛋白质酪氨酸磷酸化。

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