首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >SPERM SURFACE PROTEIN PH-20 IS BIFUNCTIONAL - ONE ACTIVITY IS A HYALURONIDASE AND A SECOND, DISTINCT ACTIVITY IS REQUIRED IN SECONDARY SPERM-ZONA BINDING
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SPERM SURFACE PROTEIN PH-20 IS BIFUNCTIONAL - ONE ACTIVITY IS A HYALURONIDASE AND A SECOND, DISTINCT ACTIVITY IS REQUIRED IN SECONDARY SPERM-ZONA BINDING

机译:精子表面蛋白PH-20是有功能的-一种活性是透明质酸酶,在第二种精子-佐那结合中需要第二种,不同的活性

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In previous studies, we have found that the sperm membrane protein PH-20 acts during two different stages of fertilization. On acrosome-intact sperm, PH-20 has a hyaluronidase activity that is required for sperm penetration through the cumulus cell layer that surrounds the oocyte. On acrosome-reacted sperm, PH-20 has a required function in sperm-zona binding (secondary binding). Because hyaluronic acid (HA) has been detected in the zona pellucida, secondary sperm-zona adhesion could depend on repetitive binding and hydrolysis of HA by PH-20 acting as a hyaluronidase. Alternatively, PH-20 may be bifunctional and have a second, different activity required for secondary binding. To distinguish between these two possibilities, in this study we used reagents that inhibit either PH-20's function in sperm-zona binding or its hyaluronidase activity. We found that an anti-PH-20 monoclonal antibody that inhibited sperm-zone binding (similar to 90%) had no effect on hyaluronidase activity. Conversely, apigenin, a hyaluronidase inhibitor, blocked PH-20 hyaluronidase activity 93% without inhibiting sperm-zona binding. Similarly, another anti-PH-20 monoclonal antibody that inhibited hyaluronidase activity 95% only partially inhibited sperm-zone binding (similar to 45%). We also extensively pretreated oocytes with hyaluronidase to remove all accessible HA on or in the zona pellucida and found little or no effect on secondary sperm-zone binding. Our results suggest that PH-20 is bifunctional and has two activities: a hyaluronidase activity and a second, separate activity required for secondary sperm-zone binding.
机译:在以前的研究中,我们发现精子膜蛋白PH-20在受精的两个不同阶段起作用。在完整的顶体精子上,PH-20具有透明质酸酶活性,这是精子穿过卵母细胞周围的卵丘细胞层渗透所必需的。在顶体反应的精子上,PH-20在精子-zona结合(二次结合)中具有必需的功能。因为在透明带中已检测到透明质酸(HA),所以继发精子-zona粘附可能取决于PH-20用作透明质酸酶的重复结合和HA的水解。或者,PH-20可以是双功能的,并具有第二结合所需的第二不同活性。为了区分这两种可能性,在这项研究中,我们使用了抑制PH-20在精子-精子结合中的功能或其透明质酸酶活性的试剂。我们发现抑制精子区结合(类似于90%)的抗PH-20单克隆抗体对透明质酸酶活性没有影响。相反,透明质酸酶抑制剂芹菜素在不抑制精子与精子结合的情况下可将PH-20透明质酸酶的活性阻断93%。类似地,另一种可抑制透明质酸酶活性(95%)的抗PH-20单克隆抗体仅部分抑制了精子区的结合(类似于45%)。我们还用透明质酸酶对卵母细胞进行了充分的预处理,以去除透明带上或透明带上所有可及的HA,并且对继发精子区结合的影响很小或没有。我们的结果表明,PH-20是双功能的,具有两种活性:透明质酸酶活性和次级精子区结合所需的第二种独立活性。

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