Yurewicz E C, Sacco A G, Gupta S K, Xu N, Gage D A
Department of Obstetrics & Gynecology, Wayne State University, Detroit, Michigan 48201, USA.
J Biol Chem. 1998 Mar 27;273(13):7488-94. doi: 10.1074/jbc.273.13.7488.
The zona pellucida surrounding the pig oocyte contains two Mr 55,000 glycoproteins, pZPB and pZPC, which are orthologues of mouse zona proteins ZP1 and ZP3, respectively. We previously reported that isolated boar sperm membrane vesicles possess high affinity binding sites for partially purified pZPB, but not pZPC. Interestingly, co-incubation experiments also implicated pZPB-pZPC complexes as potential ligands. We now report that when depleted of a minor pZPC contaminant by size exclusion chromatography, pZPB lacks independent binding activity. In solid phase binding assays employing immobilized boar sperm membranes, pZPB failed to compete with biotin-(pZPB+pZPC) probe, and biotin-labeled pZPB yielded negligible binding. However, when co-incubated with pZPC prior to the binding assays, pZPB acted as a potent competitor, and biotin-labeled pZPB exhibited high affinity, saturable binding. Binding activity was attributed to pZPB-pZPC heterocomplexes, which were detected in co-incubation mixtures by size exclusion chromatography and Western blot analysis. In the pig, therefore, sperm membranes possess a zona-binding protein with high affinity sites for pZPB-pZPC heterocomplexes, but not free glycoprotein subunits. Consequently, associative interactions between zona molecules can contribute toward both the assembly of the zona matrix and generation of ligands important for sperm-zona interactions.
围绕猪卵母细胞的透明带含有两种分子量为55,000的糖蛋白,即pZPB和pZPC,它们分别是小鼠透明带蛋白ZP1和ZP3的直系同源物。我们之前报道过,分离的公猪精子膜囊泡对部分纯化的pZPB具有高亲和力结合位点,但对pZPC没有。有趣的是,共孵育实验也表明pZPB - pZPC复合物是潜在的配体。我们现在报道,当通过尺寸排阻色谱法去除少量pZPC污染物后,pZPB缺乏独立的结合活性。在使用固定化公猪精子膜的固相结合试验中,pZPB无法与生物素 - (pZPB + pZPC)探针竞争,且生物素标记的pZPB产生的结合可忽略不计。然而,在结合试验前与pZPC共孵育时,pZPB表现为强力竞争者,且生物素标记的pZPB表现出高亲和力、可饱和的结合。结合活性归因于pZPB - pZPC异源复合物,通过尺寸排阻色谱法和蛋白质印迹分析在共孵育混合物中检测到了该复合物。因此,在猪中,精子膜具有一种对pZPB - pZPC异源复合物具有高亲和力位点的透明带结合蛋白,但对游离糖蛋白亚基没有。因此,透明带分子之间的缔合相互作用既有助于透明带基质的组装,也有助于产生对精子 - 透明带相互作用重要的配体。