Kinloch R A, Mortillo S, Wassarman P M
Department of Cell and Developmental Biology, Roche Institute of Molecular Biology, Roche Research Center, Nutley, New Jersey 07110.
Development. 1992 Aug;115(4):937-46. doi: 10.1242/dev.115.4.937.
Sperm receptors are located in the mammalian egg extracellular coat, or zona pellucida. Mouse and hamster sperm receptor glycoproteins, mZP3 (83 x 10(3) M(r)) and hZP3 (56 x 10(3) M(r)), respectively, have very similar polypeptides (44 x 10(3) M(r); 81% identical) that are glycosylated to different extents. Purified mZP3 and hZP3 can bind to mouse sperm, prevent them from binding to eggs and induce them to undergo exocytosis, the acrosome reaction, in vitro. A DNA construct that placed the hZP3 gene under the control of mZP3 gene 5'-flanking sequence was used in this report to produce two mouse lines that harbored the foreign sperm receptor transgene. In both lines, the transgene was expressed only by growing oocytes, at a level comparable to that of the endogenous mZP3 gene, and the developmental pattern of transgene expression resembled that of the mZP3 gene. In addition to mZP3, transgenic mouse oocytes synthesized and secreted a glycoprotein indistinguishable from hZP3, and incorporated both glycoproteins into a mosaic zona pellucida. Importantly, hZP3 purified from such zonae pellucidae exhibited both sperm receptor and acrosome reaction-inducing activities in vitro and, following fertilization of transgenic mouse eggs, was inactivated. These results demonstrate that a biologically active foreign sperm receptor can be synthesized and secreted by transgenic mouse oocytes, assembled into a mosaic zona pellucida, and inactivated following fertilization as part of the secondary block to polyspermy.
精子受体位于哺乳动物卵子的细胞外被,即透明带中。小鼠和仓鼠的精子受体糖蛋白,分别为mZP3(83×10³ M(r))和hZP3(56×10³ M(r)),具有非常相似的多肽(44×10³ M(r);81%相同),但糖基化程度不同。纯化的mZP3和hZP3能与小鼠精子结合,阻止精子与卵子结合,并在体外诱导精子发生胞吐作用,即顶体反应。本报告使用了一种DNA构建体,将hZP3基因置于mZP3基因5'侧翼序列的控制之下,以产生两个携带外源精子受体转基因的小鼠品系。在这两个品系中,转基因仅在生长中的卵母细胞中表达,表达水平与内源性mZP3基因相当,且转基因表达的发育模式与mZP3基因相似。除了mZP3,转基因小鼠卵母细胞还合成并分泌了一种与hZP3无法区分的糖蛋白,并将这两种糖蛋白整合到镶嵌的透明带中。重要的是,从这种透明带中纯化的hZP3在体外表现出精子受体和诱导顶体反应的活性,并且在转基因小鼠卵子受精后被灭活。这些结果表明,具有生物活性的外源精子受体可由转基因小鼠卵母细胞合成并分泌,组装成镶嵌的透明带,并在受精后作为多精受精二级阻断的一部分而被灭活。