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猪透明带糖蛋白ZP4负责ZP3/ZP4复合物的精子结合活性。

Porcine zona pellucida glycoprotein ZP4 is responsible for the sperm-binding activity of the ZP3/ZP4 complex.

作者信息

Yonezawa Naoto, Kanai-Kitayama Saeko, Kitayama Tetsushi, Hamano Ayumi, Nakano Minoru

机构信息

Graduate School of Science, Chiba University, Inage-ku, Chiba, Japan.

出版信息

Zygote. 2012 Nov;20(4):389-97. doi: 10.1017/S0967199411000608. Epub 2011 Oct 6.

Abstract

The zona pellucida (ZP) is a transparent envelope that surrounds the mammalian oocyte and mediates species-selective sperm-egg interactions. Porcine and bovine ZPs consist of glycoproteins ZP2, ZP3, and ZP4. In both pig and bovine a heterocomplex consisting of ZP3 and ZP4 binds to sperm, however it is not clarified whether ZP3 or ZP4 in the complex is responsible for the sperm binding. Previously, we have established a baculovirus-Sf9 cell expression system for porcine ZP glycoproteins. A mixture of recombinant ZP3 (rZP3) and rZP4 displayed sperm-binding activity toward bovine sperm but not porcine sperm, probably due to differences in carbohydrate structure between the native and recombinant ZP glycoproteins. In this study, a mixture of porcine rZP3 and native ZP4 (nZP4) inhibited the binding of porcine sperm to the ZP. In contrast, a mixture of porcine nZP3 and rZP4 did not inhibit the binding of porcine sperm, although the mixture inhibited the binding of bovine sperm. The porcine rZP3/nZP4 mixture bound to the acrosomal region of porcine sperm, in a manner similar to that of the nZP3/nZP4 mixture. nZP3 was precipitated with rZP4, and nZP4 was precipitated with rZP3 by utilising the N-terminal tags on the recombinant proteins. These results indicated that nZP4, but not rZP4, is necessary for binding activity of porcine ZP3/ZP4 complex towards porcine sperm and further suggested that the carbohydrate structures of ZP4 in the porcine ZP3/ZP4 complex are responsible for porcine sperm-binding activity of the complex.

摘要

透明带(ZP)是一种围绕哺乳动物卵母细胞的透明包膜,介导物种特异性的精卵相互作用。猪和牛的透明带由糖蛋白ZP2、ZP3和ZP4组成。在猪和牛中,由ZP3和ZP4组成的异源复合物都能与精子结合,但该复合物中的ZP3还是ZP4负责精子结合尚不清楚。此前,我们已建立了猪透明带糖蛋白的杆状病毒-Sf9细胞表达系统。重组ZP3(rZP3)和rZP4的混合物对牛精子具有精子结合活性,但对猪精子没有,这可能是由于天然和重组透明带糖蛋白之间碳水化合物结构的差异。在本研究中,猪rZP3和天然ZP4(nZP4)的混合物抑制了猪精子与透明带的结合。相反,猪nZP3和rZP4的混合物虽然抑制了牛精子的结合,但没有抑制猪精子的结合。猪rZP3/nZP4混合物以类似于nZP3/nZP4混合物的方式结合到猪精子的顶体区域。利用重组蛋白上的N端标签,nZP3与rZP4共沉淀,nZP4与rZP3共沉淀。这些结果表明,nZP4而非rZP4是猪ZP3/ZP4复合物对猪精子结合活性所必需的,进一步表明猪ZP3/ZP4复合物中ZP4的碳水化合物结构负责该复合物的猪精子结合活性。

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