Inner Mongolia Key Laboratory for Molecular Regulation of the Cell, School of Life Sciences, Inner Mongolia University, Hohhot, PR China.
Inner Mongolia Key Laboratory for Molecular Regulation of the Cell, School of Life Sciences, Inner Mongolia University, Hohhot, PR China.
Theriogenology. 2025 Jan 1;231:160-170. doi: 10.1016/j.theriogenology.2024.10.016. Epub 2024 Oct 21.
In mammalian reproduction, testis-specific protein IZUMO1 and its receptor JUNO on the oocyte surface are essential for sperm-oocyte recognition, binding, and membrane fusion. However, these factors alone are insufficient to accomplish cytoplasmic membrane fusion. It is believed that other gametic proteins interact with them to facilitate sperm-oocyte interaction on the head and mid-tail of rat spermatozoa as well as on the surface of oocytes. In this study, Copper Transport Protein 2 (CTR2) has been identified on the head and mid-tail of rat spermatozoa as well as on the surface of oocytes. CTR2 directly interacts with both IZUMO1 and JUNO, colocalizing with IZUMO1 on the sperm head and with JUNO on the oocyte membrane. Treatment of the capacitated sperm and zona pellucida-free oocytes with anti-CTR2 antibody resulted in a significant decrease in fertilization rates in IVF experiments. These findings suggest that CTR2 plays an important role in mammalian fertilization by interacting with IZUMO1 and JUNO, providing new insights into the molecular mechanisms of mammalian sperm-oocyte adhesion and fusion.
在哺乳动物生殖中,精子特异性蛋白 IZUMO1 和卵母细胞表面的其受体 JUNO 对于精子-卵母细胞的识别、结合和膜融合是必不可少的。然而,这些因素本身不足以完成细胞质膜融合。人们认为,其他配子蛋白与它们相互作用,以促进大鼠精子头部和中部以及卵母细胞表面的精子-卵母细胞相互作用。在这项研究中,铜转运蛋白 2 (CTR2) 已被鉴定为精子头部和中部以及卵母细胞表面的一种蛋白。CTR2 直接与 IZUMO1 和 JUNO 相互作用,与精子头部的 IZUMO1 共定位,与卵母细胞膜上的 JUNO 共定位。用抗 CTR2 抗体处理获能精子和透明带游离卵母细胞,导致 IVF 实验中的受精率显著下降。这些发现表明,CTR2 通过与 IZUMO1 和 JUNO 相互作用,在哺乳动物受精中发挥重要作用,为哺乳动物精子-卵母细胞黏附和融合的分子机制提供了新的见解。