Reproductive Cell Biology Laboratory, India.
Embryo Biotechnology Laboratory, National Institute of Immunology, Aruna Asaf Ali Marg, New Delhi 110 067, India.
Vaccine. 2014 Jan 23;32(5):564-71. doi: 10.1016/j.vaccine.2013.11.078. Epub 2013 Dec 13.
Vaccines based on gamete specific proteins have been proposed for fertility inhibition. In the present study, immunogenicity and contraceptive potential of E. coli-expressed recombinant fusion protein TT-KK-ZP3-GGG-Iz, comprising promiscuous T cell epitope of tetanus toxoid (TT) followed by dilysin linker (KK), a fragment of dog zona pellucida glycoprotein-3 (ZP3), triglycine spacer (GGG) and a fragment of dog Izumo (Iz) without any affinity tag has been evaluated in female FvB/J mice. In addition, recombinant TT-KK-ZP3 and Izumo linked to the promiscuous T cell epitope of bovine RNase (bRNase-KK-Iz) and their physical mixture were also used. SDS-PAGE and immunoblot studies revealed ∼32kDa band corresponding to TT-KK-ZP3-GGG-Iz, ∼22kDa band of TT-KK-ZP3 and ∼11kDa band of bRNase-KK-Iz. Groups of mice immunized with the above recombinant proteins led to the generation of high antibody titres against the respective proteins. Immunization with recombinant TT-KK-ZP3-GGG-Iz generated higher antibody titre as compared to mice immunized with physical mixture of TT-KK-ZP3 and bRNase-KK-Iz. Antibodies against TT-KK-ZP3-GGG-Iz and TT-KK-ZP3 recognized mouse and dog ZP and those against TT-KK-ZP3-GGG-Iz and bRNase-KK-Iz recognized mouse and dog acrosome-reacted sperm in an indirect immunofluorescence assay. Immune sera from groups of mice immunized with the above recombinant proteins led to a significant reduction in mouse in vitro fertilization. Mating studies revealed significant reduction in fertility as compared to adjuvant control group. Highest infertility was observed in group of mice immunized with TT-KK-ZP3 followed by TT-KK-ZP3-GGG-Iz. Infertility was associated with the antibody titres against ZP3, whereas no association in the inhibition of fertility and antibody titres against Izumo was observed. In conclusion, these studies revealed the contraceptive potential of ZP3, which could not be further enhanced by the inclusion of Izumo.
基于配子特异性蛋白的疫苗已被提议用于抑制生育能力。在本研究中,评估了由大肠杆菌表达的重组融合蛋白 TT-KK-ZP3-GGG-Iz 在雌性 FvB/J 小鼠中的免疫原性和避孕潜力。该融合蛋白由破伤风类毒素(TT)的非特异性 T 细胞表位、二肽酶 linker(KK)、犬透明带糖蛋白 3(ZP3)的一个片段、三甘氨酸间隔区(GGG)和犬 Izumo(Iz)的一个片段组成,不含任何亲和标签。此外,还使用了与牛 RNase(bRNase-KK-Iz)的非特异性 T 细胞表位连接的重组 TT-KK-ZP3 和 Izumo 及其混合物。SDS-PAGE 和免疫印迹研究显示,约 32kDa 带对应于 TT-KK-ZP3-GGG-Iz,约 22kDa 带对应于 TT-KK-ZP3,约 11kDa 带对应于 bRNase-KK-Iz。用上述重组蛋白免疫的小鼠组产生了针对各自蛋白的高抗体滴度。与 TT-KK-ZP3 和 bRNase-KK-Iz 混合物免疫的小鼠相比,用重组 TT-KK-ZP3-GGG-Iz 免疫的小鼠产生了更高的抗体滴度。针对 TT-KK-ZP3-GGG-Iz 和 TT-KK-ZP3 的抗体识别小鼠和犬 ZP,针对 TT-KK-ZP3-GGG-Iz 和 bRNase-KK-Iz 的抗体识别小鼠和犬顶体反应后的精子,这在间接免疫荧光测定中得到了证实。用上述重组蛋白免疫的小鼠组的免疫血清导致小鼠体外受精显著减少。交配研究显示,与佐剂对照组相比,生育力显著降低。用 TT-KK-ZP3 免疫的小鼠组观察到最高的不育率,其次是 TT-KK-ZP3-GGG-Iz 免疫的小鼠组。不育与针对 ZP3 的抗体滴度相关,而在抑制生育能力和针对 Izumo 的抗体滴度方面没有相关性。总之,这些研究揭示了 ZP3 的避孕潜力,而将 Izumo 包含在内并不能进一步增强其避孕潜力。