狂犬病病毒
狂犬病
重组DNA
病毒学
糖蛋白
弹状病毒科
溶血酶
生物
病毒
蛋白质G
分子生物学
抗体
生物化学
免疫学
基因
作者
Rongqing Zhao,Yi Shan,Maohua Li,Zhiyong Lou,Ye Feng,Lisong Huang,Wenlin Ren,Panpan Wang,Yufei Sun,Ying Sun,Junchi Su,Hongming Sun,Dee Hong,Yuhua Li,Hao Chen,Le Sun
标识
DOI:10.1016/j.pep.2019.105567
摘要
Rabies is a fatal zoonosis which could affect all mammals. Glycoprotein (G protein) from the rabies virus plays an important role in the binding of virus to target cells. However, expression of the G protein with native conformation has been a great challenge for many years. In this study, we solved this problem by replacing the original signal peptide of rabies virus G protein with the one from the heavy chain of human IgG. The expression levels of recombinant G protein dramatically increased from a few μg/L to 50 mg/L in the culture supernatants. The identity of the recombinant G protein was confirmed by western blotting using both 6XHis mAb 6E2 and rabies G protein mAb 7G3. The correct conformation of the recombinant G protein was shown by using rabies virus neutralizing antibodies. In addition, the recombinant G protein had immune-reactivities with mice sera raised against rabies vaccines and vice versa. Taken together, our data suggested that by replacing the signal peptide, the expression level of the G protein with native conformation could be significantly improved. This would help the development of a rabies subunit vaccine, structural studies of rabies G protein, elucidation of the signal pathway of RABV infection.
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