High expression of the classical swine fever virus (CSFV) envelope protein E2 by a single amino acid mutation and its embedded in the pseudorabies virus (PRV) vector for immunization

伪狂犬病 生物 病毒学 病毒 跨膜结构域 跨膜蛋白 猪瘟 重组DNA 突变体 表达式向量 信号肽 抗体 氨基酸 分子生物学 基因 免疫学 遗传学 受体
作者
Yangyang Sun,Keshu Liu,Tao Yun,Zheng Ni,Yinchu Zhu,Liu Chen,Haili Bao,Weicheng Ye,Jionggang Hua,Su-xin Huo,Hongyu Wang,Endong Bao,Cun Zhang
出处
期刊:Virus Research [Elsevier]
卷期号:331: 199111-199111 被引量:1
标识
DOI:10.1016/j.virusres.2023.199111
摘要

Pseudorabies (PR) and classical swine fever (CSF) are economically important infectious diseases in pigs. Most pig farms in China are vaccinated against these two diseases. Gene-deleted pseudorabies virus (PRV) can be used to develop promising and economical multivalent live attenuated viral vector vaccines. It has been reported that recombinant PRV can express a truncated E2 protein (1–338 aa), but it has not been reported that recombinant PRV can express a full-length E2 protein. We constructed nine groups of E2 proteins with different expression forms and found that the E2 protein could be expressed in vitro only when the transmembrane region of E2 was removed and the signal peptide was added. Analysis of the transmembrane region of E2 revealed that the high hydrophobicity of the E2 transmembrane region was the main reason for its inability to express. By mutating an amino acid to reduce the hydrophobicity of the transmembrane region, it was found that the full-length mutant of E2 (E2FL-muta3 or E2FL-muta4) could be expressed. The expressed full-length mutant E2 could also localize to the cell membrane. Mice immunized with a PRV vector vaccine expressing E2FL-muta3 or E2FL-muta4 developed specific cellular immunity to the E2 protein and stimulated higher levels of E2 antibody than mice immunized with a PRV vector expressing truncated E2. After immunizing the rabbits, the lethal challenge by PRV-ZJ2013 and the febrile response elicited by CSFV were simultaneously prevented. These results suggest that rPRV-dTK/gE-E2FL-muta4 is a promising bivalent vaccine against CSFV and PRV infections.

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