Zhao Caiquan, Gao Jie, Wang Yongzhi, Ji Lina, Qin Hui, Hu Wei, Yang Yang
The State Key Laboratory of Reproductive Regulation and Breeding of Grassland Livestock, School of Life Sciences, Inner Mongolia University, Hohhot, China.
School of Biological Science and Technology, Baotou Teachers' College, Baotou, China.
Front Microbiol. 2022 Jun 8;13:931043. doi: 10.3389/fmicb.2022.931043. eCollection 2022.
Rabies is a highly prevalent zoonotic disease and a public health threat worldwide. Currently licensed rabies vaccines are effective but less is known which would protect cattle. This study describes the construction of a novel recombinant bovine herpes virus type I (BHV-1) expressing rabies virus glycoprotein (RABV G) instead of its gE glycoprotein (gE) by CRISPR-Cas9 and homologous recombination technology (BHV-1-ΔgE-G). Insertion of the RABV G gene is stable after 20 rounds of passaging and the recombinant virus replicates to high titers in MDBK cells. The RABV G expresses in the recombinant virus-infected cells and on the virion surface of BHV-1-ΔgE-G. One single immunization with BHV-1-ΔgE-G-activated dendritic cells (DCs) and B cells furthermore induced a protective immune response in mice against severe lethal challenge infection. A protective level of RABV-specific virus-neutralizing antibody (VNA) was detected in intramuscular immunized mice and cattle without any clinical symptoms. This research demonstrated that the BHV-1 vector-based RABV vaccine is a potential candidate for cattle.
狂犬病是一种高度流行的人畜共患病,对全球公共卫生构成威胁。目前获得许可的狂犬病疫苗是有效的,但对于哪种疫苗能保护牛群却知之甚少。本研究描述了通过CRISPR-Cas9和同源重组技术构建一种新型重组牛I型疱疹病毒(BHV-1),该病毒表达狂犬病病毒糖蛋白(RABV G)而非其gE糖蛋白(gE)(BHV-1-ΔgE-G)。经过20轮传代后,RABV G基因的插入是稳定的,重组病毒在MDBK细胞中可复制至高滴度。RABV G在重组病毒感染的细胞以及BHV-1-ΔgE-G的病毒粒子表面表达。用BHV-1-ΔgE-G激活的树突状细胞(DCs)和B细胞进行单次免疫,进一步在小鼠中诱导了针对严重致死性攻击感染的保护性免疫反应。在肌肉注射免疫的小鼠和牛中检测到了具有保护水平的狂犬病病毒特异性病毒中和抗体(VNA),且无任何临床症状。本研究表明,基于BHV-1载体的狂犬病疫苗是牛群的潜在候选疫苗。