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通过对GP5第44位氨基酸进行丝氨酸取代改造的猪繁殖与呼吸综合征病毒产生了一种有潜力的疫苗候选物,该候选物能够产生高水平的中和抗体。

Porcine Reproductive and Respiratory Syndrome Virus Engineered by Serine Substitution on the 44th Amino Acid of GP5 Resulted in a Potential Vaccine Candidate with the Ability to Produce High Levels of Neutralizing Antibody.

作者信息

Choi Jong-Chul, Kim Min-Sik, Choi Hwi-Yeon, Kang Yeong-Lim, Choi In-Yeong, Jung Sung-Won, Jeong Ji-Yun, Kim Min-Chul, Cho Andrew Y, Lee Ji-Ho, Lee Dong-Hun, Lee Sang-Won, Park Seung-Yong, Song Chang-Seon, Choi In-Soo, Lee Joong-Bok

机构信息

Laboratory of Infectious Diseases, College of Veterinary Medicine, Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, Republic of Korea.

Careside Co., Ltd., Woolim Lions Valley A-B210, #146-8, Sangdaewon-dong, Jungwon-gu, Seongnam 13209, Gyeonggi-do, Republic of Korea.

出版信息

Vet Sci. 2023 Mar 3;10(3):191. doi: 10.3390/vetsci10030191.

Abstract

N-linked glycans covering GP5 neutralizing epitopes of porcine reproductive and respiratory syndrome virus (PRRSV) have been proposed to act as a sheath blocking the production of neutralizing antibodies. Herein, we genetically engineered PRRSV with serine (S) substitution on the 44th asparagine (N) on the GP5 ectodomain of PRRSV-2 lineage-1. To evaluate the recombinant PRRSV, in vivo experiments were performed in piglets. The recombinant virus group showed no viremia until 42 days post-inoculation (dpi), and the rectal temperature and average daily weight gain were in the normal range at the same time point as the negative control group. On the 42 dpi, both groups were challenged with the wild-type virus. The recombinant PRRSV group showed lower rectal temperature, viremia, and the lung lesions than that of the negative control group for 19 days post-challenge (dpc). Additionally, the recombinant virus induced 4.50 ± 3.00 (log) and 8.25 ± 0.96 (log) of neutralizing antibody before and after challenge, respectively. Taken together, this study confirmed that N44S substitution can create an infectious PRRSV that strongly induces neutralizing antibodies. In addition, the vCSL1-GP5-N44S mutant that we produced was confirmed to have potential as a vaccine candidate, showing good safety and protective effects in pigs.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)的N-连接聚糖覆盖GP5中和表位,被认为可作为一种屏障,阻止中和抗体的产生。在此,我们对PRRSV-2谱系-1的GP5胞外域第44位天冬酰胺(N)进行丝氨酸(S)替换,对PRRSV进行基因工程改造。为评估重组PRRSV,在仔猪中进行了体内实验。重组病毒组在接种后42天(dpi)之前未出现病毒血症,在同一时间点,直肠温度和平均日增重与阴性对照组处于正常范围。在42 dpi时,两组均用野生型病毒进行攻毒。在攻毒后19天(dpc)内,重组PRRSV组的直肠温度、病毒血症和肺部病变均低于阴性对照组。此外,重组病毒在攻毒前和攻毒后分别诱导产生4.50±3.00(log)和8.25±0.96(log)的中和抗体。综上所述,本研究证实N44S替换可产生一种能强烈诱导中和抗体的感染性PRRSV。此外,我们构建的vCSL1-GP5-N44S突变体被证实具有作为疫苗候选株的潜力,在猪中显示出良好的安全性和保护效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c115/10055445/9bedd42aca03/vetsci-10-00191-g001.jpg

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