Rice‐produced classical swine fever virus glycoprotein E2 with herringbone‐dimer design to enhance immune responses

Author:

Xu Qianru123ORCID,Ma Fanshu24ORCID,Yang Daichang56,Li Qingmei3,Yan Liming7,Ou Jiquan6,Zhang Longxian28,Liu Yunchao3,Zhan Quan6,Li Rui3,Wei Qiang3,Hu Hui2,Wang Yanan3,Li Xueyang2,Zhang Shenli2,Yang Jifei3,Chai Shujun3,Du Yongkun2,Wang Li3,Zhang Erqin28,Zhang Gaiping2389

Affiliation:

1. School of Basic Medical Sciences Henan University Kaifeng China

2. International Joint Research Center of National Animal Immunology, College of Veterinary Medicine Henan Agriculture University Zhengzhou China

3. Key Laboratory of Animal Immunology Henan Academy of Agricultural Sciences Zhengzhou China

4. CAS Key Laboratory of Nano‐Bio Interface, Suzhou Institute of Nano‐Tech and Nano‐Bionics Chinese Academy of Sciences Suzhou China

5. College of Life Science Wuhan University Wuhan China

6. Wuhan Healthgen Biotechnology Corp. Wuhan China

7. Laboratory of Structural Biology, School of Medicine Tsinghua University Beijing China

8. Longhu Laboratory Zhengzhou China

9. School of Advanced Agricultural Sciences Peking University Beijing China

Abstract

SummaryPestiviruses, including classical swine fever virus, remain a concern for global animal health and are responsible for major economic losses of livestock worldwide. Despite high levels of vaccination, currently available commercial vaccines are limited by safety concerns, moderate efficacy, and required high doses. The development of new vaccines is therefore essential. Vaccine efforts should focus on optimizing antigen presentation to enhance immune responses. Here, we describe a simple herringbone‐dimer strategy for efficient vaccine design, using the classical swine fever virus E2 expressed in a rice endosperm as an example. The expression of rE2 protein was identified, with the rE2 antigen accumulating to 480 mg/kg. Immunological assays in mice, rabbits, and pigs showed high antigenicity of rE2. Two immunizations with 284 ng of the rE2 vaccine or one shot with 5.12 μg provided effective protection in pigs without interference from pre‐existing antibodies. Crystal structure and small‐angle X‐ray scattering results confirmed the stable herringbone dimeric conformation, which had two fully exposed duplex receptor binding domains. Our results demonstrated that rice endosperm is a promising platform for precise vaccine design, and this strategy can be universally applied to other Flaviviridae virus vaccines.

Publisher

Wiley

Subject

Plant Science,Agronomy and Crop Science,Biotechnology

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