表位
病毒学
抗原
免疫系统
转基因水稻
血凝素(流感)
生物
免疫
胚乳
转基因
病毒
免疫学
转基因作物
基因
遗传学
作者
Fanshu Ma,Qianru Xu,Aiping Wang,Daichang Yang,Qingmei Li,Junqing Guo,Longxian Zhang,Jiquan Ou,Rui Li,Heng Yin,Kunpeng Li,Li Wang,Yanan Wang,Xiangyue Zhao,Xiangxiang Niu,Shenli Zhang,Xueyang Li,Shujun Chai,Erqin Zhang,Zihe Rao,Gaiping Zhang
标识
DOI:10.1073/pnas.2305745121
摘要
The development of vaccines, which induce effective immune responses while ensuring safety and affordability, remains a substantial challenge. In this study, we proposed a vaccine model of a restructured “head-to-tail” dimer to efficiently stimulate B cell response. We also demonstrate the feasibility of using this model to develop a paramyxovirus vaccine through a low-cost rice endosperm expression system. Crystal structure and small-angle X-ray scattering data showed that the restructured hemagglutinin–neuraminidase (HN) formed tetramers with fully exposed quadruple receptor binding domains and neutralizing epitopes. In comparison with the original HN antigen and three traditional commercial whole virus vaccines, the restructured HN facilitated critical epitope exposure and initiated a faster and more potent immune response. Two-dose immunization with 0.5 μg of the restructured antigen (equivalent to one-127th of a rice grain) and one-dose with 5 μg completely protected chickens against a lethal challenge of the virus. These results demonstrate that the restructured HN from transgenic rice seeds is safe, effective, low-dose useful, and inexpensive. We provide a plant platform and a simple restructured model for highly effective vaccine development.
科研通智能强力驱动
Strongly Powered by AbleSci AI