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牛产生细胞免疫和体液免疫反应以确保抵御口蹄疫病毒(FMDV)的必要性——一种观点。

Need for cellular and humoral immune responses in bovines to ensure protection from foot-and-mouth disease virus (FMDV)--a point of view.

作者信息

Becker Y

机构信息

Department of Molecular Virology, Faculty of Medicine, Hebrew University of Jerusalem, Israel.

出版信息

Virus Genes. 1994 Jul;8(3):199-214. doi: 10.1007/BF01703078.

Abstract

The published studies on immunization of experimental animals, cattle, and sheep with synthetic peptides containing the antigenic domains in FMDV structural protein VP1 were analyzed. The results obtained with various FMDV synthetic peptides designed to stimulate the humoral immune response in bovines were compared to the current knowledge on MHC class I and class II, and the properties of the peptide binding grooves in each of them. X-ray crystallography of MHC class I proteins provided the three-dimensional structure of the peptide binding groove and led to the isolation and identification of "self" and viral peptides that naturally associate with the peptide binding grooves of both types of MHC and HLA molecules. The available knowledge of the amino acid motifs in MHC and HLA class I-bound viral peptides priming the CD8+ cytotoxic T cell responses must be coupled with the understanding of the three-dimensional structure of BoLA class I. This would aid in the development of an experimental approach to induce bovine anti-FMDV CD8+ cytotoxic cells to complement the humoral immune response to FMDV, which is currently achieved by a killed virus vaccine and, at the experimental level, by a peptide vaccine. Stimulation of both cellular and humoral immune responses against FMDV in cattle may reduce the risk of disease and virus shedding.

摘要

分析了已发表的关于用含有口蹄疫病毒(FMDV)结构蛋白VP1抗原结构域的合成肽对实验动物、牛和羊进行免疫的研究。将旨在刺激牛体液免疫反应的各种FMDV合成肽所获得的结果与关于MHC I类和II类的现有知识以及它们各自肽结合槽的特性进行了比较。MHC I类蛋白的X射线晶体学提供了肽结合槽的三维结构,并导致了与这两种类型的MHC和HLA分子的肽结合槽自然结合的“自身”和病毒肽的分离与鉴定。引发CD8 + 细胞毒性T细胞反应的MHC和HLA I类结合病毒肽中氨基酸基序的现有知识必须与对牛白细胞抗原(BoLA)I类三维结构的理解相结合。这将有助于开发一种实验方法,以诱导牛抗FMDV CD8 + 细胞毒性细胞,以补充目前通过灭活病毒疫苗以及在实验水平上通过肽疫苗实现的对FMDV的体液免疫反应。刺激牛针对FMDV的细胞免疫反应和体液免疫反应可能会降低疾病和病毒传播的风险。

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