Prediction of epitopes in viral proteins is helpful for the design of immunogenicpeptides, new generation of vaccines and diagnostic reagents. Unfortunately, there are atleast two constraints on the interpretation of ...Prediction of epitopes in viral proteins is helpful for the design of immunogenicpeptides, new generation of vaccines and diagnostic reagents. Unfortunately, there are atleast two constraints on the interpretation of the earlier predictive methods. In the firstplace, the earlier plots were based on experimental findings in general proteins, and展开更多
目的:预测苹果过敏原Mal d 4蛋白B细胞和T细胞抗原表位,探讨Mal d 4蛋白与其同源蛋白之间的交叉反应性。方法:以苹果过敏原Mal d 4蛋白的氨基酸序列为基础,采用生物信息软件HNN预测二级结构;运用DNAStar和Bcepred软件预测其B细胞抗原表...目的:预测苹果过敏原Mal d 4蛋白B细胞和T细胞抗原表位,探讨Mal d 4蛋白与其同源蛋白之间的交叉反应性。方法:以苹果过敏原Mal d 4蛋白的氨基酸序列为基础,采用生物信息软件HNN预测二级结构;运用DNAStar和Bcepred软件预测其B细胞抗原表位,用NetMHCⅡ、NetMHCⅡpan、Syfpeithi及Propred软件综合预测T细胞抗原表位;采用Clustal X1.83、Swiss-Model软件比对同源序列和模拟空间构象。结果:该蛋白二级结构以无规则卷曲为主。B/T细胞共同抗原表位的区域为53~61、85~93。苹果Mal d 4蛋白与桃、芒果、甜樱桃、草莓中的前纤维蛋白氨基酸序列同源性达88%以上,空间构象相似。结论:苹果过敏原Mal d 4蛋白与桃、芒果、甜樱桃和草莓的前纤维蛋白之间可能存在交叉反应,其优势抗原表位区域可能为53~61、85~93,是后续过敏原改造的重点,为继续深入开展苹果过敏原基础性研究提供理论依据。展开更多
In recent years,the in silico epitopes prediction tools have facilitated the progress of vaccines development significantly and many have been applied to predict epitopes in viruses successfully. Herein,a general over...In recent years,the in silico epitopes prediction tools have facilitated the progress of vaccines development significantly and many have been applied to predict epitopes in viruses successfully. Herein,a general overview of different tools currently available,including T cell and B cell epitopes prediction tools,is presented. And the principles of different prediction algorithms are reviewed briefly. Finally,several examples are present to illustrate the application of the prediction tools.展开更多
从多肽序列的一级结构出发,基于多肽序列中氨基酸侧链间距离和氨基酸侧链的电性特征,构建了多肽序列特征矢量,简称ζ矢量,选取文献中主要组织相容性复合物(MHC)中的14个A^d限制性和14个非A^d限制性多肽序列作为训练集建立辅助性T细胞(he...从多肽序列的一级结构出发,基于多肽序列中氨基酸侧链间距离和氨基酸侧链的电性特征,构建了多肽序列特征矢量,简称ζ矢量,选取文献中主要组织相容性复合物(MHC)中的14个A^d限制性和14个非A^d限制性多肽序列作为训练集建立辅助性T细胞(helper T lymphocytc,Th)表位预测的定量模型,为了检验该预报系统的精确性,进行了随机抽样检验和交互检验。结果表明,该预报系统具有稳定性好、预测能力强的特点,该方法可用于人的MHC Ⅰ和Ⅱ类表位的预测、蛋白质抗原免疫识别、亚单位疫苗分子设计及研制。展开更多
基金Project supported by the National Naural Science Foundation of China.
文摘Prediction of epitopes in viral proteins is helpful for the design of immunogenicpeptides, new generation of vaccines and diagnostic reagents. Unfortunately, there are atleast two constraints on the interpretation of the earlier predictive methods. In the firstplace, the earlier plots were based on experimental findings in general proteins, and
文摘目的:预测苹果过敏原Mal d 4蛋白B细胞和T细胞抗原表位,探讨Mal d 4蛋白与其同源蛋白之间的交叉反应性。方法:以苹果过敏原Mal d 4蛋白的氨基酸序列为基础,采用生物信息软件HNN预测二级结构;运用DNAStar和Bcepred软件预测其B细胞抗原表位,用NetMHCⅡ、NetMHCⅡpan、Syfpeithi及Propred软件综合预测T细胞抗原表位;采用Clustal X1.83、Swiss-Model软件比对同源序列和模拟空间构象。结果:该蛋白二级结构以无规则卷曲为主。B/T细胞共同抗原表位的区域为53~61、85~93。苹果Mal d 4蛋白与桃、芒果、甜樱桃、草莓中的前纤维蛋白氨基酸序列同源性达88%以上,空间构象相似。结论:苹果过敏原Mal d 4蛋白与桃、芒果、甜樱桃和草莓的前纤维蛋白之间可能存在交叉反应,其优势抗原表位区域可能为53~61、85~93,是后续过敏原改造的重点,为继续深入开展苹果过敏原基础性研究提供理论依据。
基金The National Natural Science Foundations of China (30870131)the National Key Projects in the Infectious Fields (2008ZX10002-011, 2008ZX10004-004)
文摘In recent years,the in silico epitopes prediction tools have facilitated the progress of vaccines development significantly and many have been applied to predict epitopes in viruses successfully. Herein,a general overview of different tools currently available,including T cell and B cell epitopes prediction tools,is presented. And the principles of different prediction algorithms are reviewed briefly. Finally,several examples are present to illustrate the application of the prediction tools.
文摘从多肽序列的一级结构出发,基于多肽序列中氨基酸侧链间距离和氨基酸侧链的电性特征,构建了多肽序列特征矢量,简称ζ矢量,选取文献中主要组织相容性复合物(MHC)中的14个A^d限制性和14个非A^d限制性多肽序列作为训练集建立辅助性T细胞(helper T lymphocytc,Th)表位预测的定量模型,为了检验该预报系统的精确性,进行了随机抽样检验和交互检验。结果表明,该预报系统具有稳定性好、预测能力强的特点,该方法可用于人的MHC Ⅰ和Ⅱ类表位的预测、蛋白质抗原免疫识别、亚单位疫苗分子设计及研制。