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计算鉴定候选疫苗外膜蛋白表位区域。

Computational characterization of epitopic region within the outer membrane protein candidate in for vaccine development.

机构信息

ICAR-Central Inland Fisheries Research Institute, Barrackpore, Kolkata, West Bengal, India.

bMicrobiology Division, Regional Medical Research Centre, (ICMR), Chandrasekharpur, Bhubaneswar, Odisha, India.

出版信息

J Biomol Struct Dyn. 2020 Feb;38(2):450-459. doi: 10.1080/07391102.2019.1580222. Epub 2019 Apr 7.

Abstract

Gram-negative bacteria is the main causative agents for columnaris disease outbreak to finfishes. The outer membrane proteins (OMPs) candidate of bacterial cell served a critical component for cellular invasion targeted to the eukaryotic cell and survival inside the macrophages. Therefore, OMPs considered as the supreme element for the development of promising vaccine against . Implies advanced approaches, the predicted 3-D model of targeted OMPs were characterized by the Swiss model server and validated through Procheck programs and Protein Structure Analysis (ProSA) web server. The protein sequences having B-cell binding sites were preferred from sequence alignment; afterwards the B cell epitopes prediction was prepared using the BCPred and amino acid pairs (AAP) prediction algorithms modules of BCPreds. Consequently, the selected antigenic amino acids sequences (B-cell epitopic regions) were analyzed for T-cell epitopes determination (MHC I and MHC II alleles binding sequence) performing the ProPred 1 and ProPred server respectively. The epitopes (9 mer: IKKYEPAPV, YGPNYKWKF and YRGLNVGTS) within the OMPs binds to both of the MHC classes (MHC I and MHC II) and covered highest number of MHC alleles are characterized. OMPs of being conserved across serotypes and highly immunogenic for their exposed epitopes on the cell surface as a potent candidate focus to vaccine development for combating the disease problems in commercial aquaculture. The portrayed epitopes might be beneficial for practical designing of abundant peptide-based vaccine development against the columnaris through boosting up the advantageous immune responses.Communicated by Ramaswamy H. Sarma.

摘要

革兰氏阴性菌是鱼类柱状病爆发的主要病原体。细菌细胞的外膜蛋白 (OMP) 是细菌细胞靶向真核细胞入侵和在巨噬细胞内存活的关键组成部分。因此,OMP 被认为是开发针对 的有前途疫苗的最重要因素。暗示先进的方法,通过瑞士模型服务器对靶向 OMP 的预测 3D 模型进行了特征描述,并通过 Procheck 程序和蛋白质结构分析 (ProSA) 网络服务器进行了验证。从序列比对中选择具有 B 细胞结合位点的蛋白质序列;随后使用 BCPred 和氨基酸对 (AAP) 预测算法模块的 BCPreds 准备 B 细胞表位预测。因此,使用 ProPred 1 和 ProPred 服务器分别分析选定的抗原性氨基酸序列(B 细胞表位区域)以确定 T 细胞表位(MHC I 和 MHC II 等位基因结合序列)。OMP 内的表位(9 个氨基酸:IKKYEPAPV、YGPNYKWKF 和 YRGLNVGTS)与 MHC 两类(MHC I 和 MHC II)结合,并具有最高数量的 MHC 等位基因,具有特征。OMP 在血清型之间保守,并且因其在细胞表面暴露的表位而具有高度免疫原性,是开发针对该疾病的疫苗的有力候选物,以解决商业水产养殖中的疾病问题。所描绘的表位可能有助于通过增强有利的免疫反应,针对柱状病开发大量基于肽的疫苗。由 Ramaswamy H. Sarma 传达。

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