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首页> 外文期刊>Informatics in Medicine Unlocked >Leishmanolysin gp63: Bioinformatics evidences of immunogenic epitopes in Leishmania major for enhanced vaccine design against zoonotic cutaneous leishmaniasis
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Leishmanolysin gp63: Bioinformatics evidences of immunogenic epitopes in Leishmania major for enhanced vaccine design against zoonotic cutaneous leishmaniasis

机译:Leishmanolysin GP63:增强疫苗设计对抗动物疫苗设计

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摘要

Cutaneous leishmaniasis (CL) is a prevalent disease in the Old World territories especially in the underdeveloped countries of the Middle East. The present study was aimed at prediction of primary biochemical features of theLeishmania majorgp63 as a vaccine candidate and its potent linear B-cell epitopes as well as those epitopes with highest binding capacity to mouse and human MHC molecules. A wide range of servers were employed for prediction of physico-chemical, antigenic and allergenic traits, post-translational modifications (PTM), transmembrane domain and subcellular localization, 2D and 3D structures, tertiary model rehashing and validations. The 63.95?kDa protein was antigenic, non-allergenic, hydrophilic and stable, with improved thermotolerance and 43 PTM sites. The secondary structure encompassed 48.67% random coil, 31.4% alpha helix and 19.93% extended strand. Ramachandran analysis of the refined model showed 98.5% and 100% of residues in favored and allowed regions, respectively. After epitope screening, two linear B-cell epitopes and a number of mouse and human MHC-specific epitopes were predicted, which possessed highest antigenic index. This paper provides insights into the bioinformatics characteristics of theL. majorgp63 protein as a promising vaccine candidate.
机译:皮肤LeishManiaisis(CL)是旧世界领土的普遍存产,特别是在中东的欠发达国家。本研究旨在预测Theheishmania MajorGP63作为疫苗候选和其有效的线性B细胞表位以及对小鼠和人MHC分子的最高结合能力的表位。采用各种服务器用于预测物理化学,抗原和过敏性状性状,翻译后修饰(PTM),跨膜结构域和亚细胞定位,2D和3D结构,第三个模型重新核和验证。 63.95?KDA蛋白是抗原性,非过敏性,亲水性和稳定的,具有改善的热能和43个PTM位点。二次结构包括48.67%的无规卷,31.4%α螺旋和19.93%的延长股。 RAMACHANDRAN分析的精致模型分别显示出98.5%和100%的残留物,分别有利和允许的地区。在表位筛选之后,预测了两个线性B细胞表位和许多小鼠和人MHC特异性表位,其具有最高的抗原指数。本文提供了对Thel的生物信息学特征的见解。 MajorGP63蛋白作为有前途的疫苗候选者。

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