Comparative study on Toxoplasma gondii dense granule protein 7, peroxiredoxin 1 and 3 based on bioinformatic analysis tools

Ragab M Fereig, H. Abdelbaky
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引用次数: 1

Abstract

Toxoplasmosis remains a devastating protozoan disease induced by Toxoplasma gondii (T. gondii) that induces extreme hazards in both medical and veterinary fields. Our previous studies revealed the high immunogenicity and antigenicity of T. gondii peroxiredoxin (TgPrx) 1, 3, and TgGRA7. Herein, the comparison of TgPrx1, TgPrx3, and TgGRA7 was conducted using bioinformatics analysis tools. In this computational comparison, the physico-chemical, morphometric, immunogenic, and antigenic properties were analyzed. Analyses of complete coding sequences showed the probability of signal peptides and transmembrane domains only in the case of TgGRA7. NetPhos server-based prediction revealed 23, 11, and 39 phosphorylation sites in TgGRA7, TgPrx1, and TgPrx3 proteins, respectively. The secondary structure of TgGRA7, TgPrx1, and TgPrx3 proteins were analyzed by PSIPRED servers. The percentage of the random coil and alpha-helix amino acids was higher in TgGRA7 (99.15%), followed by TgPrx3 (85.87%) and TgPrx1 (77.55%). The antigenic epitopes of the protein were predicted by analyzing the features of the IEDB server. The linear B-cell epitope regions prediction of TgGRA7 showed the maximum estimated length (118 amino acid residues). In addition, antigenicity and hydrophilicity index showed similar tendencies among the three tested proteins, TgGRA7, TgPrx1, and TgPrx3. Thus, the current computational analyses represented TgGRA7, TgPrx1, and TgPrx3 proteins as efficient diagnostic and vaccine candidates suggesting further research and assessments. Additional validation of bioinformatic analysis tools in predicting potent diagnostic and vaccine antigens will greatly contribute to the success of control policies against T. gondii and other infectious agents.
基于生物信息学分析工具的刚地弓形虫致密颗粒蛋白7、过氧化物还氧蛋白1和3的比较研究
弓形虫病是由刚地弓形虫(弓形虫)引起的一种破坏性的原生动物疾病,在医学和兽医领域都造成极大的危害。我们前期研究发现弓形虫过氧化物还氧蛋白(TgPrx) 1、3和TgGRA7具有较高的免疫原性和抗原性。本文采用生物信息学分析工具对TgPrx1、TgPrx3和TgGRA7进行比较。在这种计算比较中,分析了物理化学,形态计量学,免疫原性和抗原性。对完整编码序列的分析表明,只有TgGRA7具有信号肽和跨膜结构域的可能性。基于NetPhos服务器的预测显示TgGRA7、TgPrx1和TgPrx3蛋白分别有23、11和39个磷酸化位点。利用PSIPRED服务器分析TgGRA7、TgPrx1和TgPrx3蛋白的二级结构。随机螺旋和α -螺旋氨基酸在TgGRA7中所占比例最高(99.15%),其次是TgPrx3(85.87%)和TgPrx1(77.55%)。通过分析IEDB服务器的特征,预测了该蛋白的抗原表位。TgGRA7的线性b细胞表位区域预测显示最大估计长度(118个氨基酸残基)。此外,TgGRA7、TgPrx1和TgPrx3三种被测蛋白的抗原性和亲水性指数表现出相似的趋势。因此,目前的计算分析表明TgGRA7、TgPrx1和TgPrx3蛋白是有效的诊断和候选疫苗,建议进一步研究和评估。进一步验证生物信息学分析工具在预测有效诊断和疫苗抗原方面的作用,将极大地促进针对弓形虫和其他感染原的控制政策的成功。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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