首页> 外文期刊>BMC Bioinformatics >Design, structure prediction and molecular dynamics simulation of a fusion construct containing malaria pre-erythrocytic vaccine candidate, Pf CelTOS, and human interleukin 2 as adjuvant
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Design, structure prediction and molecular dynamics simulation of a fusion construct containing malaria pre-erythrocytic vaccine candidate, Pf CelTOS, and human interleukin 2 as adjuvant

机译:包含疟疾前促红细胞生成疫苗候选物,Pf CelTOS和人白介素2作为佐剂的融合构建体的设计,结构预测和分子动力学模拟

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Malaria infection is still widespread in some parts of the world and threatens the lives of millions of people every year. Vaccines, especially oral vaccines are considered to be effective in reducing the burden of malaria morbidity and mortality. By using recombinant technology, suitable oral hosts could serve as antigen delivering vehicles in developing oral vaccines. This study was aimed towards designing and computational analysis of a fusion protein consisting of Plasmodium falciparum cell-traversal protein for ookinetes and sporozoites (PfCelTOS) fused to human interleukin-2 (IL-2) and M cell-specific peptide ligand (Co1), as a step toward developing a vaccine candidate. To our best knowledge, the three dimensional (3D) structure of CelTOS is not reported in protein database. Therefore, we carried out computational modeling and simulation in the hope of understanding the properties and structure of PfCelTOS. Then we fused IL-2 to PfCelTOS by a flexible linker and did in silico analysis to confirm the proper folding of each domain in the designed fusion protein. In the last step, Co1 ligand was added to the confirmed fusion structure using a rigid linker and computational analysis was performed to evaluate the final fusion construct. One structure out of five predicted by I-TASSER for PfCelTOS and fusion constructs was selected based on the highest value for C-score. Molecular dynamics (MD) simulation analysis indicated that predicted structures are stable during the simulation. Ramchandran Plot analysis of PfCelTOS and fusion constructs before and after MD simulation also represented that most residues were fallen in favorable regions. In silico study showed that Co1-(AEEEK)3- IL-2-(GGGGS)3-PfCelTOS construct has a constant structure and the selected linkers are effectively able to separate the domains. Therefore, data reported in this paper represents the first step toward developing of an oral vaccine candidate against malaria infection.
机译:疟疾感染在世界某些地区仍然很普遍,每年威胁着数百万人的生命。疫苗,尤其是口服疫苗被认为在减轻疟疾发病和死亡负担方面是有效的。通过使用重组技术,合适的口服宿主可以充当开发口服疫苗的抗原传递载体。这项研究的目的是设计和计算融合蛋白,该融合蛋白由恶性疟原虫细胞穿越蛋白组成,用于与人白介素2(IL-2)和M细胞特异性肽配体(Co1)融合的人胚和子孢子(PfCelTOS),作为开发候选疫苗的一步。据我们所知,CelTOS的三维(3D)结构未在蛋白质数据库中报告。因此,我们进行了计算建模和仿真,以期了解PfCelTOS的特性和结构。然后,我们通过柔性接头将IL-2与PfCelTOS融合,并进行计算机分析以确认设计的融合蛋白中每个结构域的正确折叠。在最后一步中,使用刚性接头将Co1配体添加到已确认的融合结构中,并进行计算分析以评估最终的融合构建体。基于C评分的最高值,从I-TASSER预测的PfCelTOS和融合构建体中选择了五种结构。分子动力学(MD)模拟分析表明,预测的结构在模拟过程中是稳定的。 MD模拟前后,PfCelTOS和融合构建体的Ramchandran Plot分析还表明,大多数残基都落在有利区域。在计算机研究中,Co1-(AEEEK)3-IL-2-(GGGGS)3-PfCelTOS构建体具有恒定的结构,并且所选的接头有效地能够分离域。因此,本文报道的数据代表了开发针对疟疾感染的口服疫苗候选药物的第一步。

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