In Silico Screening of Aptamers Configuration against Hepatitis B Surface Antigen

Q1 Biochemistry, Genetics and Molecular Biology Advances in Bioinformatics Pub Date : 2019-06-26 DOI:10.1155/2019/6912914
Mohamad Zulkeflee Sabri, Azzmer Azzar Abdul Hamid, S. Hitam, Mohd. Zulkhairi Abdul Rahim
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引用次数: 22

Abstract

Aptamer has been long studied as a substitute of antibodies for many purposes. However, due to the exceeded length of the aptamers obtained in vitro, difficulties arise in its manipulation during its molecular conjugation on the matrix surfaces. Current study focuses on computational improvement for aptamers screening of hepatitis B surface antigen (HBsAg) through optimization of the length sequences obtained from SELEX. Three original aptamers with affinity against HBsAg were truncated into five short hairpin structured aptamers and their affinity against HBsAg was thoroughly studied by molecular docking, molecular dynamics (MD) simulation, and Molecular Mechanics Poisson-Boltzmann Surface Area (MMPBSA) method. The result shows that truncated aptamers binding on HBsAg “a” determinant region are stabilized by the dynamic H-bond formation between the active binding residues and nucleotides. Amino acids residues with the highest hydrogen bonds hydrogen bond interactions with all five aptamers were determined as the active binding residues and further characterized. The computational prediction of complexes binding will include validations through experimental assays in future studies. Current study will improve the current in vitro aptamers by minimizing the aptamer length for its easy manipulation.
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抗乙型肝炎表面抗原适体结构的计算机筛选
适体作为抗体的替代品已被研究了很长时间。然而,由于体外获得的适体长度过长,在其在基质表面的分子偶联过程中出现了操作困难。目前的研究重点是通过优化SELEX获得的乙肝表面抗原(HBsAg)核酸适体筛选的长度序列来提高计算能力。通过分子对接、分子动力学(MD)模拟、分子力学泊松-玻尔兹曼表面积(MMPBSA)等方法,对3个具有HBsAg亲和力的原适体进行截断,得到5个短发夹结构适体,并对其对HBsAg的亲和力进行深入研究。结果表明,截断的适体结合在HBsAg“a”决定区,通过活性结合残基与核苷酸之间的动态氢键形成稳定。与所有5个适体氢键相互作用最高的氨基酸残基被确定为活性结合残基并进一步表征。在未来的研究中,复合物结合的计算预测将包括通过实验分析的验证。目前的研究将对现有的体外适体进行改进,尽量减少适体长度,使其易于操作。
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来源期刊
Advances in Bioinformatics
Advances in Bioinformatics Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
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