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Quantitative Analysis of HBV Capsid Protein Geometry Based Upon Computational Nanotechnology

机译:基于计算纳米技术的HBV胶囊蛋白几何定量分析

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Computational biology is an interdisciplinary field that applies the techniques of computer science, functional mathematics and statistics to address problems inspired by biology. Numerous studies have shown that structure of proteins contribute towards their functionality in a direct or indirect way. The structure of viral capsid proteins are critical for hosting and shielding the genetic material and are also crucial for viral entry. In this work, nano-environmental energetics of mutated Hepatitis B capsid protein (HBc) dimer was studied for determining the stability of the protein Results provide structural information regarding the important residues contributing to Hepatitis B virion (HBV) synthesis This work illustrates the salience of computational nanotechnology and paves the way for future pharmaceutical applications aimed at destabilization of the capsid-surface protein interactions.
机译:计算生物学是一个跨学科领域,适用计算机科学,功能数学和统计数据的技术,以解决受生物学启发的问题。许多研究表明,蛋白质的结构以直接或间接方式达到其功能。病毒衣壳蛋白的结构对于宿主和屏蔽遗传物质是至关重要的,并且对病毒进入也至关重要。在这项工作中,研究了突变乙型肝炎胶囊蛋白(HBC)二聚体的纳米环境能量,用于确定蛋白质结果的稳定性提供有助于对乙型肝炎的重要残留的结构信息(HBV)合成这项工作说明了这项工作的显着性计算纳米技术并为未来的药物应用铺平了旨在对衣壳表面蛋白质相互作用的破坏性的药物应用。

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