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尼帕病毒表面蛋白突变的生物信息学研究:与 Ephrin B2 受体的分子对接、分子动力学模拟和结构影响分析。

Bioinformatic investigation of Nipah virus surface protein mutations: Molecular docking with Ephrin B2 receptor, molecular dynamics simulation, and structural impact analysis.

机构信息

Faculty of Art and Science, Molecular Biology and Genetics, Yıldız Technical University, Istanbul, Turkey.

出版信息

Microbiol Immunol. 2023 Dec;67(12):501-513. doi: 10.1111/1348-0421.13098. Epub 2023 Oct 9.

Abstract

The SARS-CoV-2 outbreak resulted in significant challenges and loss of life. The Nipah virus, known for its high infectivity and severity, was designated an emergency concern by the World Health Organization. To understand its mutations, the Nipah virus proteins were analyzed extensively, with a focus on the essential G and F proteins responsible for viral entry into host cells. Our bioinformatics analysis unveiled multiple mutations, including simultaneous mutations within a single sequence. Notably, the G273S mutation in the F protein was identified as a potential cause of structural damage, which carries significant implications for vaccine development. Comparing the docking scores of G and F proteins with the Ephrin B2 receptor, it was found that the Y228H mutation in the G protein and the D252G mutation in the F protein likely affect virus entry into host cells. Moreover, our investigation into stability and deformability highlighted the impact of the Y228H mutation in the G protein complex. Molecular dynamics simulations revealed increased flexibility and conformational changes in the G protein complex with the Y228H mutation compared with the known complex. Furthermore, evaluating the root mean square deviation variation demonstrated greater dynamic behavior in the G protein complex and the Ephrin B2 receptor complex. This comprehensive study provides valuable insights into Nipah virus mutations, their significance for vaccine development, and the importance of understanding protein complex behavior in drug discovery. The identified mutations, especially G273S and Y228H, hold crucial implications for future research and potential interventions against the Nipah virus.

摘要

SARS-CoV-2 疫情导致了重大挑战和生命损失。尼帕病毒具有高传染性和严重性,被世界卫生组织列为紧急关注对象。为了了解其突变,我们对尼帕病毒蛋白进行了广泛分析,重点研究了负责病毒进入宿主细胞的必需 G 和 F 蛋白。我们的生物信息学分析揭示了多个突变,包括单个序列内的同时突变。值得注意的是,F 蛋白中的 G273S 突变被认为是结构损伤的潜在原因,这对疫苗开发具有重要意义。比较 G 和 F 蛋白与 Ephrin B2 受体的对接评分,发现 G 蛋白中的 Y228H 突变和 F 蛋白中的 D252G 突变可能影响病毒进入宿主细胞。此外,我们对稳定性和可变形性的研究强调了 G 蛋白复合物中 Y228H 突变的影响。分子动力学模拟显示,与已知复合物相比,G 蛋白复合物中的 Y228H 突变导致其灵活性增加和构象变化。此外,评估均方根偏差变化表明,G 蛋白复合物和 Ephrin B2 受体复合物的动态行为更大。这项综合研究提供了有关尼帕病毒突变的宝贵见解,这些突变对疫苗开发的意义,以及了解蛋白质复合物行为在药物发现中的重要性。所鉴定的突变,特别是 G273S 和 Y228H,对未来针对尼帕病毒的研究和潜在干预具有关键意义。

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