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SARS-CoV-2 德尔塔变异株刺突蛋白的错义突变导致病毒结构改变,并与 hACE2 受体相互作用。

Missense mutations in spike protein of SARS-CoV-2 delta variant contribute to the alteration in viral structure and interaction with hACE2 receptor.

机构信息

Department of Biotechnology and Genetic Engineering, Noakhali Science and Technology University, Noakhali, Bangladesh.

Department of Genetic Engineering and Biotechnology, University of Rajshahi, Rajshahi, Bangladesh.

出版信息

Immun Inflamm Dis. 2022 Sep;10(9):e683. doi: 10.1002/iid3.683.

Abstract

INTRODUCTION

Many of the global pandemics threaten human existence over the decades among which coronavirus disease (COVID-19) is the newest exposure circulating worldwide. The RNA encoded severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) virus is referred as the pivotal agent of this deadly disease that induces respiratory tract infection by interacting host ACE2 receptor with its spike glycoprotein. Rapidly evolving nature of this virus modified into new variants helps in perpetrating immune escape and protection against host defense mechanism. Consequently, a new isolate, delta variant originated from India is spreading perilously at a higher infection rate.

METHODS

In this study, we focused to understand the conformational and functional significance of the missense mutations found in the spike glycoprotein of SARS-CoV-2 delta variant performing different computational analysis.

RESULTS

From physiochemical analysis, we found that the acidic isoelectric point of the virus elevated to basic pH level due to the mutations. The targeted mutations were also found to change the interactive bonding pattern and conformational stability analyzed by the molecular dynamic's simulation. The molecular docking study also revealed that L452R and T478K mutations found in the RBD domain of delta variant spike protein contributed to alter interaction with the host ACE2 receptor.

CONCLUSIONS

Overall, this study provided insightful evidence to understand the morphological and attributive impact of the mutations on SARS-CoV-2 delta variant.

摘要

简介

几十年来,许多全球大流行病都威胁着人类的生存,其中冠状病毒病(COVID-19)是最新在全球传播的流行病。编码 RNA 的严重急性呼吸系统综合征冠状病毒 2(SARS-CoV-2)病毒被认为是这种致命疾病的关键病原体,它通过其刺突糖蛋白与宿主 ACE2 受体相互作用诱导呼吸道感染。该病毒的快速进化性质使其变异成新的变体,从而有助于逃避免疫和抵御宿主防御机制。因此,一种新的分离株,即源自印度的 delta 变体,以更高的感染率危险传播。

方法

在这项研究中,我们专注于理解 SARS-CoV-2 delta 变体刺突糖蛋白中发现的错义突变的构象和功能意义,进行了不同的计算分析。

结果

从物理化学分析中,我们发现由于突变,病毒的等电点从酸性升高到碱性 pH 值。通过分子动力学模拟分析,还发现靶向突变改变了相互作用的结合模式和构象稳定性。分子对接研究还表明,在 delta 变体刺突蛋白的 RBD 结构域中发现的 L452R 和 T478K 突变有助于改变与宿主 ACE2 受体的相互作用。

结论

总的来说,这项研究提供了有见地的证据,以了解突变对 SARS-CoV-2 delta 变体的形态和属性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a88/9382871/f3e753c98df7/IID3-10-e683-g007.jpg

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