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印度新冠病毒分离株的基因簇系统动力学模式、进化枝时空分布的范式转变及刺突糖蛋白突变的影响

Phylodynamic Pattern of Genetic Clusters, Paradigm Shift on Spatio-Temporal Distribution of Clades, and Impact of Spike Glycoprotein Mutations of SARS-CoV-2 Isolates from India.

作者信息

Sivasubramanian Srinivasan, Gopalan Vidya, Ramesh Kiruba, Padmanabhan Padmapriya, Mone Kiruthiga, Govindan Karthikeyan, Velladurai Selvakumar, Dhandapani Prabu, Krishnasamy Kaveri, Kitambi Satish Srinivas

机构信息

Department of Virology, State Viral Research and Diagnostic Laboratory (VRDL), King Institute of Preventive Medicine and Research, Chennai, Tamil Nadu, India.

Department of Microbiology, Dr. ALM Post Graduate Institute of Basic Medical Sciences, University of Madras, Chennai, Tamil Nadu, India.

出版信息

J Glob Infect Dis. 2021 Nov 30;13(4):164-171. doi: 10.4103/jgid.jgid_97_21. eCollection 2021 Oct-Dec.

Abstract

INTRODUCTION

The COVID-19 pandemic is associated with high morbidity and mortality, with the emergence of numerous variants. The dynamics of SARS-CoV-2 with respect to clade distribution is uneven, unpredictable and fast changing.

METHODS

Retrieving the complete genomes of SARS-CoV-2 from India and subjecting them to analysis on phylogenetic clade diversity, Spike (S) protein mutations and their functional consequences such as immune escape features and impact on infectivity. Whole genome of SARS-CoV-2 isolates ( = 4,326) deposited from India during the period from January 2020 to December 2020 is retrieved from Global Initiative on Sharing All Influenza Data (GISAID) and various analyses performed using tools.

RESULTS

Notable clade dynamicity is observed indicating the emergence of diverse SARS-CoV-2 variants across the country. GR clade is predominant over the other clades and the distribution pattern of clades is uneven. D614G is the commonest and predominant mutation found among the S-protein followed by L54F. Mutation score prediction analyses reveal that there are several mutations in S-protein including the RBD and NTD regions that can influence the virulence of virus. Besides, mutations having immune escape features as well as impacting the immunogenicity and virulence through changes in the glycosylation patterns are identified.

CONCLUSIONS

The study has revealed emergence of variants with shifting of clade dynamics within a year in India. It is shown uneven distribution of clades across the nation requiring timely deposition of SARS-CoV-2 sequences. Functional evaluation of mutations in S-protein reveals their significance in virulence, immune escape features and disease severity besides impacting therapeutics and prophylaxis.

摘要

引言

新冠疫情伴随着高发病率和高死亡率,同时出现了众多变体。严重急性呼吸综合征冠状病毒2(SARS-CoV-2)在进化枝分布方面的动态变化不均衡、不可预测且变化迅速。

方法

从印度获取SARS-CoV-2的完整基因组,并对其进行系统发育进化枝多样性、刺突(S)蛋白突变及其功能后果(如免疫逃逸特征和对传染性的影响)分析。从全球共享所有流感数据倡议组织(GISAID)中检索2020年1月至2020年12月期间印度提交的SARS-CoV-2分离株(n = 4326)的全基因组,并使用多种工具进行各种分析。

结果

观察到显著的进化枝动态变化,表明该国出现了多种SARS-CoV-2变体。GR进化枝比其他进化枝更占优势,且进化枝的分布模式不均衡。D614G是在S蛋白中发现的最常见且占主导地位的突变,其次是L54F。突变评分预测分析表明,S蛋白中存在多个突变,包括受体结合域(RBD)和N端结构域(NTD)区域的突变,这些突变可能影响病毒的毒力。此外,还鉴定出具有免疫逃逸特征以及通过糖基化模式变化影响免疫原性和毒力的突变。

结论

该研究揭示了印度在一年内出现了进化枝动态变化且变体不断演变的情况。研究表明全国进化枝分布不均衡,需要及时提交SARS-CoV-2序列。S蛋白突变的功能评估揭示了它们在毒力、免疫逃逸特征和疾病严重程度方面的重要性,同时也对治疗和预防产生影响。

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