严重急性呼吸系统综合征冠状病毒2型VoCs阿尔法、德尔塔、奥密克戎和具有D614G的病毒的内在D614G和P681R/H突变加上刺突蛋白的关键标志性突变改变了融合原性和传染性。

IF 5.5 3区 医学 Q1 IMMUNOLOGY
Medical Microbiology and Immunology Pub Date : 2023-02-01 Epub Date: 2022-12-30 DOI:10.1007/s00430-022-00760-7
Ritika Khatri, Gazala Siddqui, Srikanth Sadhu, Vikas Maithil, Preeti Vishwakarma, Bharat Lohiya, Abhishek Goswami, Shubbir Ahmed, Amit Awasthi, Sweety Samal
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引用次数: 0

摘要

随着时间的推移,严重急性呼吸系统综合征冠状病毒2型病毒一直在快速进化,基因变异导致了令人担忧的变异株(VoC)的产生,这些变异株显示出更强的适应性。这些VoC病毒包含刺突蛋白的关键突变,这些突变使其能够更好地存活和逃避宿主防御机制。在大多数VoC中发现刺突结构域中的D614G突变;此外,还发现S1/S2弗林蛋白酶切割位点连接处的P681R/H突变在主要VOC中高度保守;阿尔法、德尔塔、奥密克戎及其当前变种。严重急性呼吸系统综合征冠状病毒2型VoCs的这些基因改变对宿主细胞进入、传播性和传染性的影响尚不清楚。在我们的研究中,德尔塔和D614G + P681R合成的双突变假病毒在细胞进入、细胞间融合和感染性方面显著增加。相反,与德尔塔和D614G相比,奥密克戎和P681H合成的单突变假病毒显示出TMPRSS2独立的细胞进入、较少的融合和传染性 + P681R双突变体。与奥密克戎相比,添加外源胰蛋白酶进一步增强了德尔塔病毒的融合。此外,德尔塔病毒对E64d和甲磺酸卡马斯塔特抑制剂均表现出易感性,这表明与奥密克戎病毒相比,德尔塔毒株可以利用内涵体和TMPRSS2依赖性进入途径。总之,这些结果表明,刺突蛋白中的D614G和P681R/H突变是关键的,这可能有利于VoC在不同宿主区室中的复制,从而使突变与选择之间保持平衡,以获得更好的长期适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Intrinsic D614G and P681R/H mutations in SARS-CoV-2 VoCs Alpha, Delta, Omicron and viruses with D614G plus key signature mutations in spike protein alters fusogenicity and infectivity.

Intrinsic D614G and P681R/H mutations in SARS-CoV-2 VoCs Alpha, Delta, Omicron and viruses with D614G plus key signature mutations in spike protein alters fusogenicity and infectivity.

The SARS-CoV-2 virus has been rapidly evolving over the time and the genetic variation has led to the generation of Variants of Concerns (VoC), which have shown increased fitness. These VoC viruses contain the key mutations in the spike protein which have allowed better survival and evasion of host defense mechanisms. The D614G mutation in the spike domain is found in the majority of VoC; additionally, the P681R/H mutation at the S1/S2 furin cleavage site junction is also found to be highly conserved in major VoCs; Alpha, Delta, Omicron, and its' current variants. The impact of these genetic alterations of the SARS-CoV-2 VoCs on the host cell entry, transmissibility, and infectivity has not been clearly identified. In our study, Delta and D614G + P681R synthetic double mutant pseudoviruses showed a significant increase in the cell entry, cell-to-cell fusion and infectivity. In contrast, the Omicron and P681H synthetic single mutant pseudoviruses showed TMPRSS2 independent cell entry, less fusion and infectivity as compared to Delta and D614G + P681R double mutants. Addition of exogenous trypsin further enhanced fusion in Delta viruses as compared to Omicron. Furthermore, Delta viruses showed susceptibility to both E64d and Camostat mesylate inhibitors suggesting, that the Delta virus could exploit both endosomal and TMPRSS2 dependent entry pathways as compared to the Omicron virus. Taken together, these results indicate that the D614G and P681R/H mutations in the spike protein are pivotal which might be favoring the VoC replication in different host compartments, and thus allowing a balance of mutation vs selection for better long-term adaptation.

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来源期刊
CiteScore
10.60
自引率
0.00%
发文量
29
审稿时长
1 months
期刊介绍: Medical Microbiology and Immunology (MMIM) publishes key findings on all aspects of the interrelationship between infectious agents and the immune system of their hosts. The journal´s main focus is original research work on intrinsic, innate or adaptive immune responses to viral, bacterial, fungal and parasitic (protozoan and helminthic) infections and on the virulence of the respective infectious pathogens. MMIM covers basic, translational as well as clinical research in infectious diseases and infectious disease immunology. Basic research using cell cultures, organoid, and animal models are welcome, provided that the models have a clinical correlate and address a relevant medical question. The journal also considers manuscripts on the epidemiology of infectious diseases, including the emergence and epidemic spreading of pathogens and the development of resistance to anti-infective therapies, and on novel vaccines and other innovative measurements of prevention. The following categories of manuscripts will not be considered for publication in MMIM: submissions of preliminary work, of merely descriptive data sets without investigation of mechanisms or of limited global interest, manuscripts on existing or novel anti-infective compounds, which focus on pharmaceutical or pharmacological aspects of the drugs, manuscripts on existing or modified vaccines, unless they report on experimental or clinical efficacy studies or provide new immunological information on their mode of action, manuscripts on the diagnostics of infectious diseases, unless they offer a novel concept to solve a pending diagnostic problem, case reports or case series, unless they are embedded in a study that focuses on the anti-infectious immune response and/or on the virulence of a pathogen.
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