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温度依赖性的奥密克戎亚变种的 Spike-ACE2 相互作用与病毒传播有关。

Temperature-dependent Spike-ACE2 interaction of Omicron subvariants is associated with viral transmission.

机构信息

Centre de Recherche du CHUM, Montréal, Québec, Canada.

Département de Microbiologie, Infectiologie et Immunologie, Université de Montréal, Montréal, Québec, Canada.

出版信息

mBio. 2024 Aug 14;15(8):e0090724. doi: 10.1128/mbio.00907-24. Epub 2024 Jul 2.

Abstract

The continued evolution of severe acute respiratory syndrome 2 (SARS-CoV-2) requires persistent monitoring of its subvariants. Omicron subvariants are responsible for the vast majority of SARS-CoV-2 infections worldwide, with XBB and BA.2.86 sublineages representing more than 90% of circulating strains as of January 2024. To better understand parameters involved in viral transmission, we characterized the functional properties of Spike glycoproteins from BA.2.75, CH.1.1, DV.7.1, BA.4/5, BQ.1.1, XBB, XBB.1, XBB.1.16, XBB.1.5, FD.1.1, EG.5.1, HK.3, BA.2.86 and JN.1. We tested their capacity to evade plasma-mediated recognition and neutralization, binding to angiotensin-converting enzyme 2 (ACE2), their susceptibility to cold inactivation, Spike processing, as well as the impact of temperature on Spike-ACE2 interaction. We found that compared to the early wild-type (D614G) strain, most Omicron subvariants' Spike glycoproteins evolved to escape recognition and neutralization by plasma from individuals who received a fifth dose of bivalent (BA.1 or BA.4/5) mRNA vaccine and improve ACE2 binding, particularly at low temperatures. Moreover, BA.2.86 had the best affinity for ACE2 at all temperatures tested. We found that Omicron subvariants' Spike processing is associated with their susceptibility to cold inactivation. Intriguingly, we found that Spike-ACE2 binding at low temperature was significantly associated with growth rates of Omicron subvariants in humans. Overall, we report that Spikes from newly emerged Omicron subvariants are relatively more stable and resistant to plasma-mediated neutralization, present improved affinity for ACE2 which is associated, particularly at low temperatures, with their growth rates.IMPORTANCEThe persistent evolution of SARS-CoV-2 gave rise to a wide range of variants harboring new mutations in their Spike glycoproteins. Several factors have been associated with viral transmission and fitness such as plasma-neutralization escape and ACE2 interaction. To better understand whether additional factors could be of importance in SARS-CoV-2 variants' transmission, we characterize the functional properties of Spike glycoproteins from several Omicron subvariants. We found that the Spike glycoprotein of Omicron subvariants presents an improved escape from plasma-mediated recognition and neutralization, Spike processing, and ACE2 binding which was further improved at low temperature. Intriguingly, Spike-ACE2 interaction at low temperature is strongly associated with viral growth rate, as such, low temperatures could represent another parameter affecting viral transmission.

摘要

严重急性呼吸系统综合征 2 型(SARS-CoV-2)的持续进化需要持续监测其亚变种。奥密克戎亚变种是导致全球 SARS-CoV-2 感染的主要原因,截至 2024 年 1 月,XBB 和 BA.2.86 亚谱系占循环株的 90%以上。为了更好地了解病毒传播涉及的参数,我们对 BA.2.75、CH.1.1、DV.7.1、BA.4/5、BQ.1.1、XBB、XBB.1、XBB.1.16、XBB.1.5、FD.1.1、EG.5.1、HK.3、BA.2.86 和 JN.1 的 Spike 糖蛋白的功能特性进行了特征描述。我们测试了它们逃避血浆介导的识别和中和、与血管紧张素转换酶 2(ACE2)结合、对冷失活的敏感性、Spike 加工以及温度对 Spike-ACE2 相互作用的影响。我们发现,与早期野生型(D614G)株相比,大多数奥密克戎亚变种的 Spike 糖蛋白进化为逃避接受第五剂双价(BA.1 或 BA.4/5)mRNA 疫苗的个体血浆的识别和中和,并改善 ACE2 结合,尤其是在低温下。此外,BA.2.86 在所有测试温度下对 ACE2 具有最佳亲和力。我们发现,奥密克戎亚变种的 Spike 加工与其对冷失活的敏感性有关。有趣的是,我们发现低温下 Spike-ACE2 结合与奥密克戎亚变种在人类中的生长速度显著相关。总的来说,我们报告说,新出现的奥密克戎亚变种的 Spike 相对更稳定,对血浆介导的中和具有更强的抵抗力,对 ACE2 的亲和力提高,尤其是在低温下,与它们的生长速度有关。

重要性

SARS-CoV-2 的持续进化产生了一系列携带 Spike 糖蛋白新突变的变体。一些因素与病毒传播和适应性有关,例如血浆中和逃逸和 ACE2 相互作用。为了更好地了解在 SARS-CoV-2 变体的传播中是否还有其他因素可能很重要,我们对几种奥密克戎亚变种的 Spike 糖蛋白的功能特性进行了特征描述。我们发现,奥密克戎亚变种的 Spike 糖蛋白对血浆介导的识别和中和、Spike 加工以及 ACE2 结合的逃逸能力有所提高,在低温下进一步提高。有趣的是,低温下 Spike-ACE2 相互作用与病毒生长速度密切相关,因此,低温可能是另一个影响病毒传播的参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d9b/11323525/1ef2922c0015/mbio.00907-24.f001.jpg

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