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The Contribution of Biophysics and Structural Biology to Current Advances in COVID-19
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2021-05-06 , DOI: 10.1146/annurev-biophys-102620-080956
Francisco J. Barrantes 1
Affiliation  

Critical to viral infection are the multiple interactions between viral proteins and host-cell counterparts. The first such interaction is the recognition of viral envelope proteins by surface receptors that normally fulfil other physiological roles, a hijacking mechanism perfected over the course of evolution. Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the etiological agent of coronavirus disease 2019 (COVID-19), has successfully adopted this strategy using its spike glycoprotein to dock on the membrane-bound metalloprotease angiotensin-converting enzyme 2 (ACE2). The crystal structures of several SARS-CoV-2 proteins alone or in complex with their receptors or other ligands were recently solved at an unprecedented pace. This accomplishment is partly due to the increasing availability of data on other coronaviruses and ACE2 over the past 18 years. Likewise, other key intervening actors and mechanisms of viral infection were elucidated with the aid of biophysical approaches. An understanding of the various structurally important motifs of the interacting partners provides key mechanistic information for the development of structure-based designer drugs able to inhibit various steps of the infective cycle, including neutralizing antibodies, small organic drugs, and vaccines. This review analyzes current progress and the outlook for future structural studies.

中文翻译:


生物物理学和结构生物学对COVID-19当前进展的贡献

对病毒感染至关重要的是病毒蛋白与宿主细胞对应物之间的多重相互作用。首先,这种相互作用是通过表面受体识别病毒包膜蛋白,该表面受体通常履行其他生理作用,这是在进化过程中完善的劫持机制。严重急性呼吸系统综合症冠状病毒2(SARS-CoV-2)是2019年冠状病毒病的病原体(COVID-19),已成功采用这种策略,利用其刺突糖蛋白将其与膜结合的金属蛋白酶血管紧张素转换酶2停靠在一起( ACE2)。最近,以前所未有的速度解决了单独或与它们的受体或其他配体复合的几种SARS-CoV-2蛋白的晶体结构。取得这一成就的部分原因是,在过去的18年中,其他冠状病毒和ACE2的数据越来越多。同样,借助生物物理方法阐明了其他关键的干预因素和病毒感染的机制。对相互作用伙伴的各种结构上重要的基序的理解为开发基于结构的设计剂药物提供了关键的机械信息,这些药物能够抑制感染周期的各个步骤,包括中和抗体,小型有机药物和疫苗。这篇综述分析了当前的进展和未来结构研究的前景。对相互作用伙伴的各种结构上重要的基序的理解为开发基于结构的设计剂药物提供了关键的机械信息,这些药物能够抑制感染周期的各个步骤,包括中和抗体,小型有机药物和疫苗。这篇综述分析了当前的进展和未来结构研究的前景。对相互作用伙伴的各种结构上重要的基序的理解为开发基于结构的设计剂药物提供了关键的机械信息,这些药物能够抑制感染周期的各个步骤,包括中和抗体,小型有机药物和疫苗。这篇综述分析了当前的进展和未来结构研究的前景。

更新日期:2021-05-07
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