Illuminating druggable dark matter in RNA virus replication using in situ cryo-EM

IF 5.1 2区 医学 Q1 VIROLOGY
Himanshu Sharma , Marie N Sorin , Kiran B Sharma , Lars-Anders Carlson
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引用次数: 0

Abstract

Viral proteins typically exist in the context of complex virions or in the even more complex host cells in which they replicate. Hence, meaningful insights into virus protein structure often need to account for this context. Various flavors of in situ cryo-electron microscopy (cryo-EM), such as cryo-electron tomography, are key methods for the contextual study of virus protein structure in pleomorphic virions and host cells. Here, we review recent in situ cryo-EM work on three selected phenomena in RNA virus replication: the maturation and nuclear entry of HIV-1, the membrane-bound replication organelles of positive-sense RNA viruses, and the membrane-less viral factories of negative-sense RNA viruses. We highlight cases where the imaged phenomena are targets of novel antiviral drugs (such as the recently approved antiretroviral Lenacapavir), drug candidates, and antiviral strategies. Finally, we discuss recent technical advances that extend the reach of in situ cryo-EM in virology.
利用原位冷冻电镜阐明RNA病毒复制中的可药物暗物质
病毒蛋白通常存在于复杂病毒粒子的环境中,或者在更复杂的宿主细胞中进行复制。因此,对病毒蛋白质结构的有意义的见解往往需要考虑到这一背景。各种形式的原位冷冻电子显微镜(cryo-EM),如冷冻电子断层扫描,是多形性病毒粒子和宿主细胞中病毒蛋白结构背景研究的关键方法。在这里,我们回顾了最近在原位冷冻电镜下对RNA病毒复制的三种选择现象的研究:HIV-1的成熟和核进入,正义RNA病毒的膜结合复制细胞器,以及负义RNA病毒的无膜病毒工厂。我们重点介绍了成像现象是新型抗病毒药物(如最近批准的抗逆转录病毒药物Lenacapavir)、候选药物和抗病毒策略的靶标的病例。最后,我们讨论了最近的技术进展,扩大了原位冷冻电镜在病毒学中的应用范围。
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来源期刊
CiteScore
11.80
自引率
5.10%
发文量
76
审稿时长
83 days
期刊介绍: Current Opinion in Virology (COVIRO) is a systematic review journal that aims to provide specialists with a unique and educational platform to keep up to date with the expanding volume of information published in the field of virology. It publishes 6 issues per year covering the following 11 sections, each of which is reviewed once a year: Emerging viruses: interspecies transmission; Viral immunology; Viral pathogenesis; Preventive and therapeutic vaccines; Antiviral strategies; Virus structure and expression; Animal models for viral diseases; Engineering for viral resistance; Viruses and cancer; Virus vector interactions. There is also a section that changes every year to reflect hot topics in the field.
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