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冠状病毒发病机制中的 NSP16 2'-O-MTase:可能的预防和治疗策略。

NSP16 2'-O-MTase in Coronavirus Pathogenesis: Possible Prevention and Treatments Strategies.

机构信息

Division of Gastroenterology and Hepatology, Department of Internal Medicine, Ditmanson Medical Foundation Chia-Yi Christian Hospital, Chiayi 60002, Taiwan.

Department of Internal Medicine, Ditmanson Medical Foundation Chia-Yi Christian Hospital, Chiayi 60002, Taiwan.

出版信息

Viruses. 2021 Mar 24;13(4):538. doi: 10.3390/v13040538.

Abstract

Several life-threatening viruses have recently appeared, including the coronavirus, infecting a variety of human and animal hosts and causing a range of diseases like human upper respiratory tract infections. They not only cause serious human and animal deaths, but also cause serious public health problems worldwide. Currently, seven species are known to infect humans, namely SARS-CoV-2, MERS-CoV, SARS-CoV, HCoV-229E, HCoV-NL63, HCoV-OC43, and HCoV-HKU1. The coronavirus nonstructural protein 16 (NSP16) structure is similar to the 5'-end capping system of mRNA used by eukaryotic hosts and plays a vital role in evading host immunity response and protects the nascent viral mRNA from degradation. NSP16 is also well-conserved among related coronaviruses and requires its binding partner NSP10 to activate its enzymatic activity. With the continued threat of viral emergence highlighted by human coronaviruses and SARS-CoV-2, mutant strains continue to appear, affecting the highly conserved NSP16: this provides a possible therapeutic approach applicable to any novel coronavirus. To this end, current information on the 2'-O-MTase activity mechanism, the differences between NSP16 and NSP10 in human coronaviruses, and the current potential prevention and treatment strategies related to NSP16 are summarized in this review.

摘要

近年来出现了几种危及生命的病毒,包括冠状病毒,感染了多种人类和动物宿主,并引起了一系列疾病,如人类上呼吸道感染。它们不仅导致严重的人类和动物死亡,还在全球范围内造成严重的公共卫生问题。目前已知有七种病毒可以感染人类,即 SARS-CoV-2、MERS-CoV、SARS-CoV、HCoV-229E、HCoV-NL63、HCoV-OC43 和 HCoV-HKU1。冠状病毒非结构蛋白 16(NSP16)的结构类似于真核宿主使用的 mRNA5'-端加帽系统,在逃避宿主免疫反应和保护新生病毒 mRNA 免受降解方面发挥着重要作用。NSP16 在相关冠状病毒中也高度保守,需要其结合伴侣 NSP10 来激活其酶活性。随着人类冠状病毒和 SARS-CoV-2 不断凸显病毒出现的威胁,突变株不断出现,影响高度保守的 NSP16:这为任何新型冠状病毒提供了一种可能的治疗方法。为此,本文综述了目前关于 2'-O-MTase 活性机制、人类冠状病毒中 NSP16 和 NSP10 的差异以及与 NSP16 相关的当前潜在预防和治疗策略的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb75/8063928/b7fd244893f7/viruses-13-00538-g001.jpg

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