AG百家乐大转轮-AG百家乐导航_怎么看百家乐走势_全讯网官网 (中国)·官方网站

Research News

Prof. Jun Cui’s team at Sun Yat-sen Universtiy and Prof. Jincun Zhao’s team at Guangzhou Medical University cooperate to reveal the mechanism used by SARS-CoV-2 Mpro in restricting host innate antiviral immunity

Source: School of Life Sciences
Written by: School of Life Sciences
Edited by: Tan Rongyu, Wang Dongmei

The world is suffered from an ongoing pandemic of 2019 novel coronavirus (Covid-19), which is caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2/2019-nCoV). By October 1st 2020, over 34 million cases were confirmed with a death toll at more than 1 million. During viral infection, type I interferon (IFN) responses serve as the first defensive line against invading viruses. Viral evasion from surveillance of immune system is considered as one of the important pathogenic mechanisms. It is of great significance to clarify the mechanisms employed by SARS-CoV-2 for evading from immune system.

Recently, Prof. Jun Cui’s team from School of Life Sciences at Sun Yat-sen University, together with Prof. Jincun Zhao’s team from the First Affiliated Hospital of Guangzhou Medical University published a research paper, entitled “Main protease of SARS-CoV-2 serves as a bifunctional molecule in restricting type I interferon antiviral signaling”. Their findings were published in Signal Transduction and Targeted Therapy on October 7th 2020.

Although IFNβ pre-treatment was showed to effectively reduce the replication of SARS-CoV-2, SARS-CoV-2-induced IFNβ signaling was relatively low compared with other viruses, suggesting that SARS-CoV-2 could inhibit type I IFN production. In this study, researchers revealed the dual functions of SARS-CoV-2 Mpro in impairing virus-triggered type I IFN production and the induction of downstream ISGs. On one hand, Mpro can target RIG-I, the major viral RNA sensor in the cytosol, and inhibit the IFN induction by inhibiting the K63-linked ubiquitination of RIG-I. On the other hand, SARS-CoV-2 Mpro could also reduce the release of IFN-induced downstream antiviral cytokines by restricting IFN transduction signaling. SARS-CoV-2 Mpro could promote the autophagic degradation of key transcription factors STAT1, thus inhibiting nuclear translocation of STAT1 and restricting IFN transduction signaling.


Figure 1. Main protease of SARS-CoV-2 restricts type I interferon antiviral signaling at multiple administrative levels.

Taken together, the researchers revealed the dual function of Mpro, the main protease of SARS-CoV-2, in impairing virus-triggered type I IFN production and the induction of downstream ISGs (Figure 1). By revealing the additional functions of SARS-CoV-2 Mpro, this finding may shed new light on understanding the immune evading mechanisms of SARS-CoV-2, which could provide novel targets for potential therapeutic intervention on SARS-CoV-2 infections.

Prof. Jun Cui and Prof. Jincun Zhao are the co-corresponding authors of this work. Dr. Yaoxing Wu, Dr. Ling Ma, Dr. Zhen Zhuang and Miss. Sihui Cai are the co-first authors. This research is supported by the National Natural Science Foundation of China.

Link to the paper: https://www.nature.com/articles/s41392-020-00332-2
百家乐官网怎样发牌| 余干县| 如何玩百家乐官网赚钱| 百家乐槛| 百家乐官网是咋玩法| 大发百家乐官网现金| 百家乐娱乐真人娱乐| 百家乐官网自动下注| 大发888官网e世博官方网站| 百家乐官网桌套装| 百家乐威尼斯人| 视频百家乐官网平台出租| 大发888游戏网页版| 必博百家乐游戏| 太阳城酒店| 百家乐官网澳门有网站吗| 雅加达百家乐的玩法技巧和规则| 百家乐官网足球| 沙湾县| 博E百百家乐现金网| 百家乐官网路单规则| 大发888怎么下载不了| 百家乐巴黎| 百家乐官网另类投注法| 百家乐发脾机| 百家乐官网有几种玩法| 百家乐牌机的破解法| 明升88备用| 24向风水| 顺昌县| 大发888娱乐方| 百家乐必赢外挂软件| 百家乐官网四式正反路| 百家乐官网开庄几率| 大发888游戏平台hgx2dafa888gw| 宝龙百家乐娱乐城| 利高网上娱乐| 线上百家乐代理| 澳门百家乐官网游戏官网| 神人百家乐官网赌场| 百家乐官网翻天快播粤语|