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TRIM22通过将NS1和NS3靶向蛋白酶体降解来抑制寨卡病毒复制。

TRIM22 suppresses Zika virus replication by targeting NS1 and NS3 for proteasomal degradation.

作者信息

Zu Shulong, Li Chunfeng, Li Lili, Deng Yong-Qiang, Chen Xiang, Luo Dan, Ye Qing, Huang Yi-Jiao, Li Xiao-Feng, Zhang Rong-Rong, Sun Nina, Zhang Xianqi, Aliyari Saba R, Nielsen-Saines Karin, Jung Jae U, Yang Heng, Qin Cheng-Feng, Cheng Genhong

机构信息

Center for Systems Medicine, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100005, China.

Institute of Systems Medicine, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, 100005, China.

出版信息

Cell Biosci. 2022 Aug 30;12(1):139. doi: 10.1186/s13578-022-00872-w.

Abstract

BACKGROUND

Recognition of viral invasion by innate antiviral immune system triggers activation of the type I interferon (IFN-I) and proinflammatory signaling pathways. Subsequently, IFN-I induction regulates expression of a group of genes known as IFN-I-stimulated genes (ISGs) to block viral infection. The tripartite motif containing 22 (TRIM22) is an ISG with strong antiviral functions.

RESULTS

Here we have shown that the TRIM22 has been strongly upregulated both transcriptionally and translationally upon Zika virus (ZIKV) infection. ZIKV infection is associated with a wide range of clinical manifestations in human from mild to severe symptoms including abnormal fetal brain development. We found that the antiviral function of TRIM22 plays a crucial role in counterattacking ZIKV infection. Overexpression of TRIM22 protein inhibited ZIKV growth whereas deletion of TRIM22 in host cells increased ZIKV infectivity. Mechanistically, TRIM22, as a functional E3 ubiquitin ligase, promoted the ubiquitination and degradation of ZIKV nonstructural protein 1 (NS1) and nonstructural protein 3 (NS3). Further studies showed that the SPRY domain and Ring domain of TRIM22 played important roles in protein interaction and degradation, respectively. In addition, we found that TRIM22 also inhibited other flaviviruses infection including dengue virus (DENV) and yellow fever virus (YFV).

CONCLUSION

Thus, TRIM22 is an ISG with important role in host defense against flaviviruses through binding and degradation of the NS1 and NS3 proteins.

摘要

背景

先天性抗病毒免疫系统对病毒入侵的识别会触发I型干扰素(IFN-I)和促炎信号通路的激活。随后,IFN-I的诱导调节一组被称为IFN-I刺激基因(ISGs)的基因表达,以阻断病毒感染。含三联基序蛋白22(TRIM22)是一种具有强大抗病毒功能的ISG。

结果

我们在此表明,TRIM22在寨卡病毒(ZIKV)感染后在转录和翻译水平均被强烈上调。ZIKV感染与人类从轻度到重度症状的广泛临床表现相关,包括胎儿脑部发育异常。我们发现TRIM22的抗病毒功能在反击ZIKV感染中起关键作用。TRIM22蛋白的过表达抑制了ZIKV的生长,而宿主细胞中TRIM22的缺失增加了ZIKV的感染性。机制上,TRIM22作为一种功能性E3泛素连接酶,促进了ZIKV非结构蛋白1(NS1)和非结构蛋白3(NS3)的泛素化和降解。进一步研究表明,TRIM22的SPRY结构域和环结构域分别在蛋白质相互作用和降解中起重要作用。此外,我们发现TRIM22还抑制包括登革病毒(DENV)和黄热病毒(YFV)在内的其他黄病毒感染。

结论

因此,TRIM22是一种ISG,通过结合和降解NS1和NS3蛋白在宿主抵御黄病毒中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b87/9429444/ae5a33169590/13578_2022_872_Fig1_HTML.jpg

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