Structure of Nonstructural Protein 1 from SARS-CoV-2

被引:73
作者
Clark, Lauren K. [1 ]
Green, Todd J. [2 ]
Petit, Chad M. [1 ]
机构
[1] Univ Alabama Birmingham, Sch Med, Dept Biochem & Mol Genet, Birmingham, AL 35294 USA
[2] Univ Alabama Birmingham, Sch Med, Dept Microbiol, Birmingham, AL 35294 USA
基金
美国国家卫生研究院;
关键词
SARS-CoV-2; nonstructural protein 1; coronavirus; severe acute respiratory syndrome; X-ray crystallography; COVID-19; ACUTE RESPIRATORY SYNDROME; GASTROENTERITIS VIRUS NSP1; HOST GENE-EXPRESSION; SARS-CORONAVIRUS; CYCLOPHILIN; REPLICATION; TRANSLATION; INTERFERON; CELLS; BETA;
D O I
10.1128/JVI.02019-20
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The periodic emergence of novel coronaviruses (CoVs) represents an ongoing public health concern with significant health and financial burdens worldwide. The most recent occurrence originated in the city of Wuhan, China, where a novel coronavirus (severe acute respiratory syndrome coronavirus 2 [SARS-CoV-2]) emerged causing severe respiratory illness and pneumonia. The continual emergence of novel coronaviruses underscores the importance of developing effective vaccines as well as novel therapeutic options that target either viral functions or host factors recruited to support coronavirus replication. The CoV nonstructural protein 1 (nsp1) has been shown to promote cellular mRNA degradation, block host cell translation, and inhibit the innate immune response to virus infection. Interestingly, deletion of the nsp1-coding region in infectious clones prevented the virus from productively infecting cultured cells. Because of nsp1's importance in the CoV life cycle, it has been highlighted as a viable target for both antiviral therapy and vaccine development. However, the fundamental molecular and structural mechanisms that underlie nsp1 function remain poorly understood, despite its critical role in the viral life cycle. Here, we report the high-resolution crystal structure of the amino globular portion of SARS-CoV-2 nsp1 (residues 10 to 127) at 1.77-angstrom resolution. A comparison of our structure with the SARS-CoV-1 nsp1 structure reveals how mutations alter the conformation of flexible loops, inducing the formation of novel secondary structural elements and new surface features. Paired with the recently published structure of the carboxyl end of nsp1 (residues 148 to 180), our results provide the groundwork for future studies focusing on SARS-CoV-2 nsp1 structure and function during the viral life cycle. IMPORTANCE Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the causative agent of the COVID-19 pandemic. One protein known to play a critical role in the coronavirus life cycle is nonstructural protein 1 (nsp1). As such, it has been highlighted in numerous studies as a target for both the development of antivirals and the design of live-attenuated vaccines. Here, we report the high-resolution crystal structure of nsp1 derived from SARS-CoV-2 at 1.77-angstrom resolution. This structure will facilitate future studies focusing on understanding the relationship between structure and function for nsp1. In turn, understanding these structure-function relationships will allow nsp1 to be fully exploited as a target for both antiviral development and vaccine design.
引用
收藏
页数:12
相关论文
共 55 条
[11]   Unique SARS-CoV protein nsp1: bioinformatics, biochemistry and potential effects on virulence [J].
Connor, Ramsey F. ;
Roper, Rachel L. .
TRENDS IN MICROBIOLOGY, 2007, 15 (02) :51-53
[12]   Cyclophilin A: A Key Factor in Virus Replication and Potential Target for Anti-viral Therapy [J].
Dawar, Farman Ullah ;
Tu, Jiagang ;
Khattak, Muhammad Nasir Khan ;
Mei, Jie ;
Lin, Li .
CURRENT ISSUES IN MOLECULAR BIOLOGY, 2017, 21 :1-20
[13]   Cyclophilins and cyclophilin inhibitors in nidovirus replication [J].
de Wilde, Adriaan H. ;
Pham, Uyen ;
Posthuma, Clara C. ;
Snijder, Eric J. .
VIROLOGY, 2018, 522 :46-55
[14]   Severe acute respiratory syndrome:: identification of the etiological agent [J].
Drosten, C ;
Preiser, W ;
Günther, S ;
Schmitz, H ;
Doerr, HW .
TRENDS IN MOLECULAR MEDICINE, 2003, 9 (08) :325-327
[15]   Features and development of Coot [J].
Emsley, P. ;
Lohkamp, B. ;
Scott, W. G. ;
Cowtan, K. .
ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY, 2010, 66 :486-501
[16]   A point mutation within the replicase gene differentially affects coronavirus genome versus minigenome replication [J].
Galán, C ;
Enjuanes, L ;
Almazán, F .
JOURNAL OF VIROLOGY, 2005, 79 (24) :15016-15026
[17]  
Gavenonis J, 2014, NAT CHEM BIOL, V10, P716, DOI [10.1038/NCHEMBIO.1580, 10.1038/nchembio.1580]
[18]   Clinical features of patients infected with 2019 novel coronavirus in Wuhan, China [J].
Huang, Chaolin ;
Wang, Yeming ;
Li, Xingwang ;
Ren, Lili ;
Zhao, Jianping ;
Hu, Yi ;
Zhang, Li ;
Fan, Guohui ;
Xu, Jiuyang ;
Gu, Xiaoying ;
Cheng, Zhenshun ;
Yu, Ting ;
Xia, Jiaan ;
Wei, Yuan ;
Wu, Wenjuan ;
Xie, Xuelei ;
Yin, Wen ;
Li, Hui ;
Liu, Min ;
Xiao, Yan ;
Gao, Hong ;
Guo, Li ;
Xie, Jungang ;
Wang, Guangfa ;
Jiang, Rongmeng ;
Gao, Zhancheng ;
Jin, Qi ;
Wang, Jianwei ;
Cao, Bin .
LANCET, 2020, 395 (10223) :497-506
[19]   SARS Coronavirus nsp1 Protein Induces Template-Dependent Endonucleolytic Cleavage of mRNAs: Viral mRNAs Are Resistant to nsp1-Induced RNA Cleavage [J].
Huang, Cheng ;
Lokugamage, Kumari G. ;
Rozovics, Janet M. ;
Narayanan, Krishna ;
Semler, Bert L. ;
Makino, Shinji .
PLOS PATHOGENS, 2011, 7 (12)
[20]   Alphacoronavirus Transmissible Gastroenteritis Virus nsp1 Protein Suppresses Protein Translation in Mammalian Cells and in Cell-Free HeLa Cell Extracts but Not in Rabbit Reticulocyte Lysate [J].
Huang, Cheng ;
Lokugamage, Kumari G. ;
Rozovics, Janet M. ;
Narayanan, Krishna ;
Semler, Bert L. ;
Makino, Shinji .
JOURNAL OF VIROLOGY, 2011, 85 (01) :638-643