๐ Design of wide-spectrum inhibitors targeting coronavirus main proteases
The genus Coronavirus contains about 25 species of coronaviruses (Co. Vs), which are important pathogens causing highly prevalent diseases and often severe or fatal in humans and animals. No licensed specific drugs are available to prevent their infection. Different host receptors for cellular entry, poorly conserved structural proteins (antigens), and the high mutation and recombination rates of Co. Vs pose a significant problem in the development of wide-spectrum anti-CoV drugs and vaccines. CoV main proteases (M pros), which are key enzymes in viral gene expression and replication, were revealed to share a highly conservative substrate-recognition pocket by comparison of four crystal structures and a homology model representing all three genetic clusters of the genus Coronavirus. This conclusion was further supported by enzyme activity assays. Mechanism-based irreversible inhibitors were designed, based on this conserved structural region, and a uniform inhibition mechanism was elucidated from the structures of Mpro-inhibitor complexes from severe acute respiratory syndrome-CoV and porcine transmissible gastroenteritis virus. A structure-assisted optimization program has yielded compounds with fast in vitro inactivation of multiple CoV Mpros, potent antiviral activity, and extremely low cellular toxicity in cell-based assays. Further modification could rapidly lead to the discovery of a single agent with clinical potential against existing and possible future emerging CoV-related diseases. ยฉ 2005 Yang et al.
keywords
๐ severe acute (1373)
๐ main protease (44)
๐ gastroenteritis virus (188)
๐ structural proteins (197)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
๐ crystal structure (114)
๐ transmissible gastroenteritis (226)
author
๐ค Yang, Haitao
๐ค Xie, Weiqing
๐ค Xue, Xiaoyu
๐ค Yang, Kailin
๐ค Ma, Jing
๐ค Liang, Wenxue
๐ค Zhao, Qi
๐ค Zhou, Zhe
๐ค Pei, Duanqing
๐ค Ziebuhr, John
๐ค Hilgenfeld, Rolf
๐ค Kwok, Yung Yuen
๐ค Wong, Luet
๐ค Gao, Guangxia
๐ค Chen, Saijuan
๐ค Chen, Zhu
๐ค Ma, Dawei
๐ค Bartlam, Mark
๐ค Rao, Zihe
year
โฐ 2005
journal
๐ PLoS Biology
issn
๐ 15457885 15449173
volume
3
number
10
page
citedbycount
124
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