iScience
Volume 25, Issue 10, 21 October 2022, 105254
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Article
Chemical screen uncovers novel structural classes of inhibitors of the papain-like protease of coronaviruses

https://doi.org/10.1016/j.isci.2022.105254Get rights and content
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Highlights

  • Novel inhibitors were predicted to bind to regions near the BL2 loop of PLpro

  • Regions near the BL2 loop contribute to the selectivity of different PLpros

  • Identified thiophenes show a broad-spectrum antiviral potency

Summary

The papain-like protease (PLpro) of coronaviruses is an attractive antiviral target to inhibit both viral replication and interference of the host immune response. We have identified and characterized three novel classes of small molecules, thiophene, cyanofuran, and triazoloquinazoline, as PLpro inhibitors. Thiophene inhibited the PLpro of two major coronaviruses, Middle East respiratory syndrome coronavirus (MERS-CoV) and severe acute respiratory syndrome coronavirus (SARS-CoV) including SARS-CoV-2, while cyanofuran and triazoloquinazoline more selectively inhibited MERS-CoV PLpro. Unlike GRL0617, a known PLpro inhibitor, all three compounds contain no naphthyl group but like GRL0617 were predicted to fit on the cleft near the BL2 loop. Docking studies further revealed that the location and direction of the binding determined their specificity to different coronaviruses. Together, our work demonstrates that the BL2 loop and nearby regions are outstanding druggable targets, and our three inhibitors can be applicable to the development of therapeutics for coronavirus infection.

Subject areas

Biochemistry
Virology
Structural biology

Data and code availability

  • All data reported in this paper will be shared by the lead contact upon request.

  • This paper does not report original code.

  • Any additional information required to reanalyze the data reported in this paper is available from the lead contact upon request.

Cited by (0)

4

These authors contributed equally

5

Lead contact