Severe Acute Respiratory Syndrome Coronavirus Papain-like Novel Protease Inhibitors: Design, Synthesis, Protein−Ligand X-ray Structure and Biological Evaluation

Arun K. Ghosh(Purdue University West Lafayette), Jun Takayama(Purdue University West Lafayette), Kalapala Venkateswara Rao(Purdue University West Lafayette), Kiira Ratia(University of Illinois Chicago), Rima Chaudhuri(University of Illinois Chicago), Debbie C. Mulhearn(Ashland (United States)), Hyun Lee(Ashland (United States)), Daniel Brian Nichols(Loyola University Chicago), Surendranath Baliji(University of Chicago), Susan C. Baker(Loyola University Chicago), Michael E. Johnson(University of Illinois Chicago), Andrew D. Mesecar(Ashland (United States))
Journal of Medicinal Chemistry
June 9, 2010
Cited by 157Open Access
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Abstract

The design, synthesis, X-ray crystal structure, molecular modeling, and biological evaluation of a series of new generation SARS-CoV PLpro inhibitors are described. A new lead compound 3 (6577871) was identified via high-throughput screening of a diverse chemical library. Subsequently, we carried out lead optimization and structure-activity studies to provide a series of improved inhibitors that show potent PLpro inhibition and antiviral activity against SARS-CoV infected Vero E6 cells. Interestingly, the (S)-Me inhibitor 15 h (enzyme IC(50) = 0.56 microM; antiviral EC(50) = 9.1 microM) and the corresponding (R)-Me 15 g (IC(50) = 0.32 microM; antiviral EC(50) = 9.1 microM) are the most potent compounds in this series, with nearly equivalent enzymatic inhibition and antiviral activity. A protein-ligand X-ray structure of 15 g-bound SARS-CoV PLpro and a corresponding model of 15 h docked to PLpro provide intriguing molecular insight into the ligand-binding site interactions.


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