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1.
Bioorg Med Chem ; 24(13): 3035-3042, 2016 07 01.
Article in English | MEDLINE | ID: mdl-27240464

ABSTRACT

Severe acute respiratory syndrome (SARS) led to a life-threatening form of atypical pneumonia in late 2002. Following that, Middle East Respiratory Syndrome (MERS-CoV) has recently emerged, killing about 36% of patients infected globally, mainly in Saudi Arabia and South Korea. Based on a scaffold we reported for inhibiting neuraminidase (NA), we synthesized the analogues and identified compounds with low micromolar inhibitory activity against 3CL(pro) of SARS-CoV and MERS-CoV. Docking studies show that a carboxylate present at either R(1) or R(4) destabilizes the oxyanion hole in the 3CL(pro). Interestingly, 3f, 3g and 3m could inhibit both NA and 3CL(pro) and serve as a starting point to develop broad-spectrum antiviral agents.


Subject(s)
Middle East Respiratory Syndrome Coronavirus , Peptide Hydrolases/metabolism , Protease Inhibitors/chemical synthesis , Protease Inhibitors/pharmacology , Severe acute respiratory syndrome-related coronavirus , Antiviral Agents/chemical synthesis , Antiviral Agents/chemistry , Antiviral Agents/pharmacology , Enzyme Activation/drug effects , Humans , Inhibitory Concentration 50 , Middle East Respiratory Syndrome Coronavirus/drug effects , Middle East Respiratory Syndrome Coronavirus/enzymology , Models, Molecular , Molecular Docking Simulation , Peptide Hydrolases/chemistry , Protease Inhibitors/chemistry , Severe acute respiratory syndrome-related coronavirus/drug effects , Severe acute respiratory syndrome-related coronavirus/enzymology
2.
Org Lett ; 16(19): 5060-3, 2014 Oct 03.
Article in English | MEDLINE | ID: mdl-25229881

ABSTRACT

High-throughput screening was performed on ∼6800 compounds to identify KR-72039 as an inhibitor of H1N1 and H5N1 neuraminidases (NAs). Structure-activity relationship studies led to 3e, which inhibited H5N1 NA with an IC50 of 2.8 µM and blocked viral replication. Docking analysis shows that compounds bind to loop-430 around the NA active site. Compound 3l additionally inhibited H7N9 NA, making it a dual inhibitor of N1- and N2-type NAs.


Subject(s)
Neuraminidase/antagonists & inhibitors , Pyrazoles/chemical synthesis , Pyrazoles/pharmacology , Humans , Influenza A Virus, H1N1 Subtype/drug effects , Influenza A Virus, H5N1 Subtype/drug effects , Molecular Structure , Pyrazoles/chemistry , Structure-Activity Relationship
3.
Biochem Soc Trans ; 39(5): 1371-5, 2011 Oct.
Article in English | MEDLINE | ID: mdl-21936817

ABSTRACT

SARS-CoV (severe acute respiratory syndrome-associated coronavirus) caused infection of ~8000 people and death of ~800 patients around the world during the 2003 outbreak. In addition, picornaviruses such as enterovirus, coxsackievirus and rhinovirus also can cause life-threatening diseases. Replication of picornaviruses and coronaviruses requires 3Cpro (3C protease) and 3CLpro (3C-like protease) respectively, which are structurally analogous with chymotrypsin-fold, but the former is a monomer and the latter is dimeric due to an extra third domain for dimerization. Subtle structural differences in the S2 and S3 pockets of these proteases make inhibitors selective, but some dual inhibitors have been discovered. Our findings as summarized in the present review provide new potential anti-coronavirus and anti-picornavirus therapeutic agents and a clue to convert 3CLpro inhibitors into 3Cpro inhibitors and vice versa.


Subject(s)
Drug Discovery , Picornaviridae Infections/drug therapy , Picornaviridae/drug effects , Protease Inhibitors/pharmacology , Protease Inhibitors/therapeutic use , Viral Proteins/antagonists & inhibitors , 3C Viral Proteases , Cysteine Endopeptidases/metabolism , Cysteine Endopeptidases/ultrastructure , Humans , Molecular Structure , Picornaviridae/enzymology , Picornaviridae/physiology , Protease Inhibitors/chemistry , Viral Proteins/metabolism , Viral Proteins/ultrastructure , Virus Replication
4.
Bioorg Med Chem ; 18(22): 7849-54, 2010 Nov 15.
Article in English | MEDLINE | ID: mdl-20947359

ABSTRACT

A series of pyrazolone compounds as possible SARS-CoV 3CL protease inhibitors were designed, synthesized, and evaluated by in vitro protease assay using fluorogenic substrate peptide in which several showed potent inhibition against the 3CL protease. Interestingly, one of the inhibitors was also active against 3C protease from coxsackievirus B3. These inhibitors could be potentially developed into anti-coronaviral and anti-picornaviral agents.


Subject(s)
Antiviral Agents/chemical synthesis , Protease Inhibitors/chemical synthesis , Pyrazolones/chemistry , Viral Proteins/antagonists & inhibitors , 3C Viral Proteases , Antiviral Agents/chemistry , Antiviral Agents/pharmacology , Binding Sites , Catalytic Domain , Computer Simulation , Coronavirus 3C Proteases , Cysteine Endopeptidases/metabolism , Enterovirus B, Human/enzymology , Humans , Protease Inhibitors/chemistry , Protease Inhibitors/pharmacology , Pyrazolones/chemical synthesis , Pyrazolones/pharmacology , Structure-Activity Relationship , Viral Proteins/metabolism
5.
Bioorg Med Chem Lett ; 20(12): 3569-72, 2010 Jun 15.
Article in English | MEDLINE | ID: mdl-20494577

ABSTRACT

A series of 2-(benzylthio)-6-oxo-4-phenyl-1,6-dihydropyrimidine as SARS-CoV 3CL protease inhibitors were developed and their potency was evaluated by in vitro protease inhibitory assays. Two candidates had encouraging results for the development of new anti-SARS compounds.


Subject(s)
Pyrimidines/chemical synthesis , Pyrimidines/pharmacology , Viral Proteins/antagonists & inhibitors , Computer Simulation , Coronavirus 3C Proteases , Cysteine Endopeptidases , Inhibitory Concentration 50 , Models, Molecular , Protease Inhibitors/chemical synthesis , Protease Inhibitors/pharmacology , Protein Binding , Severe acute respiratory syndrome-related coronavirus/drug effects , Severe acute respiratory syndrome-related coronavirus/enzymology , Structure-Activity Relationship
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