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Tanshinones as selective and slow-binding inhibitors for SARS-CoV cysteine proteases

Authors :
Ki Hun Park
Hyung Jae Jeong
Ji-Young Park
Young Bae Ryu
Young-Min Kim
Hyung Jun Kwon
Dae Wook Kim
Su-Jin Park
Woo Song Lee
Jang Hoon Kim
Source :
Bioorganic & Medicinal Chemistry
Publication Year :
2012
Publisher :
Elsevier BV, 2012.

Abstract

Graphical abstract This is first report to describe the specific and selective inhibition effects of tanshinones against SARS-CoV 3CLpro and PLpro with deubiquitination. In detail kinetic mechanism, tanshinones manifest a slow-binding inhibition profile.<br />In the search for anti-SARS-CoV, tanshinones derived from Salvia miltiorrhiza were found to be specific and selective inhibitors for the SARS-CoV 3CLpro and PLpro, viral cysteine proteases. A literature search for studies involving the seven isolated tanshinone hits showed that at present, none have been identified as coronaviral protease inhibitors. We have identified that all of the isolated tanshinones are good inhibitors of both cysteine proteases. However, their activity was slightly affected by subtle changes in structure and targeting enzymes. All isolated compounds (1–7) act as time dependent inhibitors of PLpro, but no improved inhibition was observed following preincubation with the 3CLpro. In a detail kinetic mechanism study, all of the tanshinones except rosmariquinone (7) were identified as noncompetitive enzyme isomerization inhibitors. However, rosmariquinone (7) showed a different kinetic mechanism through mixed-type simple reversible slow-binding inhibition. Furthermore, tanshinone I (5) exhibited the most potent nanomolar level inhibitory activity toward deubiquitinating (IC50 = 0.7 μM). Additionally, the inhibition is selective because these compounds do not exert significant inhibitory effects against other proteases including chymotrysin, papain, and HIV protease. These findings provide potential inhibitors for SARS-CoV viral infection and replication.

Details

ISSN :
09680896
Volume :
20
Database :
OpenAIRE
Journal :
Bioorganic & Medicinal Chemistry
Accession number :
edsair.doi.dedup.....bd54651d638254e02d12ad8e903faaa8
Full Text :
https://doi.org/10.1016/j.bmc.2012.07.038