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Discovery and structure activity relationships of 7-benzyl triazolopyridines as stable, selective, and reversible inhibitors of myeloperoxidase

Authors :
Arathi Krishnakumar
Lisa M. Kopcho
Michael Basso
Benjamin P. Vokits
Glenn H. Cantor
Sutjano Jusuf
Lei Zhao
Lynn M. Abell
Ashok Dongre
Javed Khan
Steven A. Spronk
Gregory A. Locke
Gerald J. Duke
Andrew Quoc Viet
Scott A. Shaw
Franck Duclos
Ellen K. Kick
Joelle M. Onorato
Charles G. Clark
Ruth R. Wexler
Dilger Andrew K
Ji Gao
Source :
Bioorganicmedicinal chemistry. 28(22)
Publication Year :
2020

Abstract

Myeloperoxidase (MPO) is a heme peroxidase found in neutrophils, monocytes and macrophages that efficiently catalyzes the oxidation of endogenous chloride into hypochlorous acid for antimicrobial activity. Chronic MPO activation can lead to indiscriminate protein modification causing tissue damage, and has been associated with chronic inflammatory diseases, atherosclerosis, and acute cardiovascular events. Triazolopyrimidine 5 is a reversible MPO inhibitor; however it suffers from poor stability in acid, and is an irreversible inhibitor of the DNA repair protein methyl guanine methyl transferase (MGMT). Structure-based drug design was employed to discover benzyl triazolopyridines with improved MPO potency, as well as acid stability, no reactivity with MGMT, and selectivity against thyroid peroxidase (TPO). Structure-activity relationships, a crystal structure of the MPO-inhibitor complex, and acute in vivo pharmacodynamic data are described herein.

Details

ISSN :
14643391
Volume :
28
Issue :
22
Database :
OpenAIRE
Journal :
Bioorganicmedicinal chemistry
Accession number :
edsair.doi.dedup.....30388866645cc723c34668c20055fd32