Title of article :
Development of α-keto-based inhibitors of cruzain, a cysteine protease implicated in Chagas disease Original Research Article
Author/Authors :
Youngchool Choe، نويسنده , , Linda S. Brinen and Thomas J. Stout، نويسنده , , Mark S. Price، نويسنده , , Juan C. Engel، نويسنده , , Meinolf Lange، نويسنده , , Corinna Grisostomi، نويسنده , , Scott G. Weston، نويسنده , , Peter V. Pallai، نويسنده , , Hong Cheng، نويسنده , , Larry W. Hardy، نويسنده , , David S. Hartsough، نويسنده , , Marsha McMakin، نويسنده , , Robert F. Tilton، نويسنده , , Carmen M. Baldino، نويسنده , , Charles S. Craik، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
16
From page :
2141
To page :
2156
Abstract :
Trypanosoma cruzi, a protozoan parasite, is the causative agent of Chagas disease, a major cause of cardiovascular disease in many Latin American countries. There is an urgent need to develop an improved therapy due to the toxicity of existing drugs and emerging drug resistance. Cruzain, the primary cysteine protease of T. cruzi, is essential for the survival of the parasite in host cells and therefore is an important target for the development of inhibitors as potential therapeutics. A novel series of α-ketoamide-, α-ketoacid-, α-ketoester-, and aldehyde-based inhibitors of cruzain has been developed. The inhibitors were identified by screening protease targeted small molecule libraries and systematically optimizing the P1, P2, P3, and P1′ residues using specific structure-guided methods. A total of 20 compounds displayed picomolar potency in in vitro assays and three inhibitors representing different α-keto-based inhibitor scaffolds demonstrated anti-trypanosomal activity in cell culture. A 2.3 Å crystallographic structure of cruzain bound with one of the α-ketoester analogs is also reported. The structure and kinetic assay data illustrate the covalent binding, reversible inhibition mechanism of the inhibitor. Information on the compounds reported here will be useful in the development of new lead compounds as potential therapeutic agents for the treatment of Chagas disease and as biological probes to study the role that cruzain plays in the pathology. This study also demonstrates the validity of structure-guided approaches to focused library design and lead compound optimization.
Keywords :
Chagas disease , Cruzain , cysteine protease inhibitors , Structure-based library design
Journal title :
Bioorganic and Medicinal Chemistry
Serial Year :
2005
Journal title :
Bioorganic and Medicinal Chemistry
Record number :
1303743
Link To Document :
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