Literature DB >> 21359560

Rapid discovery of inhibitors of Toxoplasma gondii using hybrid structure-based computational approach.

Sandhya Kortagere1, Ernest Mui, Rima McLeod, William J Welsh.   

Abstract

Toxoplasma (T.) gondii, the causative agent of toxoplasmosis, is a ubiquitous opportunistic pathogen that infects individuals worldwide, and is a leading cause of severe congenital neurologic and ocular disease in humans. No vaccine to protect humans is available, and hypersensitivity and toxicity limit the use of the few available medicines. Therefore, safer and more effective medicines to treat toxoplasmosis are urgently needed. Using the Hybrid Structure Based (HSB) method, we have previously identified small molecule inhibitors of P. falciparum that seem to target a novel protein-protein interaction between the Myosin tail interacting protein and myosin light chain. This pathway has been hypothesized to be involved in invasion of host erythrocytes by the parasite and is broadly conserved among the apicomplexans. Guided by similar computational drug design approaches, we investigated this series of small molecules as potential inhibitors of T. gondii. Compound C3-21, identified as the most active inhibitor in this series, exhibited an IC(50) value ~500 nM against T. gondii. Among the 16 structural analogs of C3-21 tested thus far, nine additional compounds were identified with IC(50) values <10.0 μM. In vitro assays have revealed that C3-21 markedly limits intracellular growth of T. gondii tachyzoites, but has no effect on host cell human foreskin fibroblasts (HFF) at concentrations more than a log greater than the concentration that inhibits the parasites.

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Year:  2011        PMID: 21359560     DOI: 10.1007/s10822-011-9420-6

Source DB:  PubMed          Journal:  J Comput Aided Mol Des        ISSN: 0920-654X            Impact factor:   3.686


  34 in total

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Authors:  Stefan H I Kappe; Carlos A Buscaglia; Lawrence W Bergman; Isabelle Coppens; Victor Nussenzweig
Journal:  Trends Parasitol       Date:  2004-01

2.  Fluorescent protein tagging in Toxoplasma gondii: identification of a novel inner membrane complex component conserved among Apicomplexa.

Authors:  Marc-Jan Gubbels; Marnix Wieffer; Boris Striepen
Journal:  Mol Biochem Parasitol       Date:  2004-09       Impact factor: 1.759

3.  The closed MTIP-myosin A-tail complex from the malaria parasite invasion machinery.

Authors:  Jürgen Bosch; Stewart Turley; Claudia M Roach; Thomas M Daly; Lawrence W Bergman; Wim G J Hol
Journal:  J Mol Biol       Date:  2007-06-09       Impact factor: 5.469

Review 4.  Host cell invasion by the opportunistic pathogen Toxoplasma gondii.

Authors:  Vern B Carruthers
Journal:  Acta Trop       Date:  2002-02       Impact factor: 3.112

5.  Actin in the parasite Toxoplasma gondii is encoded by a single copy gene, ACT1 and exists primarily in a globular form.

Authors:  J M Dobrowolski; I R Niesman; L D Sibley
Journal:  Cell Motil Cytoskeleton       Date:  1997

6.  Triazine Inhibits Toxoplasma gondii tachyzoites in vitro and in vivo.

Authors:  Ernest J Mui; David Jacobus; Wilbur K Milhous; Guy Schiehser; Honghue Hsu; Craig W Roberts; Michael J Kirisits; Rima McLeod
Journal:  Antimicrob Agents Chemother       Date:  2005-08       Impact factor: 5.191

7.  Toxoplasma invasion of mammalian cells is powered by the actin cytoskeleton of the parasite.

Authors:  J M Dobrowolski; L D Sibley
Journal:  Cell       Date:  1996-03-22       Impact factor: 41.582

8.  A conserved molecular motor drives cell invasion and gliding motility across malaria life cycle stages and other apicomplexan parasites.

Authors:  Jake Baum; Dave Richard; Julie Healer; Melanie Rug; Zita Krnajski; Tim-Wolf Gilberger; Judith L Green; Anthony A Holder; Alan F Cowman
Journal:  J Biol Chem       Date:  2005-12-01       Impact factor: 5.157

9.  Novel triazine JPC-2067-B inhibits Toxoplasma gondii in vitro and in vivo.

Authors:  Ernest J Mui; Guy A Schiehser; Wilbur K Milhous; Honghue Hsu; Craig W Roberts; Michael Kirisits; Stephen Muench; David Rice; J P Dubey; Joseph W Fowble; Pradipsinh K Rathod; Sherry F Queener; Susan R Liu; David P Jacobus; Rima McLeod
Journal:  PLoS Negl Trop Dis       Date:  2008-03-05

10.  Identification of the membrane receptor of a class XIV myosin in Toxoplasma gondii.

Authors:  Elizabeth Gaskins; Stacey Gilk; Nicolette DeVore; Tara Mann; Gary Ward; Con Beckers
Journal:  J Cell Biol       Date:  2004-05-03       Impact factor: 10.539

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Authors:  David J Diller; Nancy D Connell; William J Welsh
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2.  Dissecting the molecular assembly of the Toxoplasma gondii MyoA motility complex.

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Review 3.  Review of Experimental Compounds Demonstrating Anti-Toxoplasma Activity.

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4.  Diaryl Ureas as an Antiprotozoal Chemotype.

Authors:  Derek A Leas; Austin G Sanford; Jianbo Wu; Monica Cal; Marcel Kaiser; Sergio Wittlin; Ryan M Hemsley; Elyssa B Darner; LeeAnna M Lui; Paul H Davis; Jonathan L Vennerstrom
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Review 5.  Building Programs to Eradicate Toxoplasmosis Part I: Introduction and Overview.

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Journal:  Curr Pediatr Rep       Date:  2022-08-22

6.  Identification of T. gondii myosin light chain-1 as a direct target of TachypleginA-2, a small-molecule inhibitor of parasite motility and invasion.

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Journal:  PLoS One       Date:  2014-06-03       Impact factor: 3.240

Review 7.  Pyrazolyl-Ureas as Interesting Scaffold in Medicinal Chemistry.

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