Literature DB >> 15796007

Malarial (Plasmodium falciparum) dihydrofolate reductase-thymidylate synthase: structural basis for antifolate resistance and development of effective inhibitors.

Y Yuthavong1, J Yuvaniyama, P Chitnumsub, J Vanichtanankul, S Chusacultanachai, B Tarnchompoo, T Vilaivan, S Kamchonwongpaisan.   

Abstract

Dihydrofolate reductase-thymidylate synthase (DHFR-TS) from Plasmodium falciparum, a validated target for antifolate antimalarials, is a dimeric enzyme with interdomain interactions significantly mediated by the junction region as well as the Plasmodium-specific additional sequences (inserts) in the DHFR domain. The X-ray structures of both the wild-type and mutant enzymes associated with drug resistance, in complex with either a drug which lost, or which still retains, effectiveness for the mutants, reveal features which explain the basis of drug resistance resulting from mutations around the active site. Binding of rigid inhibitors like pyrimethamine and cycloguanil to the enzyme active site is affected by steric conflict with the side-chains of mutated residues 108 and 16, as well as by changes in the main chain configuration. The role of important residues on binding of inhibitors and substrates was further elucidated by site-directed and random mutagenesis studies. Guided by the active site structure and modes of inhibitor binding, new inhibitors with high affinity against both wild-type and mutant enzymes have been designed and synthesized, some of which have very potent anti-malarial activities against drug-resistant P. falciparum bearing the mutant enzymes.

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Year:  2005        PMID: 15796007     DOI: 10.1017/s003118200400664x

Source DB:  PubMed          Journal:  Parasitology        ISSN: 0031-1820            Impact factor:   3.234


  33 in total

1.  X-ray structure of the ternary MTX.NADPH complex of the anthrax dihydrofolate reductase: a pharmacophore for dual-site inhibitor design.

Authors:  Brad C Bennett; Qun Wan; Md Faiz Ahmad; Paul Langan; Chris G Dealwis
Journal:  J Struct Biol       Date:  2009-05       Impact factor: 2.867

2.  Preclinical evaluation of the antifolate QN254, 5-chloro- N'6'-(2,5-dimethoxy-benzyl)-quinazoline-2,4,6-triamine, as an antimalarial drug candidate.

Authors:  Alexis Nzila; Matthias Rottmann; Penchit Chitnumsub; Stevens M Kiara; Sumalee Kamchonwongpaisan; Cherdsak Maneeruttanarungroj; Supannee Taweechai; Bryan K S Yeung; Anne Goh; Suresh B Lakshminarayana; Bin Zou; Josephine Wong; Ngai Ling Ma; Margaret Weaver; Thomas H Keller; Veronique Dartois; Sergio Wittlin; Reto Brun; Yongyuth Yuthavong; Thierry T Diagana
Journal:  Antimicrob Agents Chemother       Date:  2010-03-29       Impact factor: 5.191

3.  Whole-Cell Phenotypic Screening of Medicines for Malaria Venture Pathogen Box Identifies Specific Inhibitors of Plasmodium falciparum Late-Stage Development and Egress.

Authors:  Alok Tanala Patra; Tejashri Hingamire; Meenakshi A Belekar; Aoli Xiong; Gowtham Subramanian; Zbynek Bozdech; Peter Preiser; Dhanasekaran Shanmugam; Rajesh Chandramohanadas
Journal:  Antimicrob Agents Chemother       Date:  2020-04-21       Impact factor: 5.191

4.  A virtual screen discovers novel, fragment-sized inhibitors of Mycobacterium tuberculosis InhA.

Authors:  Alexander L Perryman; Weixuan Yu; Xin Wang; Sean Ekins; Stefano Forli; Shao-Gang Li; Joel S Freundlich; Peter J Tonge; Arthur J Olson
Journal:  J Chem Inf Model       Date:  2015-02-17       Impact factor: 4.956

5.  Crystal structure of dihydrofolate reductase from Plasmodium vivax: pyrimethamine displacement linked with mutation-induced resistance.

Authors:  Palangpon Kongsaeree; Puttapol Khongsuk; Ubolsree Leartsakulpanich; Penchit Chitnumsub; Bongkoch Tarnchompoo; Malcolm D Walkinshaw; Yongyuth Yuthavong
Journal:  Proc Natl Acad Sci U S A       Date:  2005-08-31       Impact factor: 11.205

6.  Malarial dihydrofolate reductase as a paradigm for drug development against a resistance-compromised target.

Authors:  Yongyuth Yuthavong; Bongkoch Tarnchompoo; Tirayut Vilaivan; Penchit Chitnumsub; Sumalee Kamchonwongpaisan; Susan A Charman; Danielle N McLennan; Karen L White; Livia Vivas; Emily Bongard; Chawanee Thongphanchang; Supannee Taweechai; Jarunee Vanichtanankul; Roonglawan Rattanajak; Uthai Arwon; Pascal Fantauzzi; Jirundon Yuvaniyama; William N Charman; David Matthews
Journal:  Proc Natl Acad Sci U S A       Date:  2012-10-03       Impact factor: 11.205

7.  Exploiting structural analysis, in silico screening, and serendipity to identify novel inhibitors of drug-resistant falciparum malaria.

Authors:  Tina Dasgupta; Penchit Chitnumsub; Sumalee Kamchonwongpaisan; Cherdsak Maneeruttanarungroj; Sara E Nichols; Theresa M Lyons; Julian Tirado-Rives; William L Jorgensen; Yongyuth Yuthavong; Karen S Anderson
Journal:  ACS Chem Biol       Date:  2009-01-16       Impact factor: 5.100

Review 8.  Drug-resistant malaria - an insight.

Authors:  John E Hyde
Journal:  FEBS J       Date:  2007-09       Impact factor: 5.542

9.  In silico activity profiling reveals the mechanism of action of antimalarials discovered in a high-throughput screen.

Authors:  David Plouffe; Achim Brinker; Case McNamara; Kerstin Henson; Nobutaka Kato; Kelli Kuhen; Advait Nagle; Francisco Adrián; Jason T Matzen; Paul Anderson; Tae-Gyu Nam; Nathanael S Gray; Arnab Chatterjee; Jeff Janes; S Frank Yan; Richard Trager; Jeremy S Caldwell; Peter G Schultz; Yingyao Zhou; Elizabeth A Winzeler
Journal:  Proc Natl Acad Sci U S A       Date:  2008-06-25       Impact factor: 11.205

Review 10.  Artemisinins: their growing importance in medicine.

Authors:  Sanjeev Krishna; Leyla Bustamante; Richard K Haynes; Henry M Staines
Journal:  Trends Pharmacol Sci       Date:  2008-08-25       Impact factor: 14.819

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