Literature DB >> 19591883

Catalytic and ligand-binding characteristics of Plasmodium falciparum serine hydroxymethyltransferase.

Cullen K T Pang1, Joshua H Hunter, Ramesh Gujjar, Ramulu Podutoori, Julie Bowman, Devaraja G Mudeppa, Pradipsinh K Rathod.   

Abstract

The plant-like, bifunctional dihydrofolate reductase-thymidylate synthase (DHFR-TS) from malaria parasites has been a good target for drug development. Dihydrofolate reductase (DHFR) is inhibited by clinically established antimalarials, pyrimethamine and cycloguanil. Thymidylate synthase (TS) is the target of potent experimental antimalarials such as 5-fluoroorotate and 1843U89. Another enzyme in folate recycling, serine hydroxymethyltransferase (SHMT), produces 5,10-methylenetetrahydrofolate which, in many cells, is required for the de novo, biosynthesis of thymidine and methionine. Thus, the biochemical characterization of malarial SHMT was of interest. The principle, active Plasmodium falciparum SHMT (PfSHMT) was expressed in E. coli and purified using an N-terminal histidine tag. Unlike the plant enzyme, but like the host enzyme, PfSHMT requires the cofactor pyridoxal 5'-phosphate for enzymatic activity. The substrate specificities for serine, tetrahydrofolate, and pyridoxal 5'-phosphate were comparable to those for SHMT from other organisms. Antifolates developed for DHFR and TS inhibited SHMT in the mid-micromolar range, offering insights into the binding preferences of SHMT but clearly leaving room for improved new inhibitors. As previously seen with P. falciparum DHFR-TS, PfSHMT bound its cognate mRNA but not control RNA for actin. RNA binding was not reversed with enzyme substrates. Unlike DHFR-TS, the SHMT RNA-protein interaction was not tight enough to inhibit translation. Another gene PF14_0534, previously proposed to code for an alternate mitochondrial SHMT, was also expressed in E. coli but found to be inactive. This protein, nor DHFR-TS, enhanced the catalytic activity of PfSHMT. The present results set the stage for developing specific, potent inhibitors of SHMT from P. falciparum.

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Year:  2009        PMID: 19591883      PMCID: PMC2741015          DOI: 10.1016/j.molbiopara.2009.06.011

Source DB:  PubMed          Journal:  Mol Biochem Parasitol        ISSN: 0166-6851            Impact factor:   1.759


  56 in total

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2.  Kinetic characteristics of ICI D1694: a quinazoline antifolate which inhibits thymidylate synthase.

Authors:  W H Ward; R Kimbell; A L Jackman
Journal:  Biochem Pharmacol       Date:  1992-05-08       Impact factor: 5.858

3.  Purification and characterization of recombinant rabbit cytosolic serine hydroxymethyltransferase.

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Journal:  Protein Expr Purif       Date:  1998-07       Impact factor: 1.650

4.  Molecular cloning and biochemical characterization of Leishmania donovani serine hydroxymethyltransferase.

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Journal:  Protein Expr Purif       Date:  2006-10-26       Impact factor: 1.650

5.  Purification and properties of mitochondrial serine hydroxymethyltransferase.

Authors:  L Schirch; D Peterson
Journal:  J Biol Chem       Date:  1980-08-25       Impact factor: 5.157

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Authors:  Robert W Snow; Carlos A Guerra; Abdisalan M Noor; Hla Y Myint; Simon I Hay
Journal:  Nature       Date:  2005-03-10       Impact factor: 49.962

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8.  Role of proline residues in the folding of serine hydroxymethyltransferase.

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9.  A dideazatetrahydrofolate analogue lacking a chiral center at C-6, N-[4-[2-(2-amino-3,4-dihydro-4-oxo-7H-pyrrolo[2,3-d]pyrimidin-5- yl)ethyl]benzoyl]-L-glutamic acid, is an inhibitor of thymidylate synthase.

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10.  Cloning and structural analysis of Mycobacterium leprae serine hydroxymethyltransferase.

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Journal:  Protein Expr Purif       Date:  2007-04-29       Impact factor: 1.650

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  12 in total

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2.  Expression of functional Plasmodium falciparum enzymes using a wheat germ cell-free system.

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3.  Kinetic mechanism and the rate-limiting step of Plasmodium vivax serine hydroxymethyltransferase.

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4.  Characterisation of the bifunctional dihydrofolate synthase-folylpolyglutamate synthase from Plasmodium falciparum; a potential novel target for antimalarial antifolate inhibition.

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5.  Topoisomerase II from Human Malaria Parasites: EXPRESSION, PURIFICATION, AND SELECTIVE INHIBITION.

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Review 6.  Lipoic acid metabolism of Plasmodium--a suitable drug target.

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7.  Plasmodium serine hydroxymethyltransferase as a potential anti-malarial target: inhibition studies using improved methods for enzyme production and assay.

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8.  Dynamic subcellular localization of isoforms of the folate pathway enzyme serine hydroxymethyltransferase (SHMT) through the erythrocytic cycle of Plasmodium falciparum.

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9.  Plasmodium serine hydroxymethyltransferase: indispensability and display of distinct localization.

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Review 10.  Vitamin B6-dependent enzymes in the human malaria parasite Plasmodium falciparum: a druggable target?

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