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2.
Org Biomol Chem ; 6(13): 2308-15, 2008 Jul 07.
Article in English | MEDLINE | ID: mdl-18563263

ABSTRACT

N-Myristoyl transferase-mediated labelling using a substrate modified with an azide or alkyne tag is described as an efficient and site-selective method for the introduction of a bioorthogonal tag at the N-terminus of a recombinant protein. The procedure may be performed in vitro, or in a single over-expression/tagging step in vivo in bacteria; tagged proteins may then be captured using Staudinger-Bertozzi or 'click' chemistry protocols to introduce a secondary label for downstream analysis. The straightforward synthesis of the chemical and molecular biological tools described should enable their use in a wide range of N-terminal labelling applications.


Subject(s)
Acyltransferases/metabolism , Candida albicans/enzymology , Recombinant Proteins/metabolism , Staining and Labeling/methods , Alkynes/chemistry , Amino Acid Sequence , Azides/chemistry , Molecular Sequence Data , Myristic Acid/chemistry , Myristic Acid/metabolism , Peptides/chemistry , Peptides/metabolism , Substrate Specificity
3.
Chem Commun (Camb) ; (4): 480-2, 2008 Jan 28.
Article in English | MEDLINE | ID: mdl-18188474

ABSTRACT

N-Myristoyl transferase-mediated modification with azide-bearing substrates is introduced as a highly selective and practical method for in vitro and in vivo N-terminal labelling of a recombinant protein using bioorthogonal ligation chemistry.


Subject(s)
Acyltransferases/chemistry , Proteins/chemistry , Animals , Chromatography, High Pressure Liquid , In Vitro Techniques , Plasmodium falciparum/enzymology
4.
Biochem J ; 393(Pt 2): 447-57, 2006 Jan 15.
Article in English | MEDLINE | ID: mdl-16225460

ABSTRACT

Type II fatty acid biosynthesis represents an attractive target for the discovery of new antimalarial drugs. Previous studies have identified malarial ENR (enoyl acyl-carrier-protein reductase, or FabI) as the target for the antiseptic triclosan. In the present paper, we report the biochemical properties and 1.5 A (1 A=0.1 nm) crystal structure of OAR (3-oxoacyl acyl-carrier-protein reductase, or FabG), the second reductive step in fatty acid biosynthesis and its inhibition by hexachlorophene. Under optimal conditions of pH and ionic strength, Plasmodium falciparum OAR displays kinetic properties similar to those of OAR from bacteria or plants. Activity with NADH is <3% of that with NADPH. Fluorescence enhancement studies indicate that NADPH can bind to the free enzyme, consistent with kinetic and product inhibition studies suggesting a steady-state ordered mechanism. The crystal structure reveals a tetramer with a sulphate ion bound in the cofactor-binding site such that the side chains of the catalytic triad of serine, tyrosine and lysine are aligned in an active conformation, as previously observed in the Escherichia coli OAR-NADP+ complex. A cluster of positively charged residues is positioned at the entrance to the active site, consistent with the proposed recognition site for the physiological substrate (3-oxoacyl-acyl-carrier protein) in E. coli OAR. The antibacterial and anthelminthic agent hexachlorophene is a potent inhibitor of OAR (IC50 2.05 microM) displaying non-linear competitive inhibition with respect to NADPH. Hexachlorophene (EC50 6.2 microM) and analogues such as bithionol also have antimalarial activity in vitro, suggesting they might be useful leads for further development.


Subject(s)
Alcohol Oxidoreductases/chemistry , Alcohol Oxidoreductases/metabolism , Enzyme Inhibitors/pharmacology , Fatty Acids/biosynthesis , Plasmodium falciparum/enzymology , 3-Oxoacyl-(Acyl-Carrier-Protein) Reductase , Alcohol Oxidoreductases/antagonists & inhibitors , Alcohol Oxidoreductases/genetics , Amino Acid Sequence , Animals , Binding Sites , Coenzymes/metabolism , Enzyme Inhibitors/chemistry , Gene Expression Regulation, Enzymologic , Inhibitory Concentration 50 , Kinetics , Models, Molecular , Molecular Sequence Data , Molecular Structure , NADP/metabolism , Plasmodium falciparum/drug effects , Protein Structure, Quaternary , Protozoan Proteins/genetics , Protozoan Proteins/metabolism , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Sequence Homology, Amino Acid , Substrate Specificity
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