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1.
Acta Crystallogr D Biol Crystallogr ; 68(Pt 11): 1578-83, 2012 Nov.
Article in English | MEDLINE | ID: mdl-23090407

ABSTRACT

Cryoprotection of a protein crystal by addition of small-molecule compounds may sometimes affect the structure of its active site. The spectroscopic and structural effects of the two cryoprotectants glycerol and ethylene glycol on the cyan fluorescent protein Cerulean were investigated. While glycerol had almost no noticeable effect, ethylene glycol was shown to induce a systematic red shift of the UV-vis absorption and fluorescence emission spectra. Additionally, ethylene glycol molecules were shown to enter the core of the protein, with one of them binding in close vicinity to the chromophore, which provides a sound explanation for the observed spectroscopic changes. These results highlight the need to systematically record spectroscopic data on crystals of light-absorbing proteins and reinforce the notion that fluorescent proteins must not been seen as rigid structures.


Subject(s)
Cryoprotective Agents/chemistry , Fluorescent Dyes/chemistry , Green Fluorescent Proteins/chemistry , Hydrozoa/chemistry , Animals , Cryoprotective Agents/metabolism , Crystallography, X-Ray , Ethylene Glycol/chemistry , Ethylene Glycol/metabolism , Fluorescent Dyes/metabolism , Glycerol/chemistry , Glycerol/metabolism , Green Fluorescent Proteins/metabolism , Hydrozoa/metabolism , Models, Molecular , Protein Binding , Protein Conformation , Spectrometry, Fluorescence , Spectrophotometry, Ultraviolet
2.
BMC Struct Biol ; 11: 21, 2011 May 09.
Article in English | MEDLINE | ID: mdl-21554707

ABSTRACT

BACKGROUND: The enzyme dihydropteroate synthase (DHPS) participates in the de novo synthesis of folate cofactors by catalyzing the formation of 7,8-dihydropteroate from condensation of p-aminobenzoic acid with 6-hydroxymethyl-7,8-dihydropteroate pyrophosphate. DHPS is absent from humans, who acquire folates from diet, and has been validated as an antimicrobial therapeutic target by chemical and genetic means. The bacterium Burkholderia cenocepacia is an opportunistic pathogen and an infective agent of cystic fibrosis patients. The organism is highly resistant to antibiotics and there is a recognized need for the identification of new drugs against Burkholderia and related Gram-negative pathogens. Our characterization of the DHPS active site and interactions with the enzyme product are designed to underpin early stage drug discovery. RESULTS: An efficient recombinant protein expression system for DHPS from B. cenocepacia (BcDHPS) was prepared, the dimeric enzyme purified in high yield and crystallized. The structure of the apo-enzyme and the complex with the product 7,8-dihydropteroate have been determined to 2.35 Å and 1.95 Å resolution respectively in distinct orthorhombic crystal forms. The latter represents the first crystal structure of the DHPS-pterin product complex, reveals key interactions involved in ligand binding, and reinforces data generated by other structural studies. Comparisons with orthologues identify plasticity near the substrate-binding pocket and in particular a range of loop conformations that contribute to the architecture of the DHPS active site. These structural data provide a foundation for hit discovery. An intriguing observation, an artifact of the analysis, that of a potential sulfenamide bond within the ligand complex structure is mentioned. CONCLUSION: Structural similarities between BcDHPS and orthologues from other Gram-negative species are evident as expected on the basis of a high level of sequence identity. The presence of 7,8-dihydropteroate in the binding site provides details about ligand recognition by the enzyme and the different states of the enzyme allow us to visualize distinct conformational states of loops adjacent to the active site. Improved drugs to combat infections by Burkholderia sp. and related Gram-negative bacteria are sought and our study now provides templates to assist that process and allow us to discuss new ways of inhibiting DHPS.


Subject(s)
Burkholderia cenocepacia/enzymology , Dihydropteroate Synthase/chemistry , Dihydropteroate Synthase/metabolism , Pterins/metabolism , Amino Acid Sequence , Apoenzymes/chemistry , Apoenzymes/genetics , Apoenzymes/isolation & purification , Apoenzymes/metabolism , Catalytic Domain , Crystallography, X-Ray , Dihydropteroate Synthase/genetics , Dihydropteroate Synthase/isolation & purification , Models, Molecular , Molecular Sequence Data , Protein Binding , Pterins/chemistry , Sequence Homology, Amino Acid , Sulfamerazine/chemistry
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