2007
DOI: 10.1021/bi701532r
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Crystal Structure of a Type II Dihydrofolate Reductase Catalytic Ternary Complex

Abstract: Type II dihydrofolate reductase (DHFR) is a plasmid-encoded enzyme that confers resistance to bacterial DHFR-targeted antifolate drugs. It forms a symmetric homotetramer with a central pore which functions as the active site. Its unusual structure, which results in a promiscuous binding surface that accommodates either the Dihydrofolate (DHF) substrate or the NADPH cofactor, has constituted a significant limitation to efforts to understand its substrate specificity and reaction mechanism. We describe here the … Show more

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Cited by 39 publications
(136 citation statements)
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“…Arrows on opposite sides of the pore indicate entry of the ligands. In this ternary complex structure (8), NADP ϩ enters from the left and DHF from the right (8); however, binding at symmetry-related sites can also occur. The color code for the atoms is carbon, green; nitrogen, blue; oxygen, red; phosphorus, magenta; and hydrogen, white.…”
Section: Methodsmentioning
confidence: 99%
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“…Arrows on opposite sides of the pore indicate entry of the ligands. In this ternary complex structure (8), NADP ϩ enters from the left and DHF from the right (8); however, binding at symmetry-related sites can also occur. The color code for the atoms is carbon, green; nitrogen, blue; oxygen, red; phosphorus, magenta; and hydrogen, white.…”
Section: Methodsmentioning
confidence: 99%
“…From NMR, crystallography, and docking studies, the pteridine ring of DHF/folate binds at the center of the pore, but the paraaminobenzoylglutamate tail of dihydrofolate/folate is disordered (5,8,9). Interactions have been predicted between symmetry-related Lys-32 residues (at either edge of the pore) and the glutamate tail of substrate.…”
mentioning
confidence: 99%
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“…of 2.2 Å for 52 C atoms; le Maire et al, 2006) and type II R-plasmidencoded R67 dihydrofolate reductase (R67 DHFR; PDB entry 2rh2, chain A; 12% identity; Z-score of 6.5 and r.m.s.d. of 2.7 Å for 51 C atoms; Krahn et al, 2007) (Fig. 2d).…”
Section: Structure Comparison and Functional Predictionmentioning
confidence: 97%
“…THF is essential for the synthesis of thymidylate, purine nucleosides, methionine and other metabolic intermediates (Krahn et al, 2007). Since the functional tetramerization and the critical residues for enzymatic function are absent in GK0453, it is unlikely that GK0453 possesses an activity similar to that of DHFR.…”
Section: Structure Comparison and Functional Predictionmentioning
confidence: 99%