NMR-derived models of amidopyrine and its metabolites in complexes with rabbit cytochrome P450 2B4 reveal a structural mechanism of sequential N-dealkylation.
NMR-derived models of amidopyrine and its metabolites in complexes with rabbit cytochrome P450 2B4 reveal a structural mechanism of sequential N-dealkylation.
NMR-derived models of amidopyrine and its metabolites in complexes with rabbit cytochrome P450 2B4 reveal a structural mechanism of sequential N-dealkylation.
Biochemistry. 2011 Mar 29;50(12):2123-34
Authors: Roberts AG, Sjögren SE, Fomina N, Vu KT, Almutairi A, Halpert JR
To understand the molecular basis of sequential N-dealkylation by cytochrome P450 2B enzymes, we studied the binding of amidopyrine (AP) as well as the metabolites of this reaction, desmethylamidopyrine (DMAP) and aminoantipyrine (AAP), using the X-ray crystal structure of rabbit P450 2B4 and two nuclear magnetic resonance (NMR) techniques: saturation transfer difference (STD) spectroscopy and longitudinal (T(1)) relaxation NMR. Results of STD NMR of AP and its metabolites bound to P450 2B4 were similar, suggesting that they occupy similar niches within the enzyme's active site. The model-dependent relaxation rates (R(M)) determined from T(1) relaxation NMR of AP and DMAP suggest that the N-linked methyl is closest to the heme. To determine the orientation(s) of AP and its metabolites within the P450 2B4 active site, we used distances calculated from the relaxation rates to constrain the metabolites to the X-ray crystal structure of P450 2B4. Simulated annealing of the complex revealed that the metabolites do indeed occupy similar hydrophobic pockets within the active site, while the N-linked methyls are free to rotate between two binding modes. From these bound structures, a model of N-demethylation in which the N-linked methyl functional groups rotate between catalytic and noncatalytic positions was developed. This study is the first to provide a structural model of a drug and its metabolites complexed to a cytochrome P450 based on NMR and to provide a structural mechanism for how a drug can undergo sequential oxidations without unbinding. The rotation of the amide functional group might represent a common structural mechanism for N-dealkylation reactions for other drugs such as the local anesthetic lidocaine.
A Large-scale Comparison of Computational Models on the Residue Flexibility for NMR-derived Proteinss.
A Large-scale Comparison of Computational Models on the Residue Flexibility for NMR-derived Proteinss.
A Large-scale Comparison of Computational Models on the Residue Flexibility for NMR-derived Proteinss.
Protein Pept Lett. 2011 Sep 20;
Authors: Zhang H, Shi H, Hanlon M
Abstract
As an alternative to X-ray crystallography, nuclear magnetic resonance (NMR) has also emerged as the method of choice for studying both protein structure and dynamics in solution. However, little work using computational models such as Gaussian network model...
Structural Features of Cytochromes P450 and Ligands that Affect Drug Metabolism as Re
Structural Features of Cytochromes P450 and Ligands that Affect Drug Metabolism as Revealed by X-ray Crystallography and NMR.
Structural Features of Cytochromes P450 and Ligands that Affect Drug Metabolism as Revealed by X-ray Crystallography and NMR.
Future Med Chem. 2010 Sep 1;2(9):1451-1468
Authors: Gay SC, Roberts AG, Halpert JR
Cytochromes P450 (P450s) play a major role in the clearance of drugs, toxins, and environmental pollutants. Additionally, metabolism by P450s can result in toxic or carcinogenic products. The metabolism of...
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[NMR paper] High-quality homology models derived from NMR and X-ray structures of E. coli protein
High-quality homology models derived from NMR and X-ray structures of E. coli proteins YgdK and Suf E suggest that all members of the YgdK/Suf E protein family are enhancers of cysteine desulfurases.
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Protein Sci. 2005 Jun;14(6):1597-608
Authors: Liu G, Li Z, Chiang Y, Acton T, Montelione GT, Murray D, Szyperski T
The structural...
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[NMR paper] SOMO (SOlution MOdeler) differences between X-Ray- and NMR-derived bead models sugges
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Structure. 2005 May;13(5):723-34
Authors: Rai N, Nöllmann M, Spotorno B, Tassara G, Byron O, Rocco M
Reduced numbers of frictional/scattering centers are essential for tractable hydrodynamic and small-angle scattering data modeling. We...
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[NMR paper] The substrate binding site of human liver cytochrome P450 2C9: an NMR study.
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http://www.ncbi.nlm.nih.gov/corehtml/query/egifs/http:--pubs.acs.org-images-acspubs.jpg Related Articles The substrate binding site of human liver cytochrome P450 2C9: an NMR study.
Biochemistry. 1997 Oct 21;36(42):12672-82
Authors: Poli-Scaife S, Attias R, Dansette PM, Mansuy D
Purified recombinant human liver cytochrome P450 2C9 was produced, from expression of the corresponding cDNA in yeast, in quantities large enough for UV-visible and 1H NMR experiments. Its...
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[NMR paper] A model for human cytochrome P450 2D6 based on homology modeling and NMR studies of s
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Biochemistry. 1996 Apr 9;35(14):4540-50
Authors: Modi S, Paine MJ, Sutcliffe MJ, Lian LY, Primrose WU, Wolf CR, Roberts GC
The cytochrome P450 responsible for the debrisoquine/sparteine polymorphism (P450 2D6) has been produced in large...
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[NMR paper] 1H-NMR study of reduced heme proteins myoglobin and cytochrome P450.
1H-NMR study of reduced heme proteins myoglobin and cytochrome P450.
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Eur J Biochem. 1993 Jul 15;215(2):431-7
Authors: Banci L, Bertini I, Marconi S, Pierattelli R
The 1H-NMR spectra of deoxymyoglobin and reduced cytochrome P450 are analyzed by NOE spectroscopy. Progress has been made in the assignment of the...