Literature DB >> 1306118

Caffeine as a probe for human cytochromes P450: validation using cDNA-expression, immunoinhibition and microsomal kinetic and inhibitor techniques.

W Tassaneeyakul1, Z Mohamed, D J Birkett, M E McManus, M E Veronese, R H Tukey, L C Quattrochi, F J Gonzalez, J O Miners.   

Abstract

The molecular basis for the use of caffeine (CA; 1,3,7-trimethylxanthine) as a probe for specific human cytochromes P450 has been investigated. The CA 1-, 3- and 7-demethylations (to form theobromine, paraxanthine and theophylline, respectively) all followed biphasic kinetics in human liver microsomes. Mean apparent Km values for the high- and low-affinity components of the demethylations ranged from 0.13-0.31 nM and 19.2-30.0 mM, respectively. cDNA-expressed CYP1A2 catalysed all three CA demethylations, and the apparent Km for CA 3-demethylation (the major metabolic pathway in humans) by the expressed enzyme was similar to the Km for the high-affinity liver microsomal CA 3-demethylase. IC50 values for inhibition of the CA demethylations by alpha-naphthoflavone were similar for both expressed CYP1A2 and the high-affinity microsomal demethylases. Moreover, CA was a competitive inhibitor of expressed CYP1A2 catalysed phenacetin O-deethylation, with the apparent Ki (0.080 mM) closely matching the apparent Km (0.082 mM) for CA 3-demethylation by the expressed enzyme. Expressed CYP1A1 was additionally shown to catalyse the 3-demethylation of CA, although activity was lower than that observed for CYP1A2. While these data indicate that CYP1A2 is responsible for the high-affinity component of human liver CA 3-demethylation, two limitations associated with the use of CA as an in vitro probe for CYP1A2 activity have been identified: (i) CA 3-demethylation reflects hepatic CYP1A2 activity only at appropriately low substrate concentrations; and (ii) CA is a non-specific CYP1A substrate and CYP1A1 may therefore contribute to CA 3-demethylase activity in tissues in which it is expressed. An anti-CYP3A antibody essentially abolished the 8-hydroxylation of CA to form trimethyluric acid, suggesting formation of this metabolite may potentially serve as a marker of CYP3A isozyme(s) activity.

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Year:  1992        PMID: 1306118     DOI: 10.1097/00008571-199208000-00004

Source DB:  PubMed          Journal:  Pharmacogenetics        ISSN: 0960-314X


  10 in total

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2.  Biotransformation of caffeine by cDNA-expressed human cytochromes P-450.

Authors:  H R Ha; J Chen; S Krahenbuhl; F Follath
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3.  Preferred binding orientations of phenacetin in CYP1A1 and CYP1A2 are associated with isoform-selective metabolism.

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4.  Cytochrome P450 isoform selectivity in human hepatic theobromine metabolism.

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5.  Nonspecific binding of drugs to human liver microsomes.

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6.  Dietary caffeine as a probe agent for assessment of cytochrome P4501A2 activity in random urine samples.

Authors:  A Nordmark; S Lundgren; S Cnattingius; A Rane
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7.  In vitro proguanil activation to cycloguanil by human liver microsomes is mediated by CYP3A isoforms as well as by S-mephenytoin hydroxylase.

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Review 9.  Drug-Drug Interactions Involving Intestinal and Hepatic CYP1A Enzymes.

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Journal:  Pharmaceutics       Date:  2020-12-11       Impact factor: 6.321

10.  Phenotyping of CYP 4501A2 Activity by Total Overnight Salivary Caffeine Assessment (TOSCA) in Patients on Warfarin Treatment: A Cross-Sectional Study.

Authors:  Giovanni Tarantino; Domenico Capone; Paola Contaldi; Adriana Gianno; Mosca Teresa; Antonella Tufano
Journal:  Clin Appl Thromb Hemost       Date:  2017-10-09       Impact factor: 2.389

  10 in total

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