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R S Obach

Publications and source records attributed to R S Obach.

22 records · Page 2Linked to original sources

Azidowarfarin photoaffinity probes of purified rat liver cytochrome P4501A1.

Substrate specificity differences between various forms of cytochrome P450 (P450) are governed by substrate binding site amino acid residue differences. To determine the identities of these residues, four analogs of warfarin, a thoroughly investigated anticoagulant drug which is regio- and stereoselectively metabolized by many P450s, have been synthesized as photoaffinity probes. The probes 4'-, 6-, 7-, and 8-azidowarfarin were readily photolyzed in neutral solution by 254-nm light, with half-lives of less than 15 s. When the azidowarfarins were photolyzed in the presence of beta-naphthoflavone-inducible P4501A1 (2.5 microM) at -196 degrees C and the P450 was subsequently reconstituted for warfarin metabolism, 50% inactivation was achieved with 160 microM 4'-azidowarfarin, 64 microM 6-azidowarfarin, 127 microM 7-azidowarfarin, and 29 microM 8-azidowarfarin. This inactivation is irreversible. When these concentrations of the azidowarfarins were photolyzed prior to addition to P4501A1, less inhibition of P450 activity was detected and the inhibition was reversible. The CO-ferrous P450 spectrum of P4501A1 at 448 nm was diminished when photoactivated azidowarfarins bound to and inactivated the enzyme, with essentially no formation of P420 except in the case of 4'-azidowarfarin. The inactivation of P4501A1 by photoactivated 4'-azidowarfarin was prevented by 50% by 1.2 mM R-warfarin or 0.3 mM 4'-nitrowarfarin, consistent with the latter being a better P4501A1 substrate than R-warfarin. The photoinactivation of P4501A1 by each of the azidowarfarins was prevented to variable extents by R-warfarin or by 4'-, 6-, 7-, or 8-nitrowarfarin. Taken together these results demonstrate that all four azidowarfarins are potentially useful photoaffinity probes of the substrate binding site amino acid residues of P450s.

Affinity Labels↗

Radioimmunoassay of nicotine-delta 1'(5')-iminium ion, an intermediate formed during the metabolism of nicotine to cotinine.

Cotinine, one of the major metabolites of nicotine, is formed by two sequential enzyme reactions: [formula: see text] Chemical and immunological methods of analysis are available to quantify these two compounds (I and III). Study of the intermediate (III) is hampered because of its complex chemistry and lack of simple methods for its assay. Generally, (II) is trapped by addition of cyanide and analyzed as the 5'-cyanonicotine adduct. In order to develop an immunoassay for (II), rabbits were immunized with a 3'-succinylmethyl-5'-cyanonicotine-protein conjugate with the expectation that (II) would, after treatment with cyanide, be quantified as 5'-cyanonicotine. Unexpectedly, however, the antibodies recognized the cyano adduct and (II) to the same extent (limit of deletion = 1.2 pmol). Nicotine, cotinine, and several other metabolites do not significantly inhibit the antigen-antibody reaction. Inhibition studies with 5' substituted nicotine analogs indicate that the 5'-hydroxynicotine tautomer (IIb) is the species recognized by the antibodies. Inin vitro metabolic studies, (II) accumulates in the absence of aldehyde oxidase, but in its presence, is converted to cotinine. As judged by serological activity, dilute solutions (under 15 microM) of (II) are stable when allowed to stand for 6 days at pH 7 and 37 degrees C. However, at high concentrations of iminium ion (where NMR studies showed instability and formation of multiple products) serological activity is also lost. Iminium ions are generated during the metabolism of some tertiary amine xenobiotics. The use of alpha-cyanoamine haptens to elicit antibodies specific for iminium ions and/or their cyano adducts may permit development of immunoassays for these compounds.

Animals↗