Synthesis of sulfaphenazole derivatives and their use as inhibitors and tools for comparing the active sites of human liver cytochromes P450 of the 2C subfamily

被引:26
作者
Ha-Duong, NT [1 ]
Dijols, S [1 ]
Marques-Soares, C [1 ]
Minoletti, C [1 ]
Dansette, PM [1 ]
Mansuy, D [1 ]
机构
[1] Univ Paris 05, Chim & Biochim Pharmacol & Toxicol Lab, CNRS, UMR 8601, F-75270 Paris 06, France
关键词
D O I
10.1021/jm010861y
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Twenty-three new derivatives of sulfaphenazole (SPA) were synthesized to further explore the topology of the active sites of human liver cytochromes P450 of the 2C subfamily and to find new selective inhibitors of these cytochromes. These compounds are derived from SPA by replacement of the NH2 and H (of the SO2NH function) substituents of SPA with various R-1 and R-2 groups, respectively. Their inhibitory effects were studied on recombinant CYP 2C8, 2C9, 2C18, and 2C19 expressed in yeast. High affinities for CYP 2C9 (IC50 < 1 muM) were only observed for SPA derivatives having the SO2NH function and a relatively small R-1 substituent (R-1 = NH2, CH3). Any increase in the size of R-1 led to a moderate decrease of the affinity, and the N-alkylation of the SO2NH function of SPA to a greater decrease of this affinity. The same structural changes led to opposite effects on molecular recognition by CYP 2C8 and 2C18, which generally exhibited similar behaviors. Thus, contrary to CYP 2C9, CYP 2C8 and 2C18 generally prefer neutral compounds with relatively large R-1 and R2 substituents. CYP 2C19 showed an even lower affinity for anionic compounds than CYP 2C8 and 2C18. However, as CYP 2C8 and 2C18, CYP 2C19 showed a much better affinity for neutral compounds derived ftom N-alkylation of SPA and for anionic compounds bearing a larger R, substituent. One of the new compounds (R-1 = methyl, R-2 = propyl) inhibited all human CYP 2Cs with IC50 values between 10 and 20 muM, while another one (R-1 = allyl, R-2 = methyl) inhibited all CYP 2Cs except CYP 2C9, and a third one (R-1 = R-2 = methyl) inhibited all CYP 2Cs except CYP 2C8. Only 2 compounds of the 25 tested derivatives were highly selective toward one human CYP 2C; these are SPA and compound I (Ri = CH3, R2 = H), which acted as selective CYP 2C9 inhibitors. However, some SPA derivatives selectively inhibited CYP 2C8 and 2C18. Since CYP 2C18 is hardly detectable in human liver, these derivatives could be interesting molecules to selectively inhibit CYP 2C8 in human liver microsomes. Thus, compound 11 (R-1 = NH2, R-2 = (CH2)(2)CH(CH3)(2)) appears to be particularly interesting for that purpose as its IC50 value for CYP 2C8 is low (3 muM) and 20-fold smaller than those found for CYP 2C9 and 2C19.
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页码:3622 / 3631
页数:10
相关论文
共 37 条
[1]   CHIMERAS OF THE HUMAN CYTOCHROME-P450 1A FAMILY PRODUCED IN YEAST - ACCUMULATION IN MICROSOMAL-MEMBRANES, ENZYME-KINETICS AND STABILITY [J].
BELLAMINE, A ;
GAUTIER, JC ;
URBAN, P ;
POMPON, D .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1994, 225 (03) :1005-1013
[2]  
Boberg M, 1997, DRUG METAB DISPOS, V25, P321
[3]  
CRESTEIL T, 1994, CANCER RES, V54, P386
[4]   REDOX-SPALTUNG VON SULFONAMIDEN .3. STRUKTUR UND SPALTUNG DER BIS-ARYLSULFONYL-DERIVATE DES 5-AMINO-1-PHENYL-DELTA4-PYRAZOLINS [J].
DORN, H ;
HILGETAG, G ;
ZUBEK, A .
CHEMISCHE BERICHTE-RECUEIL, 1965, 98 (10) :3357-&
[5]  
FURUYA H, 1991, MOL PHARMACOL, V40, P375
[6]   ENGINEERED YEAST-CELLS AS MODEL TO STUDY COUPLING BETWEEN HUMAN XENOBIOTIC METABOLIZING ENZYMES - SIMULATION OF THE 2 1ST STEPS OF BENZO[A]PYRENE ACTIVATION [J].
GAUTIER, JC ;
URBAN, P ;
BEAUNE, P ;
POMPON, D .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1993, 211 (1-2) :63-72
[7]   BIOCHEMISTRY AND MOLECULAR-BIOLOGY OF THE HUMAN CYP2C SUBFAMILY [J].
GOLDSTEIN, JA ;
DEMORAIS, SMF .
PHARMACOGENETICS, 1994, 4 (06) :285-299
[8]   EVIDENCE THAT CYP2C19 IS THE MAJOR (S)-MEPHENYTOIN 4'-HYDROXYLASE IN HUMANS [J].
GOLDSTEIN, JA ;
FALETTO, MB ;
ROMKESSPARKS, M ;
SULLIVAN, T ;
KITAREEWAN, S ;
RAUCY, JL ;
LASKER, JM ;
GHANAYEM, BI .
BIOCHEMISTRY, 1994, 33 (07) :1743-1752
[9]  
Guengerich FP, 1995, CYTOCHROME P, P473
[10]   Oxidation of tienilic acid by human yeast-expressed cytochromes P-450 2C8, 2C9, 2C18 and 2C19 - Evidence that this drug is a mechanism-based inhibitor specific for cytochrome P-450 2C9 [J].
Jean, P ;
LopezGarcia, P ;
Dansette, P ;
Mansuy, D ;
Goldstein, JA .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 241 (03) :797-804