Mancy A, Dijols S, Poli S, Guengerich P, Mansuy D
Laboratoire de Chimie et Biochimie Pharmacologiques et Toxicologiques, URA 400 CNRS, Université Paris V, France.
Biochemistry. 1996 Dec 17;35(50):16205-12. doi: 10.1021/bi961950t.
The effects of sulfaphenazole, 1, on typical activities catalyzed by human cytochromes P450 of the 1A, 3A, and 2C subfamilies expressed in yeast were studied. 1 acts as a strong, competitive inhibitor of CYP 2C9 (K(i) = 0.3 +/- 0.1 microM); it is much less potent toward CYP 2C8 and 2C18 (K(i) = 63 and 29 microM, respectively) and fails to inhibit CYP 1A1, 1A2, 3A4, and 2C19. From difference visible spectroscopy experiments using microsomes of yeast expressing various human P450s, 1 selectively interacts only with CYP 2C9 with the appearance of a peak at 429 nm as expected for the formation of a P450 Fe(III)-nitrogenous ligand complex (Ks = 0.4 +/- 0.1 microM). Comparative studies of the spectral interaction and inhibitory effects of twelve compounds related to 1 with CYP 2C9 showed that the aniline function of 1 is responsible for the formation of the iron-nitrogen bond of the 429 nm-absorbing complex and is necessary for the inhibitory effects of 1. The study of two new compounds synthesized during this work, in which the N-phenyl group of 1 was replaced with either an ethyl group or a 3,4-dichlorophenyl group, showed that the presence of an hydrophobic substituent at position 1 of the pyrazole function of 1 is required for a strong interaction with CYP 2C9. A model for the binding of 1 in the CYP 2C9 active site is proposed; that takes into account three major interactions that should be at the origin of the high-affinity and specific inhibitory effects of 1 toward CYP 2C9: (i) the binding of its nitrogen atom to CYP 2C9 iron, (ii) an ionic interaction of its SO2N- anionic site with a cationic residue of CYP 2C9, and (iii) an interaction of its N-phenyl group with an hydrophobic part of the protein active site.
研究了磺胺苯唑(1)对在酵母中表达的人细胞色素P450 1A、3A和2C亚家族催化的典型活性的影响。1作为CYP 2C9的强效竞争性抑制剂(K(i)=0.3±0.1 microM);它对CYP 2C8和2C18的效力要低得多(K(i)分别为63和29 microM),并且不能抑制CYP 1A1、1A2、3A4和2C19。通过使用表达各种人P450的酵母微粒体进行的差示可见光谱实验,1仅与CYP 2C9选择性相互作用,出现429 nm处的峰,这是形成P450 Fe(III)-含氮配体复合物所预期的(Ks = 0.4±0.1 microM)。对与1相关的十二种化合物与CYP 2C9的光谱相互作用和抑制作用的比较研究表明,1的苯胺官能团负责形成429 nm吸收复合物的铁氮键,并且是1的抑制作用所必需的。对在这项工作中合成的两种新化合物的研究表明,其中1的N-苯基被乙基或3,4-二氯苯基取代,1的吡唑官能团1位存在疏水取代基是与CYP 2C9强烈相互作用所必需的。提出了1在CYP 2C9活性位点结合的模型;该模型考虑了三种主要相互作用,这些相互作用应该是1对CYP 2C9具有高亲和力和特异性抑制作用的起源:(i)其氮原子与CYP 2C9铁的结合,(ii)其SO2N-阴离子位点与CYP 2C9阳离子残基的离子相互作用,以及(iii)其N-苯基与蛋白质活性位点疏水部分的相互作用。