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鉴定赋予对磺胺苯唑结合具有高亲和力以及对华法林代谢具有高催化效率的P450 2C19氨基酸取代。

Identification of amino acid substitutions that confer a high affinity for sulfaphenazole binding and a high catalytic efficiency for warfarin metabolism to P450 2C19.

作者信息

Jung F, Griffin K J, Song W, Richardson T H, Yang M, Johnson E F

机构信息

Department of Molecular and Experimental Medicine, The Scripps Research Institute, La Jolla, California 92037, USA.

出版信息

Biochemistry. 1998 Nov 17;37(46):16270-9. doi: 10.1021/bi981704c.

DOI:10.1021/bi981704c
PMID:9819219
Abstract

Human cytochrome P450s 2C9 and 2C19 metabolize many important drugs including tolbutamide, phenytoin, and (S)-warfarin. Although they differ at only 43 of 490 amino acids, sulfaphenazole (SFZ) is a potent and selective inhibitor of P450 2C9 with an IC50 and a spectrally determined binding constant, KS, of <1 microM. P450 2C19 is not affected by SFZ at concentrations up to 100 microM. A panel of CYP2C9/2C19 chimeric proteins was constructed in order to identify the sequence differences that underlie this difference in SFZ binding. Replacement of amino acids 227-338 in 2C19 with the corresponding region of 2C9 resulted in high-affinity SFZ binding (KS approximately 4 microM) that was not seen when a shorter fragment of 2C9 was substituted (227-282). However, replacement of amino acids 283-338 resulted in extremely low holoenzyme expression levels in Escherichia coli, indicating protein instability. A single mutation, E241K, which homology modeling indicated would restore a favorable charge pair interaction between K241 in helix G and E288 in helix I, led to successful expression of this chimera that exhibited a KS < 10 microM for SFZ. Systematic replacement of the remaining differing amino acids revealed that two amino acid substitutions in 2C19 (N286S, I289N) confer high-affinity SFZ binding (KS < 5 microM). When combined with a third substitution, E241K, the resulting 2C19 triple mutant exhibited a high cataltyic efficiency for warfarin metabolism with the relaxed stereo- and regiospecificity of 2C19 and a lower KM for (S)-warfarin metabolism (<10 microM) typical of 2C9.

摘要

人细胞色素P450 2C9和2C19可代谢许多重要药物,包括甲苯磺丁脲、苯妥英和(S)-华法林。尽管它们在490个氨基酸中仅有43个不同,但磺胺苯吡唑(SFZ)是一种强效且选择性的P450 2C9抑制剂,其IC50以及光谱测定的结合常数KS小于1微摩尔。在浓度高达100微摩尔时,P450 2C19不受SFZ影响。构建了一组CYP2C9/2C19嵌合蛋白,以确定导致SFZ结合差异的序列差异。用2C9的相应区域替换2C19中的氨基酸227 - 338,导致高亲和力的SFZ结合(KS约为4微摩尔),而当替换2C9的较短片段(227 - 282)时则未出现这种情况。然而,替换氨基酸283 - 338导致大肠杆菌中全酶表达水平极低,表明蛋白质不稳定。单个突变E241K,同源性建模表明该突变将恢复螺旋G中的K241与螺旋I中的E288之间有利的电荷对相互作用,从而成功表达了这种嵌合体,其对SFZ的KS < 10微摩尔。对其余不同氨基酸的系统替换表明,2C19中的两个氨基酸替换(N286S、I289N)赋予了高亲和力的SFZ结合(KS < 5微摩尔)。当与第三个替换E241K结合时,所得的2C19三重突变体对华法林代谢表现出高催化效率,具有2C19松弛的立体和区域特异性,以及2C9典型的较低的(S)-华法林代谢KM(<10微摩尔)。

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