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Influence of phenylalanine-481 substitutions on the catalytic activity of cytochrome P450 2D6.

机译:苯丙氨酸481取代对细胞色素P450 2D6催化活性的影响。

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摘要

Homology models of the active site of cytochrome P450 2D6 (CYP2D6) have identified phenylalanine 481 (Phe(481)) as a putative ligand-binding residue, its aromatic side chain being potentially capable of participating in pi-pi interactions with the benzene ring of ligands. We have tested this hypothesis by replacing Phe(481) with tyrosine (Phe(481)-->Tyr), a conservative substitution, and with leucine (Phe(481)-->Leu) or glycine (Phe(481)-->Gly), two non-aromatic residues, and have compared the properties of the wild-type and mutant enzymes in microsomes prepared from yeast cells expressing the appropriate cDNA-derived protein. The Phe(481)-->Tyr substitution did not alter the kinetics [K(m) (microM) and V(max) (pmol/min per pmol) respectively] of oxidation of S-metoprolol (27; 4.60), debrisoquine (46; 2.46) or dextromethorphan (2; 8.43) relative to the respective wild-type values [S-metoprolol (26; 3.48), debrisoquine (51; 3.20) and dextromethorphan (2; 8.16)]. The binding capacities [K(s) (microM)] of a range of CYP2D6 ligands to the Phe(481)-->Tyr enzyme (S-metoprolol, 22.8; debrisoquine, 12.5; dextromethorphan, 2.3; quinidine, 0.13) were also similar to those for the wild-type enzyme (S-metoprolol, 10.9; debrisoquine, 8.9; dextromethorphan, 3.1; quinidine, 0.10). In contrast, the Phe(481)-->Leu and Phe(481)-->Gly substitutions increased significantly (3-16-fold) the K(m) values of oxidation of the three substrates [S-metoprolol (120-124 microM), debrisoquine (152-184 microM) and dextromethorphan (20-31 microM)]. Similarly, the K(s) values of the ligands to Phe(481)-->Leu and Phe(481)-->Gly mutants were also increased 3 to 10-fold (S-metoprolol, 33.2-41.9 microM; debrisoquine, 85-90 microM; dextromethorphan, 15.7-18.8 microM; quinidine 0.35-0.53 microM). However, contrary to a recent proposal that Phe(481) has the dominant role in the binding of substrates that undergo CYP2D6-mediated N-dealkylation routes of metabolism, the Phe(481)-->Gly substitution did not substantially decrease the capacity of the enzyme to N-deisopropylate metoprolol (wild-type, 1.12 pmol/min per pmol of P450; Phe(481)-->Gly, 0.71), whereas an Asp(301)-->Gly substitution decreased the N-dealkylation reaction by 95% of the wild-type rate. Overall, our results are consistent with the proposal that Phe(481) is a ligand-binding residue in the active site of CYP2D6 and that the residue interacts with ligands via a pi-pi interaction between its phenyl ring and the aromatic moiety of the ligand. However, the relative importance of Phe(481) in binding is ligand-dependent; furthermore, its importance is secondary to that of Asp(301). Finally, contrary to predictions of a recent homology model, Phe(481) does not seem to have a primary role in CYP2D6-mediated N-dealkylation.
机译:细胞色素P450 2D6(CYP2D6)活性位点的同源性模型已确定苯丙氨酸481(Phe(481))为推定的配体结合残基,其芳香族侧链潜在地能够参与与P450 2D6苯环的pi-pi相互作用。配体。我们通过保守替代用酪氨酸(Phe(481)-> Tyr)和亮氨酸(Phe(481)-> Leu)或甘氨酸(Phe(481)- > Gly),这是两个非芳香族残基,并比较了从表达适当cDNA衍生蛋白的酵母细胞制备的微粒体中野生型和突变酶的特性。 Phe(481)-> Tyr取代不会改变S-美托洛尔(27; 4.60),溴异喹的氧化动力学[分别为K(m)(microM)和V(max)(pmol / min每pmol)] (46; 2.46)或右美沙芬(2; 8.43)相对于相应的野生型值[S-美托洛尔(26; 3.48),地溴异喹(51; 3.20)和右美沙芬(2; 8.16)]。一系列CYP2D6配体与Phe(481)-> Tyr酶(S-美托洛尔,22.8;地异喹啉,12.5;右美沙芬,2.3;奎尼丁,0.13)的结合能力[K(s(microM)]]与野生型酶类似(S-美托洛尔,10.9;地溴异喹,8.9;右美沙芬,3.1;奎尼丁,0.10)。相反,Phe(481)-> Leu和Phe(481)-> Gly取代显着增加(3-16-倍)三种底物[S-美托洛尔(120- 124 microM),地溴异喹(152-184 microM)和右美沙芬(20-31 microM)]。同样,Phe(481)-> Leu和Phe(481)-> Gly突变体的配体的K(s)值也增加了3至10倍(S-美托洛尔,33.2-41.9 microM; debrisoquine, 85-90 microM;右美沙芬,15.7-18.8 microM;奎尼丁0.35-0.53 microM)。然而,与最近的一项提议相反,即Phe(481)在经历CYP2D6介导的N-去烷基化代谢途径的底物的结合中起主要作用,Phe(481)-> Gly取代并未显着降低Phe(481)的能力。 N-去异丙基美托洛尔的酶(野生型,每pmol P450 1.12 pmol / min; Phe(481)-> Gly,0.71),而Asp(301)-> Gly取代会降低N-脱烷基反应达到野生型率的95%。总体而言,我们的结果与以下提议相符:Phe(481)是CYP2D6活性位点的配体结合残基,并且该残基通过其苯环与配体的芳族部分之间的pi-pi相互作用与配体相互作用。但是,Phe(481)在结合中的相对重要性取决于配体。此外,它的重要性仅次于Asp(301)。最后,与最近同源模型的预测相反,Phe(481)在CYP2D6介导的N-脱烷基反应中似乎没有主要作用。

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