Hanna I H, Kim M S, Guengerich F P
Department of Biochemistry and Center in Molecular Toxicology, Vanderbilt University School of Medicine, Nashville, Tennessee 37232, USA.
Arch Biochem Biophys. 2001 Sep 15;393(2):255-61. doi: 10.1006/abbi.2001.2510.
Cytochrome P450 (P450) 2D6 is a polymorphic human enzyme involved in the oxidation of >50 drugs, most of which contain a basic nitrogen. In confirmation of previous work by others, substitutions at Asp301 decreased rates of substrate oxidation by P450 2D6. An anionic residue (Asp, Glu) at this position was found to be important in proper protein folding and heme incorporation, and positively charged residues were particularly disruptive in bacterial and also in baculovirus expression systems. Truncation of 20 N-terminal amino acids had no significant effect on catalytic activity except to attenuate P450 2D6 interaction with membranes and NADPH-P450 reductase. The truncation of the N-terminus increased the level of bacterial expression of wild-type P450 2D6 (Asp301) but markedly reduced expression of all codon 301 mutants, including Glu301. Reduction of ferric P450 2D6 by NADPH-P450 reductase was enhanced in the presence of the prototypic substrate bufuralol. Bacterial flavodoxin, an NADPH-P450 reductase homolog, binds tightly to P450 2D6 but is inefficient in electron transfer to the heme. These results collectively indicate that the acidic residue at position 301 in P450 2D6 has a structural role in addition to any in substrate binding and that the N-terminus of P450 2D6 is relatively unimportant to catalytic activity beyond a role in facilitating binding to NADPH-P450 reductase.
细胞色素P450(P450)2D6是一种多态性人类酶,参与50多种药物的氧化,其中大多数药物含有碱性氮。正如其他人先前工作所证实的那样,Asp301处的取代降低了P450 2D6的底物氧化速率。发现该位置的阴离子残基(Asp、Glu)对蛋白质正确折叠和血红素掺入很重要,而带正电荷的残基在细菌和杆状病毒表达系统中尤其具有破坏性。截断20个N端氨基酸对催化活性没有显著影响,只是减弱了P450 2D6与膜和NADPH - P450还原酶的相互作用。N端截断增加了野生型P450 2D6(Asp301)的细菌表达水平,但显著降低了所有301密码子突变体的表达,包括Glu301。在原型底物布非洛尔存在的情况下,NADPH - P450还原酶对三价铁P450 2D6的还原作用增强。细菌黄素氧还蛋白是一种NADPH - P450还原酶同系物,与P450 2D6紧密结合,但向血红素的电子传递效率低下。这些结果共同表明,P450 2D6中301位的酸性残基除了在底物结合方面发挥作用外,还具有结构作用,并且P450 2D6的N端对催化活性相对不重要,除了在促进与NADPH - P450还原酶结合方面发挥作用外。