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细胞色素P-450同工酶/同工酶功能相互作用及NADPH-细胞色素P-450还原酶浓度作为华法林微粒体代谢的影响因素

Cytochrome P-450 isozyme/isozyme functional interactions and NADPH-cytochrome P-450 reductase concentrations as factors in microsomal metabolism of warfarin.

作者信息

Kaminsky L S, Guengerich F P

出版信息

Eur J Biochem. 1985 Jun 18;149(3):479-89. doi: 10.1111/j.1432-1033.1985.tb08950.x.

Abstract

The basis for our previous observations [Kaminsky, L.S., Guengerich, F.P., Dannan, G.A. & Aust, S.D. (1983) Arch. Biochem. Biophys. 225, 398-404] that rates of microsomal metabolism of warfarin were markedly less than the sum of rates of the reconstituted constituent isozymes of cytochrome P-450 has been investigated. Metabolism of warfarin to 4'-, 6-, 7-, 8-, and 10-hydroxywarfarin and dehydrowarfarin by highly purified rat liver cytochrome P-450 (P-450) isozymes reconstituted with NADPH-cytochrome P-450 reductase and by hepatic microsomes from variously pretreated rats was used to probe functional consequences of P-450 isozyme/isozyme interactions and of the effect of microsomal reductase concentrations. Binary mixtures of P-450 isozymes were reconstituted and the regioselectivity and stereoselectivity were used to probe metabolism by each individual isozyme. The isozymes specifically inhibited each other to variable extents and the order of inhibitory potency was: P-450UT-F greater than P-450PB-D greater than or equal to P-450UT-A greater than or equal to P-450BNF/ISF-G greater than P-450PB/PCN-E greater than P-450PB-B greater than or equal to P-450PB-C greater than or equal to P-450BNF-B. The inhibition, possibly a consequence of aggregation, explains the low rate of microsomal metabolism relative to the metabolic potential of the component P-450 isozymes. When purified reductase was added to microsomes it appeared to bind to microsomes at different sites from endogenous reductase and it enhanced warfarin hydroxylase activity only to a minor extent, thus possibly precluding low reductase concentrations from being a major factor in the relatively low rates of microsomal metabolism. Antibody to the reductase differentially inhibited microsomal metabolism of warfarin by the various P-450 isozymes. The results suggest that the reductase and P-450 isozymes may be located differently relative to one another in the various microsomal preparations.

摘要

我们之前的观察结果[卡明斯基,L.S.,根杰里希,F.P.,丹南,G.A.和奥斯特,S.D.(1983年)《生物化学与生物物理学报》225卷,398 - 404页]表明,华法林微粒体代谢速率明显低于细胞色素P - 450重组组成同工酶速率之和,对此我们进行了研究。通过用NADPH - 细胞色素P - 450还原酶重组的高度纯化大鼠肝细胞色素P - 450(P - 450)同工酶以及来自不同预处理大鼠的肝微粒体,将华法林代谢为4'-、6 -、7 -、8 -和10 -羟基华法林以及脱氢华法林,以此来探究P - 450同工酶/同工酶相互作用的功能后果以及微粒体还原酶浓度的影响。将P - 450同工酶的二元混合物进行重组,并利用区域选择性和立体选择性来探究每种单独同工酶的代谢情况。这些同工酶相互之间存在不同程度的特异性抑制,抑制效力顺序为:P - 450UT - F大于P - 450PB - D大于或等于P - 450UT - A大于或等于P - 4S0BNF/ISF - G大于P - 450PB/PCN - E大于P - 450PB - B大于或等于P - 450PB - C大于或等于P - 450BNF - B。这种抑制作用,可能是聚集的结果,解释了相对于组分P - 450同工酶的代谢潜力而言微粒体代谢速率较低的原因。当将纯化的还原酶添加到微粒体中时,它似乎与内源性还原酶在微粒体的不同位点结合,并且仅在较小程度上增强了华法林羟化酶活性,因此可能排除了低还原酶浓度是微粒体代谢速率相对较低的主要因素。还原酶抗体对不同P - 450同工酶的华法林微粒体代谢有不同程度的抑制作用。结果表明,在各种微粒体制剂中,还原酶和P - 450同工酶可能彼此相对定位不同。

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