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P450-P450 相互作用在 CYP3A4 变构中的关键作用:以 α-萘黄酮为例。

Pivotal role of P450-P450 interactions in CYP3A4 allostery: the case of α-naphthoflavone.

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California San Diego, La Jolla, CA 92093-0703, USA.

出版信息

Biochem J. 2013 Jul 15;453(2):219-30. doi: 10.1042/BJ20130398.

Abstract

We investigated the relationship between oligomerization of CYP3A4 (cytochrome P450 3A4) and its response to ANF (α-naphthoflavone), a prototypical heterotropic activator. The addition of ANF resulted in over a 2-fold increase in the rate of CYP3A4-dependent debenzylation of 7-BFC [7-benzyloxy-4-(trifluoromethyl)coumarin] in HLM (human liver microsomes), but failed to produce activation in BD Supersomes or Baculosomes containing recombinant CYP3A4 and NADPH-CPR (cytochrome P450 reductase). However, incorporation of purified CYP3A4 into Supersomes containing only recombinant CPR reproduced the behaviour observed with HLM. The activation in this system was dependent on the surface density of the enzyme. Although no activation was detectable at an L/P (lipid/P450) ratio ≥750, it reached 225% at an L/P ratio of 140. To explore the relationship between this effect and CYP3A4 oligomerization, we probed P450-P450 interactions with a new technique that employs LRET (luminescence resonance energy transfer). The amplitude of LRET in mixed oligomers of the haem protein labelled with donor and acceptor fluorophores exhibited a sigmoidal dependence on the surface density of CYP3A4 in Supersomes™. The addition of ANF eliminated this sigmoidal character and increased the degree of oligomerization at low enzyme concentrations. Therefore the mechanisms of CYP3A4 allostery with ANF involve effector-dependent modulation of P450-P450 interactions.

摘要

我们研究了 CYP3A4(细胞色素 P450 3A4)寡聚化与其对 ANF(α-萘黄酮)反应之间的关系,ANF 是一种典型的变构激活剂。加入 ANF 可使 HLM(人肝微粒体)中 CYP3A4 依赖性去苄基化 7-BFC(7-苄氧基-4-(三氟甲基)香豆素)的速率增加 2 倍以上,但在含有重组 CYP3A4 和 NADPH-CPR(细胞色素 P450 还原酶)的 BD Supersomes 或 Baculosomes 中均未产生激活作用。然而,将纯化的 CYP3A4 掺入仅含有重组 CPR 的 Supersomes 中,可重现与 HLM 观察到的行为。该系统中的激活依赖于酶的表面密度。尽管在 L/P(脂质/P450)比≥750 时检测不到激活,但在 L/P 比为 140 时达到 225%。为了探讨这种效应与 CYP3A4 寡聚化之间的关系,我们使用一种新的技术来探测 P450-P450 相互作用,该技术采用 LRET(荧光共振能量转移)。用供体和受体荧光团标记血红素蛋白的混合寡聚物中的 LRET 幅度与 Supersomes™中的 CYP3A4 表面密度呈 S 型依赖性。加入 ANF 消除了这种 S 型特征,并在低酶浓度下增加了寡聚化程度。因此,CYP3A4 与 ANF 的变构作用机制涉及效应物依赖性调节 P450-P450 相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d6f/3893034/4aed4b88ee9c/nihms545009f1.jpg

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