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细胞色素b5在CYP17A1介导的雄激素合成中作为氧化还原供体的证据。

Evidence that cytochrome b5 acts as a redox donor in CYP17A1 mediated androgen synthesis.

作者信息

Duggal Ruchia, Liu Yilin, Gregory Michael C, Denisov Ilia G, Kincaid James R, Sligar Stephen G

机构信息

Department of Biochemistry, University of Illinois Urbana-Champaign, Urbana, IL, United States.

Department of Chemistry, Marquette University, Milwaukee, WI, United States.

出版信息

Biochem Biophys Res Commun. 2016 Aug 19;477(2):202-8. doi: 10.1016/j.bbrc.2016.06.043. Epub 2016 Jun 10.

Abstract

Cytochrome P450 17A1 (CYP17A1) is an important drug target for castration resistant prostate cancer. It is a bi-functional enzyme, catalyzing production of glucocorticoid precursors by hydroxylation of pregnene-nucleus, and androgen biosynthesis by a second CC lyase step, at the expense of glucocorticoid production. Cytochrome b5 (cyt b5) is known to be a key regulator of the androgen synthesis reaction in vivo, by a mechanism that is not well understood. Two hypotheses have been proposed for the mechanism by which cyt b5 increases androgen biosynthesis. Cyt b5 could act as an allosteric effector, binding to CYP17A1 and either changing its selective substrate affinity or altering the conformation of the P450 to increase the catalytic rate or decrease unproductive uncoupling channels. Alternatively, cyt b5 could act as a redox donor for supply of the second electron in the P450 cycle, reducing the oxyferrous complex to form the reactive peroxo-intermediate. To understand the mechanism of lyase enhancement by cyt b5, we generated a redox-inactive form of cyt b5, in which the heme is replaced with a Manganese-protoporphyrin IX (Mn-b5), and investigated enhancement of androgen producing lyase reaction by CYP17A1. Given the critical significance of a stable membrane anchor for all of the proteins involved and the need for controlled stoichiometric ratios, we employed the Nanodisc system for this study. The redox inactive form was observed to have no effect on the lyase reaction, while reactions with the normal heme-iron containing cyt b5 were enhanced ∼5 fold as compared to reactions in the absence of cyt b5. We also performed resonance Raman measurements on ferric CYP17A1 bound to Mn-b5. Upon addition of Mn-b5 to Nanodisc reconstituted CYP17A1, we observed clear evidence for the formation of a b5-CYP17A1 complex, as noted by changes in the porphyrin modes and alteration in the proximal FeS vibrational frequency. Thus, although Mn-b5 binds to CYP17A1, it is unable to enhance the lyase reaction, strongly suggesting that cyt b5 has a redox effector role in enhancement of the CYP17A1 mediated lyase reaction necessary for androgen synthesis.

摘要

细胞色素P450 17A1(CYP17A1)是去势抵抗性前列腺癌的一个重要药物靶点。它是一种双功能酶,通过孕烯核的羟基化催化糖皮质激素前体的生成,并通过第二步CC裂解酶步骤催化雄激素生物合成,同时减少糖皮质激素的生成。细胞色素b5(cyt b5)已知是体内雄激素合成反应的关键调节因子,但其机制尚不清楚。关于cyt b5增加雄激素生物合成的机制,已提出两种假说。cyt b5可能作为变构效应剂,与CYP17A1结合,要么改变其选择性底物亲和力要么改变P450的构象,以提高催化速率或减少非生产性解偶联通道。或者,cyt b5可能作为氧化还原供体,在P450循环中提供第二个电子,将氧亚铁复合物还原以形成反应性过氧中间体。为了理解cyt b5增强裂解酶活性的机制,我们生成了一种氧化还原无活性形式的cyt b5,其中血红素被锰原卟啉IX(Mn-b5)取代,并研究了CYP17A1对雄激素生成裂解酶反应的增强作用。鉴于稳定的膜锚定对所有相关蛋白质的关键重要性以及对可控化学计量比的需求,我们在本研究中采用了纳米圆盘系统。观察到氧化还原无活性形式对裂解酶反应没有影响,而与含有正常血红素铁的cyt b5的反应相比,在没有cyt b5的反应中增强了约5倍。我们还对与Mn-b5结合的铁离子形式的CYP17A1进行了共振拉曼测量。在向纳米圆盘重构的CYP17A1中加入Mn-b5后,我们观察到形成b5-CYP17A1复合物的明确证据,如卟啉模式的变化和近端FeS振动频率的改变所示。因此,虽然Mn-b5与CYP17A1结合,但它无法增强裂解酶反应,这强烈表明cyt b5在增强雄激素合成所需的CYP17A1介导的裂解酶反应中具有氧化还原效应作用。

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