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泛醇的抑制类似物对酵母细胞色素bc1复合物具有反协同作用。泛醇氧化的交替半位点机制的证据。

Inhibitory analogs of ubiquinol act anti-cooperatively on the Yeast cytochrome bc1 complex. Evidence for an alternating, half-of-the-sites mechanism of ubiquinol oxidation.

作者信息

Gutierrez-Cirlos Emma Berta, Trumpower Bernard L

机构信息

Department of Biochemistry, Dartmouth Medical School, Hanover, New Hampshire 03755, USA.

出版信息

J Biol Chem. 2002 Jan 11;277(2):1195-202. doi: 10.1074/jbc.M109097200. Epub 2001 Nov 7.

Abstract

The cytochrome bc(1) complex is a dimeric enzyme that links electron transfer from ubiquinol to cytochrome c by a protonmotive Q cycle mechanism in which ubiquinol is oxidized at one center in the enzyme, referred to as center P, and ubiquinone is re-reduced at a second center, referred to as center N. To understand better the mechanism of ubiquinol oxidation, we have examined the interaction of several inhibitory analogs of ubiquinol with the yeast cytochrome bc(1) complex. Stigmatellin and methoxyacrylate stilbene, two inhibitors that block ubiquinol oxidation at center P, inhibit the yeast enzyme with a stoichiometry of 0.5 per bc(1) complex, indicating that one molecule of inhibitor is sufficient to fully inhibit the dimeric enzyme. This stoichiometry was obtained when the inhibitors were titrated in cytochrome c reductase assays and in reactions of quinol with enzyme in which the inhibitors block pre-steady state reduction of cytochrome b. As an independent measure of inhibitor binding, we titrated the red shift in the optical spectrum of ferrocytochrome b with methoxyacrylate stilbene and thus confirmed the results of the inhibition of activity titrations. The titration curves also indicate that the binding is anti-cooperative, in that a second molecule of inhibitor binds with much lower affinity to a dimer in which an inhibitor molecule is already bound. Because these inhibitors bind to the ubiquinol oxidation site in the bc(1) complex, we propose that the yeast cytochrome bc(1) complex oxidizes ubiquinol by an alternating, half-of-the-sites mechanism.

摘要

细胞色素bc(1)复合物是一种二聚体酶,它通过质子动力Q循环机制将电子从泛醇传递给细胞色素c,在该机制中,泛醇在酶的一个中心(称为中心P)被氧化,而泛醌在第二个中心(称为中心N)被重新还原。为了更好地理解泛醇氧化的机制,我们研究了几种泛醇抑制类似物与酵母细胞色素bc(1)复合物的相互作用。鱼藤酮和甲氧基丙烯酸酯芪是两种在中心P阻断泛醇氧化的抑制剂,它们以每bc(1)复合物0.5的化学计量比抑制酵母酶,这表明一个抑制剂分子就足以完全抑制二聚体酶。当在细胞色素c还原酶测定以及抑制剂阻断细胞色素b预稳态还原的泛醇与酶的反应中对抑制剂进行滴定时,得到了这种化学计量比。作为抑制剂结合的一种独立测量方法,我们用甲氧基丙烯酸酯芪滴定亚铁细胞色素b光谱中的红移,从而证实了活性滴定抑制的结果。滴定曲线还表明结合是反协同的,即第二个抑制剂分子与已经结合了一个抑制剂分子的二聚体结合时亲和力要低得多。因为这些抑制剂与bc(1)复合物中的泛醇氧化位点结合,我们提出酵母细胞色素bc(1)复合物通过交替的半位点机制氧化泛醇。

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