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前列腺素H合酶。酪氨酸自由基形成动力学和环氧化酶催化动力学。

Prostaglandin H synthase. Kinetics of tyrosyl radical formation and of cyclooxygenase catalysis.

作者信息

Tsai A L, Palmer G, Kulmacz R J

机构信息

Department of Internal Medicine, University of Texas Health Science Center, Houston 77030.

出版信息

J Biol Chem. 1992 Sep 5;267(25):17753-9.

PMID:1325448
Abstract

Hydroperoxides are known to induce the formation of tyrosyl free radicals in prostaglandin (PG) H synthase. To evaluate the role of these radicals in cyclooxygenase catalysis we have analyzed the temporal correlation between radical formation and substrate conversion during reaction of the synthase with arachidonic acid. PGH synthase reacted with equimolar levels of arachidonic acid generated sequentially the wide doublet (34 G peak-to-trough) and wide singlet (32 G peak-to-trough) tyrosyl radical signals previously reported for reaction with hydroperoxide. The kinetics of formation and decay of the doublet signal corresponded reasonably well with those of cyclooxygenase activity. However, the wide singlet free radical signal accumulated only after prostaglandin formation had ceased, indicating that the wide singlet is not likely to be an intermediate in cyclooxygenase catalysis. When PGH synthase was reacted with 25 equivalents of arachidonic acid, the wide doublet and wide singlet radical signals were not observed. Instead, a narrower singlet (24 G peak-to-trough) tyrosyl radical was generated, similar to that found upon reaction of indomethacin-treated synthase with hydroperoxide. Only about 11 mol of prostaglandin were formed per mol of synthase before complete self-inactivation of the cyclooxygenase, far less than the 170 mol/mol synthase produced under standard assay conditions. Phenol (0.5 mM) increased the extent of cyclooxygenase reaction by only about 50%, in contrast to the 460% stimulation seen under standard assay conditions. These results indicate that the narrow singlet tyrosyl radical observed in the reaction with high levels of arachidonate in this study and by Lassmann et al. (Lassmann, G., Odenwaller, R., Curtis, J.F., DeGray, J.A., Mason, R.P., Marnett, L.J., and Eling, T.E. (1991) J. Biol. Chem. 266, 20045-20055) is associated with abnormal cyclooxygenase activity and is probably nonphysiological. In titrations of the synthase with arachidonate or with hydroperoxide, the loss of enzyme activity and destruction of heme were linear functions of the amount of titrant added. Complete inactivation of cyclooxygenase activity was found at about 10 mol of arachidonate, ethyl hydrogen peroxide, or hydrogen peroxide per mol of synthase heme; maximal bleaching of the heme Soret absorbance peak was found with 10 mol of ethyl hydroperoxide or 20 mol of either arachidonate or hydrogen peroxide per mol of synthase heme. The peak concentration of the wide doublet tyrosyl radical did not change appreciably with increased levels of ethyl hydroperoxide. In contrast, higher levels of hydroperoxide gave higher levels of the wide singlet radical species, in parallel with enzyme inactivation.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

已知氢过氧化物可诱导前列腺素(PG)H合酶中酪氨酸自由基的形成。为了评估这些自由基在环氧化酶催化中的作用,我们分析了该合酶与花生四烯酸反应过程中自由基形成与底物转化之间的时间相关性。PGH合酶与等摩尔水平的花生四烯酸反应,依次产生了先前报道的与氢过氧化物反应时的宽双峰(34 G峰 - 谷)和宽单峰(32 G峰 - 谷)酪氨酸自由基信号。双峰信号的形成和衰减动力学与环氧化酶活性的动力学相当吻合。然而,宽单峰自由基信号仅在前列腺素形成停止后才积累,这表明宽单峰不太可能是环氧化酶催化的中间体。当PGH合酶与25当量的花生四烯酸反应时,未观察到宽双峰和宽单峰自由基信号。相反,产生了一个较窄的单峰(24 G峰 - 谷)酪氨酸自由基,类似于吲哚美辛处理的合酶与氢过氧化物反应时发现的自由基。在环氧化酶完全自失活之前,每摩尔合酶仅形成约11摩尔的前列腺素,远低于标准测定条件下产生的170摩尔/摩尔合酶。苯酚(0.5 mM)仅使环氧化酶反应程度增加约50%,而在标准测定条件下观察到的刺激为460%。这些结果表明,在本研究以及Lassmann等人(Lassmann, G., Odenwaller, R., Curtis, J.F., DeGray, J.A., Mason, R.P., Marnett, L.J., and Eling, T.E. (1991) J. Biol. Chem. 266, 20045 - 20055)的研究中,与高水平花生四烯酸反应时观察到的窄单峰酪氨酸自由基与异常的环氧化酶活性相关,可能是非生理性的。在用花生四烯酸或氢过氧化物滴定合酶时,酶活性的丧失和血红素的破坏是所加滴定剂用量的线性函数。在每摩尔合酶血红素中加入约10摩尔的花生四烯酸、乙基过氧化氢或过氧化氢时,环氧化酶活性完全失活;在每摩尔合酶血红素中加入10摩尔的乙基过氧化氢或20摩尔的花生四烯酸或过氧化氢时,血红素Soret吸收峰出现最大程度的漂白。宽双峰酪氨酸自由基的峰值浓度不会随着乙基过氧化氢水平升高而明显变化。相反,较高水平的氢过氧化物会产生较高水平的宽单峰自由基物种,与酶失活情况平行。(摘要截于400字)

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