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氰化物对前列腺素H合酶的几种作用中的定量相似性。

Quantitative similarities in the several actions of cyanide on prostaglandin H synthase.

作者信息

Kulmacz R J, Lands W E

出版信息

Prostaglandins. 1985 Feb;29(2):175-90. doi: 10.1016/0090-6980(85)90200-x.

Abstract

The effects of a heme ligand, cyanide, on pure ovine prostaglandin H synthase have been examined in detail as one approach to elucidating the role of the heme cofactor in cyclooxygenase and peroxidase catalysis by the synthase. Cyanide bound to the synthase heme with an affinity (Kd) of 0.19 mM, and inhibited the peroxidase activity of the synthase, with a KI value of 0.23 mM. Cyanide increased the sensitivity of the cyclooxygenase to inhibition by the peroxide scavenger, glutathione peroxidase. This increased sensitivity to inhibition reflected an increase in the level of peroxide required to activate the cyclooxygenase, from 21 nM in absence of cyanide to over 300 nM when 2.5 mM cyanide was present. The increase in peroxide activator requirement with increasing cyanide concentration closely paralleled the formation of the holoenzyme-cyanide complex. These effects of low levels of cyanide suggest that the heme prosthetic group of the synthase participates in the efficient activation of the cyclooxygenase by peroxide. Cyanide blocked the stimulation of cyclooxygenase velocity by phenol, but not the phenol-induced increase in overall oxygen consumption. This blockade by cyanide was noncompetitive with respect to phenol and was characterized by a KI of 4 mM. The higher KI value for this effect suggests that cyanide can also interact at a site other than the heme prosthetic group. The role of the heme prosthetic group in promoting efficient activation of the cyclooxygenase by peroxide appears to be central to the ability of the synthase to amplify the ambient peroxide concentration rapidly.

摘要

作为阐明血红素辅因子在前列腺素 H 合酶的环氧化酶和过氧化物酶催化中作用的一种方法,已详细研究了血红素配体氰化物对纯绵羊前列腺素 H 合酶的影响。氰化物以 0.19 mM 的亲和力(Kd)与合酶血红素结合,并抑制合酶的过氧化物酶活性,抑制常数(KI)值为 0.23 mM。氰化物增加了环氧化酶对过氧化物清除剂谷胱甘肽过氧化物酶抑制的敏感性。这种对抑制的敏感性增加反映了激活环氧化酶所需的过氧化物水平的增加,从无氰化物时的 21 nM 增加到存在 2.5 mM 氰化物时的超过 300 nM。随着氰化物浓度增加,过氧化物激活剂需求的增加与全酶 - 氰化物复合物的形成密切平行。低水平氰化物的这些作用表明,合酶的血红素辅基参与了过氧化物对环氧化酶的有效激活。氰化物阻断了苯酚对环氧化酶速度的刺激,但不阻断苯酚诱导的总耗氧量增加。氰化物的这种阻断作用相对于苯酚是非竞争性的,其抑制常数(KI)为 4 mM。这种作用的较高 KI 值表明,氰化物也可以在血红素辅基以外的位点相互作用。血红素辅基在促进过氧化物对环氧化酶的有效激活中的作用似乎是合酶快速放大周围过氧化物浓度能力的核心。

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