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来自牛精囊微粒体的前列腺素内过氧化物合成酶。血红素和其他金属卟啉对其的失活与激活作用。

Prostaglandin endoperoxide synthetase from bovine vesicular gland microsomes. Inactivation and activation by heme and other metalloporphyrins.

作者信息

Ogino N, Ohki S, Yamamoto S, Hayaishi O

出版信息

J Biol Chem. 1978 Jul 25;253(14):5061-8.

PMID:97287
Abstract

Prostaglandin endoperoxide synthetase purified to apparent homogeneity from bovine vesicular gland microsomes contained iron far below the equimolar amount and essentially no heme. However, the enzyme required various metalloporphyrins including hematin or several hemoproteins such as hemoglobin. Preincubation of the enzyme with hematin or hemoglobin resulted in the loss of enzyme activity. The enzyme inactivation was protected by tryptophan or various other aromatic compounds. Furthermore, the simultaneous presence of tryptophan brought about activation of enzyme; namely, the enzyme preincubated with heme and tryptophan showed an almost full activity with a heme concentration in the reaction mixture far below the saturating level. Such inactivation and activation of the enzyme were also observed with manganese protoporphyrin. An identical heme requirement, heme-induced inactivation, and activation of the enzyme were observed in three types of reactions catalyzed by the enzyme: 1) bis-dioxygenation of 8,11,14-eicosatrienoic acid to produce prostaglandin G1, 2) 15-hydroperoxide cleavage of prostaglandin G1 to produce prostaglandin H1, and 3) guaiacol peroxidation. When heme was replaced by manganese protoporphyrin, the enzyme catalyzed only the bis-dioxygenation producing prostaglandin G1 and the activities of the latter two reactions were not detectable.

摘要

从牛精囊微粒体中纯化至表观均一的前列腺素内过氧化物合成酶所含铁远低于等摩尔量,且基本不含血红素。然而,该酶需要多种金属卟啉,包括血晶素或几种血红蛋白,如血红蛋白。该酶与血晶素或血红蛋白预温育会导致酶活性丧失。色氨酸或其他各种芳香族化合物可保护酶失活。此外,色氨酸的同时存在会使酶活化;即,与血红素和色氨酸预温育的酶在反应混合物中血红素浓度远低于饱和水平时仍表现出几乎完全的活性。用原卟啉锰也观察到了该酶的这种失活和活化现象。在该酶催化的三种类型反应中均观察到了相同的血红素需求、血红素诱导的失活以及酶的活化:1)8,11,14 - 二十碳三烯酸的双加氧反应生成前列腺素G1;2)前列腺素G1的15 - 氢过氧化物裂解反应生成前列腺素H1;3)愈创木酚过氧化反应。当血红素被原卟啉锰取代时,该酶仅催化生成前列腺素G1的双加氧反应,而后两种反应的活性无法检测到。

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