Ohki S, Ogino N, Yamamoto S, Hayaishi O
J Biol Chem. 1979 Feb 10;254(3):829-36.
The highly purified prostaglandin endoperoxide synthetase from bovine vesicular gland microsomes had two still unresolved enzyme activities; the oxygenative cyclization of 8,11,14-eicosatrienoic acid to produce prostaglandin G1 and the conversion of the 15-hydro-peroxide of prostaglandin G1 to a 15-hydroxyl group, producing prostaglandin H1. The latter enzymatic reaction required heme and was stimulated by a variety of compounds, including tryptophan, epinephrine, and guaiacol, but not by glutathione. A peroxidatic dehydrogenation was demonstrated with epinephrine or guaiacol in the presence of various hydroperoxides, including hydrogen peroxide and prostaglandin G1. Higher activity and affinity were observed with the 15-hydroperoxide of eicosapolyenoic acid, especially those with the prostaglandin structure. Both the dehydrogenation of epinephrine or guaiacol and the 15-hydroperoxide reduction of prostaglandin G1 were demonstrated in nearly stoichiometric quantities. With tryptophan, however, such a stoichiometric transformation was not observed. The peroxidase activity as followed with guaiacol and hydrogen peroxide and the tryptophan-stimulated conversion of prostaglandin G1 to H1 were not dissociable as examined by isoelectric focusing, heat treatment, pH profile, and heme specificity. The results suggest that the peroxidase with a broad substrate specificity is an integral part of prostaglandin endoperoxide synthetase which is responsible for the conversion of prostaglandin G1 to H1.
从牛精囊微粒体中高度纯化的前列腺素内过氧化物合成酶具有两种尚未解决的酶活性;将8,11,14-二十碳三烯酸进行氧化环化以生成前列腺素G1,以及将前列腺素G1的15-氢过氧化物转化为15-羟基,生成前列腺素H1。后一种酶促反应需要血红素,并受到多种化合物的刺激,包括色氨酸、肾上腺素和愈创木酚,但不受谷胱甘肽的刺激。在存在各种氢过氧化物(包括过氧化氢和前列腺素G1)的情况下,用肾上腺素或愈创木酚证明了过氧化物脱氢作用。在二十碳多烯酸的15-氢过氧化物中观察到更高的活性和亲和力,尤其是那些具有前列腺素结构的。肾上腺素或愈创木酚的脱氢作用以及前列腺素G1的15-氢过氧化物还原作用均以接近化学计量的量得到证明。然而,对于色氨酸,未观察到这种化学计量的转化。通过等电聚焦、热处理、pH曲线和血红素特异性检查发现,用愈创木酚和过氧化氢测定的过氧化物酶活性以及色氨酸刺激的前列腺素G1向H1的转化是不可分离的。结果表明,具有广泛底物特异性的过氧化物酶是前列腺素内过氧化物合成酶的一个组成部分,负责前列腺素G1向H1的转化。