首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Characterization of heme environment and mechanism of peroxide bond cleavage in human prostacyclin synthase
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Characterization of heme environment and mechanism of peroxide bond cleavage in human prostacyclin synthase

机译:人前列环素合酶中血红素环境的特征及过氧化物键的裂解机理

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Prostacyclin is a potent mediator of vasodilation and anti-platelet aggregation. It is synthesized from prostaglandin H-2 by prostacyclin synthase (PGIS), a member of Family 8 in the cytochrome P450 superfamily. Unlike most P450s, which require exogenous reducing equivalents and an oxygen molecule for mono-oxygenation, PGIS catalyzes an isomerization with an initial step of endoperoxide bond cleavage of prostaglandin H-2 (PGH(2)). The low abundance of PGIS in natural tissues necessitates heterologous expression for studies of structure/function relationships and reaction mechanism. We report here a high-yield prokaryotic system for expression of enzymatically active human PGIS. The PGIS cDNA is modified by replacing the hydrophobic amino-terminal sequence with the more hydrophilic amino-terminal sequence from P450 2C5 and by adding a four-histidine tag at the carboxyl terminus. The resulting recombinant PGIS associates with host cell membranes and was purified to electrophoretic homogeneity by nickel affinity, hydroxyapatite and CM Sepharose column chromatography. The recombinant PGIS, with a heme:protein ratio of 0.9:1, catalyzes prostacyclin formation at a K-m of 13.3 mu M PGH(2) and a V-max 980 per min. The dithionite-reduced PGIS binds CO with an on-rate of 5.6 x 10(5) M-1 s(-1)and an off-rate of 15 s(-1). The ferrous-CO complex of PGIS is very short-lived and decays at a rate of 0.7 s(-1). Spectral binding assays showed that imidazole binds weakly to PGIS (K-d similar to 0.5 mM) but clotrimazole, a bulky and rigid imidazole derivative, binds strongly (Kd similar to 1 mu M). The transient nature of the CO complex and the weak imidazole binding seem to support an earlier proposal that PGIS active site has a limited space, but the tight binding of clotrimazole argues against this view. It appears that the heme distal pocket of PGIS is fairly adaptable to ligands of various structures. UV-visible absorption, magnetic circular dichroism and electron paramagnetic resonance spectra indicate that PGIS has a typical low-spin heme with a hydrophobic active site. PGIS catalyzes homolytic scission of the peroxide bond of a test substrate, 10-hydroperoxyoctadeca-8,12-dienoic acid, accompanied by formation of a heme intermediate with a Compound II-like optical spectrum. (c) 2005 Elsevier B.V. All rights reserved.
机译:前列环素是血管舒张和抗血小板聚集的有效介体。它是由前列腺素H-2通过前列腺素合酶(PGIS)(细胞色素P450超家族的8族成员)合成的。与大多数需要外源还原当量和一个氧分子进行单加氧的P450不同,PGIS催化前列腺素H-2(PGH(2))的内过氧化物键裂解的初始步骤催化异构化。 PGIS在自然组织中的丰度低,因此需要异源表达来研究结构/功能关系和反应机理。我们在这里报告了高表达酶活性人PGIS的原核生物系统。通过将疏水性氨基末端序列替换为来自P450 2C5的更具亲水性的氨基末端序列,并在羧基末端添加四组氨酸标签,可以对PGIS cDNA进行修饰。所得重组PGIS与宿主细胞膜结合,并通过镍亲和力,羟基磷灰石和CM Sepharose柱层析纯化至电泳均一。血红素:蛋白质比率为0.9:1的重组PGIS在K-m为13.3μM PGH(2)和V-max 980每分钟时催化前列环素的形成。连二亚硫酸盐还原的PGIS以5.6 x 10(5)M-1 s(-1)的接通速率和15 s(-1)的断开速率结合CO。 PGIS的铁-一氧化碳络合物寿命很短,并且以0.7 s(-1)的速率衰减。光谱结合分析表明,咪唑与PGIS的结合较弱(K-d类似于0.5 mM),而克霉唑(一种体积大且刚性的咪唑衍生物)却与GIS的结合力强(Kd类似于1μM)。 CO复合物的短暂性质和弱的咪唑结合似乎支持了较早的提议,即PGIS活性位点空间有限,但克霉唑的紧密结合反对这一观点。看来,PGIS的血红素远端袋相当适合各种结构的配体。紫外可见吸收,磁性圆二色性和电子顺磁共振光谱表明,PGIS具有典型的低自旋血红素和疏水活性位点。 PGIS催化测试底物10-hydroperoxyoctadeca-8,12-dienoic acid的过氧化物键的均裂,同时形成带有类化合物II光谱的血红素中间体。 (c)2005 Elsevier B.V.保留所有权利。

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