蓝藻集胞藻PCC 6803的ho2基因表达的蛋白质是一种真正的血红素加氧酶。血红素与酶复合物的特性。

Protein expressed by the ho2 gene of the cyanobacterium Synechocystis sp. PCC 6803 is a true heme oxygenase. Properties of the heme and enzyme complex.

作者信息

Zhang Xuhong, Migita Catharina T, Sato Michihiko, Sasahara Masanao, Yoshida Tadashi

机构信息

Department of Biochemistry, Yamagata University School of Medicine, Japan.

出版信息

FEBS J. 2005 Feb;272(4):1012-22. doi: 10.1111/j.1742-4658.2004.04535.x.

Abstract

Two isoforms of a heme oxygenase gene, ho1 and ho2, with 51% identity in amino acid sequence have been identified in the cyanobacterium Synechocystis sp. PCC 6803. Isoform-1, Syn HO-1, has been characterized, while isoform-2, Syn HO-2, has not. In this study, a full-length ho2 gene was cloned using synthetic DNA and Syn HO-2 was demonstrated to be highly expressed in Escherichia coli as a soluble, catalytically active protein. Like Syn HO-1, the purified Syn HO-2 bound hemin stoichiometrically to form a heme-enzyme complex and degraded heme to biliverdin IXalpha, CO and iron in the presence of reducing systems such as NADPH/ferredoxin reductase/ferredoxin and sodium ascorbate. The activity of Syn HO-2 was found to be comparable to that of Syn HO-1 by measuring the amount of bilirubin formed. In the reaction with hydrogen peroxide, Syn HO-2 converted heme to verdoheme. This shows that during the conversion of hemin to alpha-meso-hydroxyhemin, hydroperoxo species is the activated oxygen species as in other heme oxygenase reactions. The absorption spectrum of the hemin-Syn HO-2 complex at neutral pH showed a Soret band at 412 nm and two peaks at 540 nm and 575 nm, features observed in the hemin-Syn HO-1 complex at alkaline pH, suggesting that the major species of iron(III) heme iron at neutral pH is a hexa-coordinate low spin species. Electron paramagnetic resonance (EPR) revealed that the iron(III) complex was in dynamic equilibrium between low spin and high spin states, which might be caused by the hydrogen bonding interaction between the distal water ligand and distal helix components. These observations suggest that the structure of the heme pocket of the Syn HO-2 is different from that of Syn HO-1.

摘要

在蓝藻集胞藻PCC 6803中已鉴定出一种血红素加氧酶基因的两种同工型,即ho1和ho2,它们的氨基酸序列同一性为51%。同工型1(Syn HO-1)已得到表征,而同工型2(Syn HO-2)尚未得到表征。在本研究中,使用合成DNA克隆了全长ho2基因,并证明Syn HO-2在大肠杆菌中作为一种可溶性、具有催化活性的蛋白质高度表达。与Syn HO-1一样,纯化的Syn HO-2以化学计量方式结合血红素形成血红素-酶复合物,并在存在诸如NADPH/铁氧化还原蛋白还原酶/铁氧化还原蛋白和抗坏血酸钠等还原系统的情况下将血红素降解为胆绿素IXα、CO和铁。通过测量形成的胆红素量发现,Syn HO-2的活性与Syn HO-1相当。在与过氧化氢的反应中,Syn HO-2将血红素转化为高铁血红素。这表明在血红素转化为α-中羟基血红素的过程中,氢过氧物种是与其他血红素加氧酶反应一样的活性氧物种。中性pH下血红素-Syn HO-2复合物的吸收光谱在412 nm处显示一个Soret带,在540 nm和575 nm处有两个峰,这些特征在碱性pH下的血红素-Syn HO-1复合物中也有观察到,这表明中性pH下铁(III)血红素铁的主要物种是六配位低自旋物种。电子顺磁共振(EPR)显示铁(III)复合物处于低自旋和高自旋状态之间的动态平衡,这可能是由远端水配体和远端螺旋成分之间的氢键相互作用引起的。这些观察结果表明,Syn HO-2的血红素口袋结构与Syn HO-1不同。

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