Zhang Xuhong, Sato Michihiko, Sasahara Masanao, Migita Catharina T, Yoshida Tadashi
Department of Biochemistry, Yamagata University School of Medicine, Japan.
Eur J Biochem. 2004 May;271(9):1713-24. doi: 10.1111/j.1432-1033.2004.04077.x.
We cloned a cDNA for a Drosophila melanogaster homologue of mammalian heme oxygenase (HO) and constructed a bacterial expression system of a truncated, soluble form of D. melanogaster HO (DmDeltaHO). The purified DmDeltaHO degraded hemin to biliverdin, CO and iron in the presence of reducing systems such as NADPH/cytochrome P450 reductase and sodium ascorbate, although the reaction rate was slower than that of mammalian HOs. Some properties of DmHO, however, are quite different from other known HOs. Thus DmDeltaHO bound hemin stoichiometrically to form a hemin-enzyme complex like other HOs, but this complex did not show an absorption spectrum of hexa-coordinated heme protein. The absorption spectrum of the ferric complex was not influenced by changing the pH of the solution. Interestingly, an EPR study revealed that the iron of heme was not involved in binding heme to the enzyme. Hydrogen peroxide failed to convert it into verdoheme. A spectrum of the ferrous-CO form of verdoheme was not detected during the reaction from hemin under oxygen and CO. Degradation of hemin catalyzed by DmDeltaHO yielded three isomers of biliverdin, of which biliverdin IXalpha and two other isomers (IXbeta and IXdelta) accounted for 75% and 25%, respectively. Taken together, we conclude that, although DmHO acts as a real HO in D. melanogaster, its active-site structure is quite different from those of other known HOs.
我们克隆了果蝇中与哺乳动物血红素加氧酶(HO)同源的cDNA,并构建了截短的、可溶形式的果蝇HO(DmDeltaHO)的细菌表达系统。纯化后的DmDeltaHO在诸如NADPH/细胞色素P450还原酶和抗坏血酸钠等还原系统存在的情况下,可将血红素降解为胆绿素、一氧化碳和铁,尽管其反应速率比哺乳动物的HO慢。然而,DmHO的一些特性与其他已知的HO有很大不同。因此,DmDeltaHO与血红素按化学计量结合形成类似其他HO的血红素-酶复合物,但该复合物并未显示六配位血红素蛋白的吸收光谱。三价铁复合物的吸收光谱不受溶液pH值变化的影响。有趣的是,一项电子顺磁共振研究表明,血红素的铁并不参与血红素与酶的结合。过氧化氢无法将其转化为胆褐素。在氧气和一氧化碳存在下,从血红素反应过程中未检测到胆褐素的亚铁-一氧化碳形式的光谱。DmDeltaHO催化的血红素降解产生了三种胆绿素异构体,其中胆绿素IXα和另外两种异构体(IXβ和IXδ)分别占75%和25%。综上所述,我们得出结论,尽管DmHO在果蝇中作为一种真正的HO发挥作用,但其活性位点结构与其他已知的HO有很大不同。