Takahashi S, Wang J, Rousseau D L, Ishikawa K, Yoshida T, Host J R, Ikeda-Saito M
AT&T Bell Laboratories, Murray Hill, New Jersey 07974.
J Biol Chem. 1994 Jan 14;269(2):1010-4.
Heme oxygenase, a central monooxygenase enzyme of the heme catabolism and the associated generation of carbon monoxide, forms a 1:1 stoichiometric complex with iron protoporphyrin IX, which is a prosthetic active center and at the same time the substrate of the enzyme. By using EPR, resonance Raman, and optical absorption spectroscopic techniques, we have determined the axial ligand coordination of the enzyme-heme complex. The ferric heme iron in the heme-enzyme complex at neutral pH is six-coordinate high spin, while at alkaline pH (pKa 7.6), the complex becomes low spin. Spectra of ferrous forms of the complex indicate that histidine serves as the iron proximal axial ligand and that the residue is in its neutral imidazole rather than its imidazolate protonation state. Thus, the active site of the heme-heme oxygenase complex has a myoglobin-like structure rather than an active site similar to the large cytochrome P-450 class of monooxygenases. As a consequence, the activated form of the heme-heme oxygenase complex, a peroxo intermediate, is different from that of the cytochrome P-450 monooxygenases, in which the activated form is an oxo intermediate. The overall catalytic mechanism is probably more closely related to that of other monooxygenases with myoglobin-like active sites, such as secondary amine monooxygenase.
血红素加氧酶是血红素分解代谢以及相关一氧化碳生成过程中的核心单加氧酶,它与铁原卟啉IX形成1:1化学计量比的复合物,铁原卟啉IX是一种辅基活性中心,同时也是该酶的底物。通过使用电子顺磁共振(EPR)、共振拉曼光谱和光吸收光谱技术,我们确定了酶-血红素复合物的轴向配体配位情况。在中性pH条件下,血红素-酶复合物中的铁血红素铁是六配位高自旋状态,而在碱性pH(pKa 7.6)时,该复合物变为低自旋状态。该复合物亚铁形式的光谱表明,组氨酸作为铁的近端轴向配体,且该残基处于其中性咪唑形式而非咪唑盐质子化状态。因此,血红素-血红素加氧酶复合物的活性位点具有类似肌红蛋白的结构,而非类似于大型细胞色素P-450类单加氧酶的活性位点。结果,血红素-血红素加氧酶复合物的活化形式,即过氧中间体,与细胞色素P-450单加氧酶的不同,细胞色素P-450单加氧酶的活化形式是氧代中间体。整体催化机制可能与其他具有类似肌红蛋白活性位点的单加氧酶,如仲胺单加氧酶,更为密切相关。