Kinuta M, Matteson J L, Itano H A
Biochem J. 1986 Nov 15;240(1):81-6. doi: 10.1042/bj2400081.
The anaerobic reaction of chelated protohaemin, a synthetic model compound of ferrihaemoglobin, with phenyldiazene produced a compound with the visible-absorption spectrum of a ferrihaemochrome. The compound reacted with CN-, which is a ligand of both ferric and ferrous porphyrins, to produce the complex of the synthetic ferrihaemoglobin with CN-. Though the spectrum of the compound formed by the addition of phenyldiazene to chelated protohaemin is characteristic of a ferric porphyrin complex, this compound reacted with both toluene-p-sulphonylmethyl isocyanide and CO, which are strong ligands of ferrous porphyrins, to produce the corresponding ferrous complexes. These ligand-binding reactions indicated that the complex of chelated protohaem with phenyldiazene can behave either as a complex of a ferric porphyrin with phenyldiazenyl anion (C6H5N = N-) or a complex of a ferrous porphyrin with phenyldiazenyl radical (C6H5N = N.). Para substituents on phenyldiazene were without effect on the formation of 4-substituted phenyldiazenyl complexes with chelated protohaem. Ortho substituents resulted in less-stable complexes. The phenyl complex of chelated protohaem was prepared by the aerobic reaction of phenylhydrazine with chelated protohaemin, and its structure was confirmed by its n.m.r. spectrum. The ligand-binding properties, n.m.r. spectrum and absorption spectrum of this complex differed from those of the phenyldiazenyl complex. The phenyl complex also was produced when the phenyldiazenyl complex was exposed to O2.
螯合原血红素(高铁血红蛋白的一种合成模型化合物)与苯二氮烯的厌氧反应产生了一种具有高铁血红素可见吸收光谱的化合物。该化合物与作为铁卟啉和亚铁卟啉配体的CN⁻反应,生成了合成高铁血红蛋白与CN⁻的络合物。尽管向螯合原血红素中添加苯二氮烯形成的化合物的光谱具有铁卟啉络合物的特征,但该化合物与甲苯 - p - 磺酰甲基异氰化物和CO(它们是亚铁卟啉的强配体)反应,生成了相应的亚铁络合物。这些配体结合反应表明,螯合原血红素与苯二氮烯的络合物既可以表现为铁卟啉与苯二氮烯阴离子(C₆H₅N = N⁻)的络合物,也可以表现为亚铁卟啉与苯二氮烯自由基(C₆H₅N = N·)的络合物。苯二氮烯上的对位取代基对与螯合原血红素形成4 - 取代苯二氮烯基络合物没有影响。邻位取代基导致形成的络合物稳定性较差。螯合原血红素的苯基络合物是通过苯肼与螯合原血红素的需氧反应制备的,其结构通过核磁共振光谱得到证实。该络合物的配体结合性质、核磁共振光谱和吸收光谱与苯二氮烯基络合物不同。当苯二氮烯基络合物暴露于O₂时也会生成苯基络合物。