Yoshinaga T, Sudo Y, Sano S
Department of Public Health, Faculty of Medicine, Kyoto University, Japan.
Biochem J. 1990 Sep 15;270(3):659-64. doi: 10.1042/bj2700659.
Conversion of four isomers of meso-oxyprotohaem IX into the corresponding biliverdin IX was attempted with a reconstituted haem oxygenase system in the presence of NADPH-cytochrome c reductase and NADPH. Only the alpha-isomer of meso-oxyprotohaem IX was converted effectively into biliverdin IX alpha, which was further reduced to bilirubin IX alpha by biliverdin reductase. Only trace amounts of biliverdins IX beta, IX gamma and IX delta were respectively formed from the incubation mixture of the corresponding oxyprotohaemin IX isomers with the complete haem oxygenase system under the same conditions. In a kinetic study, the Km for alpha-meso-oxyprotohaem IX was 3.6 microM, which was 2-fold higher than that for protohaem IX. The maximum velocity (Vmax.) of the conversion of alpha-meso-oxyprotohaem IX into biliverdin IX alpha was twice as fast as that of protohaem IX. These results demonstrate that alpha-meso-oxyprotohaem IX is an intermediate of haem degradation and it was converted stereospecifically into biliverdin IX alpha via verdohaem IX alpha.
在存在NADPH - 细胞色素c还原酶和NADPH的情况下,尝试用重组的血红素加氧酶系统将中氧原卟啉IX的四种异构体转化为相应的胆绿素IX。只有中氧原卟啉IX的α - 异构体有效地转化为胆绿素IXα,后者再通过胆绿素还原酶进一步还原为胆红素IXα。在相同条件下,相应的氧合原卟啉IX异构体与完整的血红素加氧酶系统的孵育混合物分别仅形成痕量的胆绿素IXβ、IXγ和IXδ。在动力学研究中,α - 中氧原卟啉IX的Km为3.6 microM,比原卟啉IX高2倍。α - 中氧原卟啉IX转化为胆绿素IXα的最大速度(Vmax.)是原卟啉IX的两倍。这些结果表明,α - 中氧原卟啉IX是血红素降解的中间体,它通过Verdohaem IXα立体特异性地转化为胆绿素IXα。