Frydman R B, Tomaro M L, Rosenfeld J, Awruch J, Sambrotta L, Valasinas A, Frydman B
Facultad de Farmacia y Bioquimica, Universidad de Buenos Aires, Argentina.
Biochim Biophys Acta. 1987 Dec 18;916(3):500-11. doi: 10.1016/0167-4838(87)90197-x.
The substrate specificity of the different forms of rat liver biliverdin reductase was examined using synthetic biliverdins. Biliverdins carrying methyl, ethyl and one propionate residue in their structure were not substrates of biliverdin reductase. Biliverdins with one propionate and one acetate residue or with two acetate residues were not reduced by the enzyme either. The presence of two propionates in the biliverdin structure gave a biliverdin with substrate activity. Increasing the number of propionates to four, as in coprobiliverdins, did not affect substrate activity, while the octaacid urobiliverdins were also good substrates of the enzymes. The beta isomer of urobiliverdin III and coprobiliverdin III were reduced at much higher rates by molecular form 3 of the enzyme as compared to molecular form 1, a fact which had already been observed with the beta isomer of biliverdins IX, XIII and hematobiliverdin. All the biliverdins mentioned above were readily reduced to bilirubins by sodium borohydride. The purified molecular forms 1 and 3 displayed sigmoidal kinetics with most of the biliverdins tested. The data were analyzed by nonlinear regression in a microcomputer and it was found that they fitted a model of a moderate cooperative dimer where both ES and ES2 are catalytically active. The Vm, Ks and the Hill numbers, nH, for biliverdin IX alpha and beta, hematobiliverdin IX alpha and beta, and several synthetic biliverdin isomers are given. Molecular form 2 showed classical Michaelian kinetics.
利用合成的胆绿素对大鼠肝脏不同形式的胆绿素还原酶的底物特异性进行了检测。结构中带有甲基、乙基和一个丙酸酯残基的胆绿素不是胆绿素还原酶的底物。带有一个丙酸酯和一个乙酸酯残基或两个乙酸酯残基的胆绿素也不能被该酶还原。胆绿素结构中存在两个丙酸酯会产生具有底物活性的胆绿素。像粪胆绿素那样将丙酸酯的数量增加到四个并不影响底物活性,而八酸尿胆绿素也是该酶的良好底物。与分子形式1相比,尿胆绿素III和粪胆绿素III的β异构体被该酶的分子形式3还原的速率要高得多,这一事实在胆绿素IX、XIII和血胆绿素的β异构体中已经观察到。上述所有胆绿素都能被硼氢化钠轻易地还原为胆红素。纯化后的分子形式1和3对大多数测试的胆绿素表现出S形动力学。在微型计算机上通过非线性回归对数据进行分析,发现它们符合一个适度协同二聚体的模型,其中ES和ES2都具有催化活性。给出了胆绿素IXα和β、血胆绿素IXα和β以及几种合成胆绿素异构体的Vm、Ks和希尔系数nH。分子形式2表现出典型的米氏动力学。