Frydman R B, Levy E S, Valasinas A, Frydman B
Biochemistry. 1978 Jan 10;17(1):115-20. doi: 10.1021/bi00594a016.
Many hypotheses on uroporphyrinogen biosynthesis advanced the possibility that 2-aminomethyltripyrranes formed by porphobilinogen deaminase are further substrates or uroporphyrinogen III co-synthase in the presence of porphobilinogen. These proposals were put to test by employing synthetic 2-aminomethyltripyrranes formally derived from porphobilinogen. None of them was found to be by itself a substrate of deaminase or of co-synthase in the presence of porphobilinogen. The tripyrranes chemically formed uroporphyrinogens by dimerization reactions, and the latter had to be deducted in control runs during the enzymatic studies. Two of the tripyrranes examined, the 2-aminomethyltripyrrane 7 and the 2-aminomethyltripyrrane 8, were found to be incorporated into enzymatically formed uroporphyrinogen III in the presence of porphobilinogen and of the deaminase-co-synthase system. While the former gave only a slight incorporation, the latter was incorporated in about 16%. No incorporation of 8 into uroporphyrinogen I was detected. On the basis of these results, and of the previous results obtained with 2-aminomethyldipyrrylmethanes, an outline of the most likely pathway of uroporphyrinogen III biosynthesis from porphobilinogen is given.
许多关于尿卟啉原生物合成的假说提出,在存在胆色素原的情况下,由胆色素原脱氨酶形成的2-氨甲基三吡咯可能是尿卟啉原III合酶的进一步底物。通过使用正式从胆色素原衍生而来的合成2-氨甲基三吡咯对这些提议进行了检验。在存在胆色素原的情况下,未发现它们中的任何一种本身是脱氨酶或合酶的底物。这些三吡咯通过二聚反应化学形成尿卟啉原,在酶学研究过程中,在对照实验中必须扣除后者。在所检测的两种三吡咯中,2-氨甲基三吡咯7和2-氨甲基三吡咯8,发现在存在胆色素原和脱氨酶-合酶系统的情况下被掺入酶促形成的尿卟啉原III中。虽然前者的掺入量很少,但后者的掺入量约为16%。未检测到8掺入尿卟啉原I中。基于这些结果以及先前用2-氨甲基二吡咯甲烷获得的结果,给出了从胆色素原合成尿卟啉原III最可能途径的概述。