Parkinson D, Lyles G A, Browne B J, Callingham B A
J Pharm Pharmacol. 1980 Dec;32(12):844-50. doi: 10.1111/j.2042-7158.1980.tb13088.x.
The ability of MAO-A and MAO-B to metabolize benzylamine in vitro has been investigated in mitochondrial preparations from rat liver and heart. Although under normal circumstances benzylamine appeared to be metabolized exclusively by MAO-B in the rat liver, a contribution by both MAO-A and a clorgyline-resistant enzyme component was revealed when the MAO-B activity was much reduced by pretreatment of the mitochondria with appropriate concentrations of deprenyl. These three enzyme activities also contributed to benzylamine deamination in rat heart mitochondria. However, binding studies with [3H]pargyline, which provided an estimate of the respective concentrations of MAO-A and MAO-B active centres in heart mitochondria, indicated a ratio between MAO-A and MAO-B, markedly different from that shown by plots of inhibition of benzylamine metabolism by various concentrations of clorgyline. The interpretation of these clorgyline plots is discussed in terms of the kinetic constants of both MAO-A and MAO-B, and the relative amounts of each enzyme. It is proposed that although the turnover rate constant for benzylamine metabolism by MAO-A is much smaller than that shown by MAO-B, in those tissues containing a large ratio of MAO-A:MAO-B content, the metabolism of benzylamine by MAO-A can be detected.
在大鼠肝脏和心脏的线粒体提取物中,研究了单胺氧化酶A(MAO-A)和单胺氧化酶B(MAO-B)在体外代谢苄胺的能力。尽管在正常情况下,苄胺在大鼠肝脏中似乎仅由MAO-B代谢,但当用适当浓度的丙炔苯丙胺预处理线粒体使MAO-B活性大大降低时,发现MAO-A和一种对氯吉宁耐药的酶成分均有作用。这三种酶活性也对大鼠心脏线粒体中的苄胺脱氨基起作用。然而,用[3H]帕吉林进行的结合研究(该研究提供了心脏线粒体中MAO-A和MAO-B活性中心各自浓度的估计值)表明,MAO-A与MAO-B的比例与不同浓度氯吉宁对苄胺代谢抑制作用的曲线图所示比例明显不同。根据MAO-A和MAO-B的动力学常数以及每种酶的相对含量,对这些氯吉宁曲线图的解释进行了讨论。有人提出,尽管MAO-A代谢苄胺的周转速率常数远小于MAO-B,但在那些MAO-A与MAO-B含量比例较大的组织中,可以检测到MAO-A对苄胺的代谢作用。