Lizcano J M, Fernandez de Arriba A, Lyles G A, Unzeta M
Departament de Bioquimica i Biologia Molecular, Facultat de Medicina, Universitat Autonoma de Barcelona, Spain.
J Neural Transm Suppl. 1994;41:415-20. doi: 10.1007/978-3-7091-9324-2_55.
The lung has been shown to be potentially important in the metabolism of amines. Since SSAO has been demonstrated to be active towards some volatile short-chain aliphatic amines in other tissues, the current study determined the specificity and kinetic constants for the metabolism by bovine lung SSAO, of several aliphatic and aromatic amines some of which have been suggested to be physiological substrates (e.g. methylamine, aminoacetone and beta-phenylethylamine), and others (e.g. benzylamine) which are non-physiological. In the case of benzylamine, an inhibition at high substrate concentration was observed. Kinetic assays ruled out the possibility that this inhibition was caused by products of the deamination of benzylamine, and consequently it is suggested that these results may indicate the presence of two binding sites for the interaction of benzylamine with SSAO.
肺已被证明在胺类代谢中可能具有重要作用。由于在其他组织中已证明SSAO对某些挥发性短链脂肪胺具有活性,因此本研究确定了牛肺SSAO对几种脂肪族和芳香族胺进行代谢的特异性和动力学常数,其中一些胺被认为是生理底物(如甲胺、氨基丙酮和β-苯乙胺),而其他胺(如苄胺)则是非生理性的。在苄胺的情况下,观察到在高底物浓度下存在抑制作用。动力学分析排除了这种抑制是由苄胺脱氨基产物引起的可能性,因此表明这些结果可能表明苄胺与SSAO相互作用存在两个结合位点。