Ichiyama A, Hasegawa H, Tohyama C, Dohmoto C, Kataoka T
Adv Exp Med Biol. 1976;74:103-17. doi: 10.1007/978-1-4684-3270-1_9.
Bovine pineal tryptophan hydroxylase is a pterin-dependent aromatic amino acid monooxygenase with a broad substrate specificity and with low Km values for the amino acid substrates, L-tryptophan and L-phenylalanine. p-Chlorophenylalanine, an inhibitor of the tryptophan hydroxylation in the brain, also serves as a good substrate of the bovine pineal enzyme. The full activity of this enzyme is detected in vitro only after preincubation with dithiothreitol under reductive conditions. The enzyme is profoundly and more or less specifically inhibited by L-5HTP, the product of tryptophan hydroxylation, suggesting a possible regulatory role of this hydroxylated amino acid. The Km of the enzyme for tetrahydrobiopterin, a presumed natural cofactor, is significantly higher than the expected tissue concentration if the cofactor is assumed to be uniformly distributed in the tissue. These properties of bovine pineal tryptophan hydroxylase are distinguishable from those of the hydroxylase in the brain indicating that the hydroxylation of tryptophan in the brain leading to the synthesis of serotonin and the reaction in the pineal gland leading to the formation of melatonin are catalyzed by different tryptophan hydroxylases and are probably under separate regulatory mechanisms.
牛松果体色氨酸羟化酶是一种蝶呤依赖性芳香族氨基酸单加氧酶,底物特异性广泛,对氨基酸底物L-色氨酸和L-苯丙氨酸的Km值较低。对氯苯丙氨酸是脑中色氨酸羟化作用的抑制剂,也是牛松果体酶的良好底物。该酶只有在还原条件下与二硫苏糖醇预孵育后,才能在体外检测到其全部活性。色氨酸羟化产物L-5羟色胺对该酶有显著且或多或少的特异性抑制作用,提示这种羟化氨基酸可能具有调节作用。如果假定辅因子在组织中均匀分布,那么该酶对假定的天然辅因子四氢生物蝶呤的Km值显著高于预期的组织浓度。牛松果体色氨酸羟化酶的这些特性与脑中的羟化酶不同,这表明脑中导致血清素合成的色氨酸羟化作用和松果体中导致褪黑素形成的反应是由不同的色氨酸羟化酶催化的,可能受不同的调节机制调控。