Neckers L M, Biggio G, Moja E, Meek J L
J Pharmacol Exp Ther. 1977 Apr;201(1):110-6.
Although hydroxylation of tryptophan (TP) is considered to be the rate-limiting step in serotonin synthesis, the mechanism whereby tryptophan hydroxylase (TPH) participates in the regulation of serotonin synthesis is still in question. Since the brain TP concentration is probably near the Km for tryptophan hydroxylase, changes in brain TP content could affect the rate of its hydroxylation. However, it has not been established whether in vivo the activity of TPH and TP in several brain nuclei and other regions of rat brain after treatments known to lower brain TP levels. Chlorimipramine, loading with neutral amino acids and a TP-deficient diet decreased the TP content of some, but not all, brain regions studied. Whenever TP decrease withe TP injections. Several brain nuclei accumulate TP at different rates after a TP load. These data suggest possible mechanisms for regulation of serotonin synthesis in the face of fluctuating plasma levels of TP.
尽管色氨酸(TP)的羟化作用被认为是5-羟色胺合成中的限速步骤,但色氨酸羟化酶(TPH)参与5-羟色胺合成调节的机制仍存在疑问。由于脑内TP浓度可能接近色氨酸羟化酶的米氏常数(Km),脑内TP含量的变化可能会影响其羟化速率。然而,在已知能降低脑内TP水平的处理后,大鼠脑内几个脑核及其他区域中TPH和TP的体内活性是否发生变化尚未确定。氯米帕明、中性氨基酸负荷及TP缺乏饮食降低了部分(但不是全部)所研究脑区的TP含量。无论何时注射TP,TP都会降低。TP负荷后,几个脑核以不同速率积累TP。这些数据提示了在血浆TP水平波动时5-羟色胺合成调节的可能机制。