Voisin P, Namboodiri M A, Klein D C
J Biol Chem. 1984 Sep 10;259(17):10913-8.
Amine N-acetylation in the pineal gland is of special importance because it is the first step in the synthesis of melatonin from serotonin. In the present study the N-acetylation of arylamines and arylalkylamines by homogenates of rat and sheep pineal glands was investigated. The arylamines studied were p-phenetidine and aniline; the arylalkylamines studied were tryptamine, serotonin, 5-methoxytryptamine, 6-fluorotryptamine, and phenylethylamine. These amines were acetylated by pineal homogenates of both species, although marked interspecies differences in apparent Km and Vmax values were found. A series of observations in both species indicate that aromatic amine N-acetylation is catalyzed by two distinct enzymes; one preferentially acetylates arylamines and the other preferentially acetylates arylalkylamines. First, isoproterenol treatment of the rat increased arylalkylamine N-acetylation 100-fold without increasing arylamine N-acetylation. Second, cycloheximide treatment in sheep reduced arylalkylamine N-acetylation at night to one-tenth control values, without altering arylamine N-acetylation. Third, arylamine N-acetyltransferase and arylalkylamine N-acetyltransferase inactivated at different rates at 4 degrees C. Fourth, the two enzymes were resolved by size exclusion chromatography. These results clearly establish that the pineal gland contains an arylamine N-acetyltransferase and a second, independently regulated arylalkylamine N-acetyltransferase which appears to be primarily responsible for the physiological conversion of serotonin to melatonin via the intermediate N-acetylserotonin.
松果体中的胺N - 乙酰化具有特殊重要性,因为它是从血清素合成褪黑素的第一步。在本研究中,对大鼠和绵羊松果体匀浆对芳胺和芳烷基胺的N - 乙酰化进行了研究。所研究的芳胺为对乙氧基苯胺和苯胺;所研究的芳烷基胺为色胺、血清素、5 - 甲氧基色胺、6 - 氟色胺和苯乙胺。这两种动物的松果体匀浆都能使这些胺发生乙酰化,尽管在表观Km和Vmax值上发现了明显的种间差异。对这两种动物的一系列观察表明,芳香胺N - 乙酰化由两种不同的酶催化;一种优先使芳胺乙酰化,另一种优先使芳烷基胺乙酰化。首先,用异丙肾上腺素处理大鼠使芳烷基胺N - 乙酰化增加了100倍,而芳胺N - 乙酰化没有增加。其次,用环己酰亚胺处理绵羊使夜间芳烷基胺N - 乙酰化降至对照值的十分之一,而芳胺N - 乙酰化没有改变。第三,芳胺N - 乙酰转移酶和芳烷基胺N - 乙酰转移酶在4℃下失活的速率不同。第四,通过尺寸排阻色谱法分离出了这两种酶。这些结果清楚地表明,松果体含有一种芳胺N - 乙酰转移酶和另一种独立调节的芳烷基胺N - 乙酰转移酶,后者似乎主要负责通过中间产物N - 乙酰血清素将血清素生理转化为褪黑素。