Cahill G M, Besharse J C
Department of Anatomy and Cell Biology, Emory University School of Medicine, Atlanta, Georgia.
J Neurochem. 1990 Feb;54(2):716-9. doi: 10.1111/j.1471-4159.1990.tb01932.x.
Treatments expected to increase retinal serotonin levels were found to stimulate melatonin production by cultured eyecups from Xenopus laevis. The monoamine oxidase inhibitor pargyline (100 microM) caused a sixfold increase in melatonin release, and the serotonin precursor 5-hydroxy-L-tryptophan (100 microM) caused a 70-fold increase. Both acted synergistically with eserine, an inhibitor of melatonin deacetylation in the retina. The effect of 5-hydroxytryptophan was dose dependent, with effects increasing from 1 to 100 microM. Increasing the tryptophan level in the culture medium had no effect on melatonin release. These results indicate that the rate-limiting step in retinal melatonin synthesis is 5-hydroxylation of tryptophan. Melatonin released from individual eyecups in superfusion culture in constant darkness with and without added 5-hydroxy-L-tryptophan was monitored over a 5-day period. Control eyecups released low levels of melatonin, with circadian rhythmicity persisting for 1-3 days. With 5-hydroxy-L-tryptophan added, melatonin levels were elevated 10-20-fold at all times, and rhythmicity was apparent for as long as five cycles. This provides a model system for studies of the circadian clock in the eye.
研究发现,有望提高视网膜血清素水平的治疗方法能刺激非洲爪蟾培养眼杯产生褪黑素。单胺氧化酶抑制剂优降宁(100微摩尔)使褪黑素释放量增加了6倍,血清素前体5-羟基-L-色氨酸(100微摩尔)使褪黑素释放量增加了70倍。二者都与毒扁豆碱协同作用,毒扁豆碱是视网膜中褪黑素脱乙酰化的抑制剂。5-羟基色氨酸的作用呈剂量依赖性,在1至100微摩尔范围内效果增强。提高培养基中色氨酸水平对褪黑素释放没有影响。这些结果表明,视网膜褪黑素合成的限速步骤是色氨酸的5-羟化。在持续黑暗的条件下,对添加和未添加5-羟基-L-色氨酸的超灌流培养中单个眼杯释放的褪黑素进行了为期5天的监测。对照眼杯释放的褪黑素水平较低,昼夜节律持续1至3天。添加5-羟基-L-色氨酸后,褪黑素水平在所有时间都升高了10至20倍,并且长达五个周期都有明显的节律性。这为研究眼睛中的生物钟提供了一个模型系统。