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鸡视网膜中色氨酸羟化酶活性的昼夜节律。

Circadian rhythm of tryptophan hydroxylase activity in chicken retina.

作者信息

Thomas K B, Iuvone P M

机构信息

Department of Pharmacology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

Cell Mol Neurobiol. 1991 Oct;11(5):511-27. doi: 10.1007/BF00734813.

Abstract
  1. Retinal tryptophan hydroxylase activity in chickens (1-4 weeks old and embryos) was estimated by determination of levels of 5-hydroxytryptophan (5HTP) in retinas at defined intervals after inhibition of aromatic L-amino acid decarboxylase with m-hydroxybenzylhydrazine (NSD1015). 2. The relationship of tryptophan hydroxylase activity to photoperiod was explored. In chickens maintained on a 12-hr light: 12-hr dark cycle, a diurnal cycle in tryptophan hydroxylase activity was observed. Activity during middark phase was 4.4 times that seen in midlight phase. Cyclic changes in tryptophan hydroxylase activity persisted in constant darkness with a period of approximately 1 day, indicating regulation of the enzyme by a circadian oscillator. The phase of the tryptophan hydroxylase rhythm was found to be determined by the phase of the light/dark cycle. The relationship of the tryptophan hydroxylase rhythm to the light/dark cycle mirrors previously described rhythms of melatonin synthesis and serotonin N-acetyltransferase (NAT) activity in the retina. 3. Light exposure for 1 hr during dark phase suppressed NAT activity by 82%, while tryptophan hydroxylase activity was suppressed by only 30%. 4. Based on the differential responses of retinal NAT activity and tryptophan hydroxylase activity to acute light exposure during dark phase, it was predicted that exposure to light during dark phase would divert serotonin in the retina from melatonin biosynthesis to oxidation by MAO. In support of this, levels of 5-hydroxyindole acetic acid (5HIAA) in retina were found to be elevated approximately two-fold in chickens exposed to 30 min of light during dark phase. In pargyline-treated chickens, 2 hr of light exposure during dark phase was found to increase retinal serotonin levels by 64% over pargyline-treated controls. 5. Cyclic changes in tryptophan hydroxylase activity and NAT activity persisted for 2-3 days in constant light. Tryptophan hydroxylase activity at mid-night gradually decreased on successive days in constant light; on the first day of constant light, tryptophan hydroxylase activity at mid-night was 70% of activity seen during middark phase of the normal light/dark cycle and decreased further on subsequent days. In contrast, on each of 3 days of constant light, NAT activity at mid-night was approximately 15% of normal middark phase activity. 6. Cycloheximide completely inhibited the nocturnal increase in tryptophan hydroxylase activity when given immediately before light offset. The nocturnal increase in NAT activity was inhibited in a similar fashion. 7. Like the development of the NAT rhythm, cyclic changes of tryptophan hydroxylase activity in the retinas of chickens began on or immediately before the day of hatching. hatching.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 通过用间羟基苄基肼(NSD1015)抑制芳香族L-氨基酸脱羧酶后,在特定时间间隔测定视网膜中5-羟色氨酸(5HTP)的水平,来估算鸡(1至4周龄及胚胎)视网膜中色氨酸羟化酶的活性。2. 探究了色氨酸羟化酶活性与光周期的关系。在维持12小时光照:12小时黑暗周期的鸡中,观察到色氨酸羟化酶活性的昼夜循环。黑暗中期的活性是光照中期的4.4倍。色氨酸羟化酶活性的周期性变化在持续黑暗中持续约1天,表明该酶受昼夜节律振荡器调节。发现色氨酸羟化酶节律的相位由光/暗周期的相位决定。色氨酸羟化酶节律与光/暗周期的关系反映了先前描述的视网膜中褪黑素合成和血清素N-乙酰转移酶(NAT)活性的节律。3. 在黑暗期暴露于光照1小时可使NAT活性降低82%,而色氨酸羟化酶活性仅降低30%。4. 根据视网膜NAT活性和色氨酸羟化酶活性在黑暗期对急性光照的不同反应,预测在黑暗期暴露于光照会使视网膜中的血清素从褪黑素生物合成转向被单胺氧化酶氧化。支持这一观点的是,在黑暗期暴露于30分钟光照的鸡中,视网膜中5-羟吲哚乙酸(5HIAA)的水平升高了约两倍。在用帕吉林处理的鸡中,发现在黑暗期暴露于光照2小时会使视网膜血清素水平比经帕吉林处理的对照组增加64%。5. 在持续光照下,色氨酸羟化酶活性和NAT活性的周期性变化持续2至3天。在持续光照下,午夜时的色氨酸羟化酶活性在连续几天中逐渐降低;在持续光照的第一天,午夜时的色氨酸羟化酶活性是正常光/暗周期黑暗中期活性的70%,并在随后几天进一步降低。相比之下,在持续光照的3天中的每一天,午夜时的NAT活性约为正常黑暗中期活性的15%。6. 环己酰亚胺在光照结束前立即给予时,完全抑制了色氨酸羟化酶活性的夜间增加。NAT活性的夜间增加也以类似方式被抑制。7. 与NAT节律的发育一样,鸡视网膜中色氨酸羟化酶活性的周期性变化在孵化日或孵化日前开始。孵化。(摘要截短于400字)

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本文引用的文献

1
Serotonin: A transmitter candidate in the vertebrate retina.
Neurochem Int. 1981;3(2):171-6. doi: 10.1016/0197-0186(81)90037-1.
2
Protein measurement with the Folin phenol reagent.
J Biol Chem. 1951 Nov;193(1):265-75.
3
In vitro experiments on the metabolism, uptake and release of 5-hydroxytryptamine in bovine retina.
Brain Res. 1980 Feb 24;184(2):283-97. doi: 10.1016/0006-8993(80)90799-4.
4
Retinal rhythms in chicks: circadian variation in melantonin and serotonin N-acetyltransferase activity.
Proc Natl Acad Sci U S A. 1980 Aug;77(8):4998-5002. doi: 10.1073/pnas.77.8.4998.
9
Evidence for a neurotransmitter role for 5-hydroxytryptamine in chick retina.
J Neurosci. 1981 Nov;1(11):1211-7. doi: 10.1523/JNEUROSCI.01-11-01211.1981.

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