Suppr超能文献

视网膜中吲哚胺N - 乙酰转移酶活性的调节:光照与黑暗、蛋白质合成抑制剂及环核苷酸类似物的作用

Regulation of indoleamine N-acetyltransferase activity in the retina: effects of light and dark, protein synthesis inhibitors and cyclic nucleotide analogs.

作者信息

Iuvone P M, Besharse J C

出版信息

Brain Res. 1983 Aug 22;273(1):111-9. doi: 10.1016/0006-8993(83)91099-5.

Abstract

The regulation of indoleamine N-acetyltransferase (NAT) in the posterior eye was investigated in vivo, and in vitro in cultured eye cups. Surgical separation of neural retina from the retinal pigment epithelium-choroid complex indicated that NAT was localized to neural retina. The activity of retinal NAT fluctuated in vivo in a rhythmic fashion, with peak activity in the dark phase of the light-dark cycle. The rhythm of NAT activity persisted for up to 3 days in constant darkness, with a rhythmic period of approximately 25 h. The rhythm was suppressed by constant light, and could be phase-shifted by exposure to a new light-dark cycle. These observations indicate that retinal NAT activity occurs as a circadian rhythm that is entrained by light and dark. Retinas also responded to light and dark in vitro with changes of NAT activity. A significant increase in retinal NAT activity occurred in eye cups cultured in darkness during the dark phase of the light-dark cycle. This increase was completely suppressed in eye cups cultured at the same time of day in light. The dark-induced increase in NAT was completely blocked by protein synthesis inhibitors, and mimicked in light by cyclic AMP analogs. The similarity of the regulation of NAT activity in retina to that in pineal, and the possible relationship of the retinal NAT rhythm to cyclic metabolism in photoreceptors are discussed.

摘要

我们在体内以及在培养的眼杯中进行体外实验,研究了吲哚胺N - 乙酰基转移酶(NAT)在眼后部的调节情况。将神经视网膜与视网膜色素上皮 - 脉络膜复合体进行手术分离,结果表明NAT定位于神经视网膜。视网膜NAT的活性在体内呈节律性波动,在明暗周期的暗期活性达到峰值。在持续黑暗条件下,NAT活性的节律可持续长达3天,节律周期约为25小时。持续光照会抑制该节律,且通过暴露于新的明暗周期可使其相位发生改变。这些观察结果表明,视网膜NAT活性以昼夜节律的形式出现,且受光暗调节。视网膜在体外对光暗变化也有NAT活性的改变。在明暗周期的暗期,培养于黑暗中的眼杯内视网膜NAT活性显著增加。而在同一天的相同时间培养于光照条件下的眼杯,这种增加被完全抑制。黑暗诱导的NAT增加被蛋白质合成抑制剂完全阻断,而环磷酸腺苷类似物在光照条件下可模拟这种增加。文中还讨论了视网膜中NAT活性调节与松果体中调节的相似性,以及视网膜NAT节律与光感受器中环代谢的可能关系。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验