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大鼠光感受器细胞中的胞苷代谢

Cytidine metabolism in photoreceptor cells of the rat.

作者信息

Schmidt S Y

出版信息

J Cell Biol. 1983 Sep;97(3):824-31. doi: 10.1083/jcb.97.3.824.

Abstract

During brief (30-min) incubations, isolated rat retinas accumulated [3H]cytidine, converted it to cytidine triphosphate (CTP), and incorporated it into RNA and cytidine diphosphate-diacylglyceride (CDG), a phospholipid precursor of phosphatidylinositol (Pl). Labeled CTP, RNA, and CDG contents were found to be two- to three-fold higher in photoreceptor cells than in cells of the inner retina. Autoradiograms showed that, within photoreceptor cells, silver grains representing RNA were concentrated over the nuclei in dark and light, while silver grains representing CDG were concentrated over the inner segments only after incubation in dark. The formation of labeled CTP and the synthesis of RNA were enhanced in light, while labeled CDG levels became reduced in light concurrent with an increase in the incorporation of labeled inositol into Pl. The 3H-labeled CDG content, however, was increased two- to fourfold in light in the presence of actinomycin D, and autoradiograms show a heavy concentration of silver grains over the inner segments of photoreceptor cells. These findings establish a role for cytidine nucleotides in photoreceptor cell metabolism and in light-dependent increases in RNA and Pl synthesis. Furthermore, the observations indicate that a competition may exist in light for cytidine or CTP and suggest that availability of cytidine for CDG synthesis may have a regulatory role in Pl metabolism within the photoreceptor cells.

摘要

在短暂(30分钟)的孵育过程中,分离出的大鼠视网膜积累了[3H]胞苷,将其转化为胞苷三磷酸(CTP),并将其掺入RNA和胞苷二磷酸二酰甘油(CDG)中,CDG是磷脂酰肌醇(PI)的磷脂前体。发现光感受器细胞中标记的CTP、RNA和CDG含量比视网膜内层细胞中的高两到三倍。放射自显影片显示,在光感受器细胞内,代表RNA的银颗粒在黑暗和光照下都集中在细胞核上,而代表CDG的银颗粒仅在黑暗中孵育后才集中在内段。光照下标记的CTP的形成和RNA的合成增强,而光照下标记的CDG水平降低,同时标记的肌醇掺入PI增加。然而,在放线菌素D存在的情况下,光照下3H标记的CDG含量增加了两到四倍,放射自显影片显示光感受器细胞内段上有大量银颗粒集中。这些发现确立了胞苷核苷酸在光感受器细胞代谢以及RNA和PI合成的光依赖性增加中的作用。此外,这些观察结果表明,光照下可能存在对胞苷或CTP的竞争,并表明胞苷用于CDG合成的可用性可能在光感受器细胞内的PI代谢中具有调节作用。

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