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果蝇中的类胡萝卜素替代:冷冻断裂电子显微镜观察

Carotenoid replacement in Drosophila: freeze-fracture electron microscopy.

作者信息

Stark W S, White R H

机构信息

Department of Biology, Saint Louis University, MO 63103-2010, USA.

出版信息

J Neurocytol. 1996 Apr;25(4):233-41. doi: 10.1007/BF02284799.

Abstract

Because of the consequent lack of photopigment chromophore, carotenoid/ retinoid (vitamin A) deprivation during the larval period of Drosophila leads to decreased rhodopsin in adult photoreceptors. Decreased density of P-face particles in photoreceptor membrane (rhabdomeric microvilli) is a prominent ultrastructural feature of this rhodopsin deficiency. When adults are fed carotenoid, the rhabdomeric P-face particle density-which reflects the concentration of rhodopsin-increases halfway to the replete control level during the first 12 hours, and is fully restored by 2 days. Based on freeze-fracture replicas, there is a continuity of membrane between rhabdomeric microvilli and the parent retinula cell. That confluence is relevant to turnover of photoreceptive membrane. Microvillar and retinula cell P-face particle densities covary. The relevance of the demonstration of rapid recovery from chromophore depletion is discussed in relation to hypotheses that the chromophore and/or related retinoids regulate opsin gene transcription, and/or post-translational processing and deployment from the endoplasmic reticulum to the rhabdomere.

摘要

由于随后缺乏光色素发色团,果蝇幼虫期类胡萝卜素/视黄醛(维生素A)缺乏会导致成年光感受器中视紫红质减少。光感受器膜(微绒毛)中P面颗粒密度降低是这种视紫红质缺乏的一个突出超微结构特征。当给成年果蝇喂食类胡萝卜素时,反映视紫红质浓度的微绒毛P面颗粒密度在最初12小时内增加到充足对照组水平的一半,并在2天内完全恢复。基于冷冻断裂复制品,微绒毛与母视网膜细胞之间存在膜连续性。这种融合与光感受膜的更新有关。微绒毛和视网膜细胞的P面颗粒密度共同变化。结合发色团和/或相关视黄醛调节视蛋白基因转录,和/或从内质网到视杆的翻译后加工及部署的假说,讨论了从发色团耗竭中快速恢复这一现象的意义。

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