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遗传性视网膜变性大鼠中光感受器 - 色素上皮细胞的关系。关于层外物质双重来源的放射自显影和电子显微镜证据。

Photoreceptor-pigment epithelial cell relationships in rats with inherited retinal degeneration. Radioautographic and electron microscope evidence for a dual source of extra lamellar material.

作者信息

LaVail M M, Sidman R L, O'Neil D

出版信息

J Cell Biol. 1972 Apr;53(1):185-209. doi: 10.1083/jcb.53.1.185.

Abstract

Protein synthesis and displacement in photoreceptor and pigment epithelial cells of inbred normal (Fisher) and mutant (RCS) rats with inherited retinal degeneration has been studied by light and electron microscope radioautography. Groups of animals 14, 15, 17, 19, 27, 35, and 50 days of age were injected with amino acids-H(3) and killed at subsequent time intervals. In normal rats, radioactive protein synthesized in the rod inner segments was incorporated into outer segment saccules and displaced outward; the total renewal time of outer segments at all ages was approximately 9 days. In RCS photoreceptors, outer segment displacement was slowed from the normal rate before day 17 and at all subsequent stages. Most of the newly synthesized protein appeared to migrate only into the basal third of the outer segments. Labeling of pigment epithelial cells in RCS rats was always heavier than in controls. Labeled protein was displaced as early as 1 hr postinjection from pigment epithelial cell somas into the apical processes, and by 2 hr postinjection was located in the adjacent lamellar whorls characteristic of the mutant rat retina. After 1 day, radioactivity was present in the 14, 15, 17, and 19 day series of RCS rats in the apical third of the outer segment layer (occupied mainly by extra lamellar material) while there were few silver grains in the middle third of the layer (occupied mainly by distal parts of outer segments). The RCS pigment epithelial cells thus have an unusual synthetic role and appear to be a source of the extra lamellar material. Electron microscope examination revealed that many intact pigment epithelial cell processes were incorporated into the large whorls of extra lamellae. In addition, many disorganized outer segment saccules were observed in continuity with longer membranous lamellae and large lamellar whorls. The extra lamellar material therefore appears to be derived from both rod outer segments and pigment epithelial cells.

摘要

利用光镜和电镜放射自显影技术,研究了具有遗传性视网膜变性的近交系正常(Fisher)大鼠和突变(RCS)大鼠光感受器及色素上皮细胞中的蛋白质合成与移位情况。给14、15、17、19、27、35和50日龄的动物组注射氨基酸 - H(3),并在随后的不同时间间隔处死。在正常大鼠中,在视杆细胞内段合成的放射性蛋白质被整合到外段小泡中并向外移位;所有年龄段外段的总更新时间约为9天。在RCS光感受器中,外段移位在17日龄之前就从正常速率减慢,并在所有后续阶段都保持减慢。大多数新合成的蛋白质似乎仅迁移到外段的基部三分之一处。RCS大鼠色素上皮细胞的标记总是比对照组更重。注射后1小时内,标记蛋白质就从色素上皮细胞体移位到顶端突起中,注射后2小时位于突变大鼠视网膜特有的相邻板层螺旋中。1天后,在RCS大鼠14、15、17和19日龄组的外段层顶端三分之一处(主要由板层外物质占据)存在放射性,而在该层中间三分之一处(主要由外段远端部分占据)几乎没有银颗粒。因此,RCS色素上皮细胞具有不同寻常的合成作用,似乎是板层外物质的来源。电子显微镜检查显示,许多完整的色素上皮细胞突起被整合到板层外的大螺旋中。此外,还观察到许多杂乱无章的外段小泡与较长的膜状板层和大板层螺旋相连。因此,板层外物质似乎来源于视杆细胞外段和色素上皮细胞两者。

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