Bunt A H, Saari J C
J Cell Biol. 1982 Feb;92(2):269-76. doi: 10.1083/jcb.92.2.269.
Cone outer segments (OS) of the goldfish retina are diffusely labeled after intravitreal injection of [(3)H]fucose while rod OS remain unlabeled. By electron microscopic radioautography, the OS of red- and blue-sensitive cones are heavily labeled while green- sensitive cone OS are lightly labeled. The time-course and pattern of OS labeling in all cone types from 30 min to 24 h resemble that of incorporation of other sugars into rhodopsin in rod OS. The nature of the cone OS-specific fucosylated component(s) was examined using biochemical techniques. Cone OS were prelabeled by intravitreal injection of [(3)H]fucose 24 h before sacrifice. Photoreceptor OS were isolated using a discontinuous sucrose density gradient and it was verified by electron microscopic radioautography that the only source of radioactivity in the preparations was cone OS. The different cone types could be recognized by the heaviness of labeling, characteristic membrane spacing, and 'staining' of green cone OS in vitro with horseradish peroxidase. After acid hydrolysis of prelabeled photoreceptor membranes, 90 percent of the counts were in the neutral sugar fraction which was analyzed by thin-layer chromatography. Approximately 70 percent of the radioactivity co-chromatographed with authentic fucose. SDS-PAGE/fluorography of prelabeled photoreceptor membranes revealed a single radioactive component that was lightly stained with coomassie blue and showed an apparent molecular weight of 33,000. This cone-derived band was separated from unlabeled rod opsin which was well stained and showed an apparent mol wt of 38,000. Isoelectric focusing under denaturing conditions produced two major and one minor band of radioactivity with isoelectric points of 8.2, 8.6, and 8.8 respectively. No radioactivity was found in association with a stained band corresponding in isoelectric point to that of bovine opsin (pl, 6.2). The fucosylated component was readily digested by pronase, indicating its protein nature. Washing of the isolated OS with isotonic and hypotonic buffers failed to extract major amounts of the radioactivity, suggesting that the fucosylated component is an integral membrane protein. The presence of a fucosylated protein thus represents a major difference between cone and rod OS in the goldfish and has enabled us to identify cone OS in preparations of isolated photoreceptor membranes and to demonstrate the separation of a cone-derived glycoprotein from rod opsin.
在玻璃体内注射[³H]岩藻糖后,金鱼视网膜的视锥细胞外段(OS)被弥散标记,而视杆细胞外段仍未被标记。通过电子显微镜放射自显影术,红色和蓝色敏感视锥细胞的外段被大量标记,而绿色敏感视锥细胞外段标记较轻。从30分钟到24小时,所有视锥细胞类型的外段标记的时间进程和模式类似于其他糖类掺入视杆细胞外段视紫红质的情况。使用生化技术研究了视锥细胞外段特异性岩藻糖基化成分的性质。在处死前24小时,通过玻璃体内注射[³H]岩藻糖对视锥细胞外段进行预标记。使用不连续蔗糖密度梯度分离光感受器外段,通过电子显微镜放射自显影术验证制剂中放射性的唯一来源是视锥细胞外段。在体外,不同的视锥细胞类型可以通过标记的强度、特征性的膜间距以及辣根过氧化物酶对绿色视锥细胞外段的“染色”来识别。对预标记的光感受器膜进行酸水解后,90%的计数位于中性糖部分,通过薄层色谱法进行分析。大约70%的放射性与纯岩藻糖共层析。预标记的光感受器膜的SDS-PAGE/荧光显影显示一个单一的放射性成分,用考马斯亮蓝轻度染色,表观分子量为33,000。这个源自视锥细胞的条带与未标记的视杆视蛋白分离,视杆视蛋白染色良好,表观分子量为38,000。在变性条件下进行等电聚焦产生两个主要和一个次要的放射性条带,等电点分别为8.2、8.6和8.8。在与牛视蛋白等电点(pl,6.2)相对应的染色条带中未发现放射性。岩藻糖基化成分很容易被链霉蛋白酶消化,表明其蛋白质性质。用等渗和低渗缓冲液洗涤分离的外段未能提取大量放射性,这表明岩藻糖基化成分是一种整合膜蛋白。因此,岩藻糖基化蛋白的存在代表了金鱼视锥细胞和视杆细胞外段之间的一个主要差异,并且使我们能够在分离的光感受器膜制剂中识别视锥细胞外段,并证明从视杆视蛋白中分离出一种源自视锥细胞的糖蛋白。