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新合成的视蛋白从高尔基体向视杆外段的囊泡运输。非洲爪蟾视网膜的超微结构免疫细胞化学和放射自显影证据。

Vesicular transport of newly synthesized opsin from the Golgi apparatus toward the rod outer segment. Ultrastructural immunocytochemical and autoradiographic evidence in Xenopus retinas.

作者信息

Papermaster D S, Schneider B G, Besharse J C

出版信息

Invest Ophthalmol Vis Sci. 1985 Oct;26(10):1386-404.

PMID:2931395
Abstract

Each day, rod photoreceptors of the vertebrate retina synthesize rhodopsin and insert it into new membranes of the rod outer segment (ROS). The authors determined which components of the rod cell transport opsin from the Golgi to the ROS by a combined EM autoradiographic and immunocytochemical study using radiolabeled amino acid precursors and antiopsin antibodies. Radiolabeled proteins in the ellipsoid region of Xenopus laevis retinal rods were localized by comparison of the distribution of silver grains with the predicted distribution generated by a hypothetical source: grain matrix. Sources of decay were not uniformly distributed. Small vesicles compressed between mitochondria and clustered beneath the connecting cilium that joins the inner to the outer segment contained more than 30% of the radiolabel and had a specific activity 17 times higher than the surrounding cytoplasm. Opsin was localized immunocytochemically on thin sections of retinas embedded in Lowicryl K4M (Polysciences; Warrington, PA) by reaction sequentially with biotinyl-rabbit antifrog opsin, biotinyl-sheep antirabbit F(ab')2, and avidin-ferritin. Golgi apparatus, intermitochondrial vesicles, and vesicles that clustered beneath the connecting cilium were prominently labeled. Subellipsoid smooth endoplasmic reticulum was labeled at background levels. These results demonstrate that intracellular vesicular membranes transport newly synthesized opsin from the Golgi to the base of the connecting cilium of X. laevis retinas. Antibody labeled the outer segment plasma membrane at a 10-fold greater density than the contiguous inner segment plasma membrane. The polarized distribution of opsin apparently involves not only vectorial transport of opsin in the inner segment but also restrictions to the randomization of opsin inserted into the inner and outer segment plasma membrane.

摘要

脊椎动物视网膜的视杆光感受器每天都会合成视紫红质,并将其插入视杆外段(ROS)的新膜中。作者通过结合电子显微镜放射自显影和免疫细胞化学研究,使用放射性标记的氨基酸前体和抗视蛋白抗体,确定了视杆细胞中哪些成分将视蛋白从高尔基体转运到ROS。通过将银颗粒的分布与假设源(颗粒基质)产生的预测分布进行比较,确定了非洲爪蟾视网膜视杆椭圆体区域中的放射性标记蛋白。衰变源分布并不均匀。在线粒体之间压缩并聚集在连接内段和外段的连接纤毛下方的小泡含有超过30%的放射性标记,其比活性比周围细胞质高17倍。通过依次与生物素化兔抗蛙视蛋白、生物素化羊抗兔F(ab')2和抗生物素蛋白-铁蛋白反应,对视蛋白进行免疫细胞化学定位,观察嵌入Lowicryl K4M(Polysciences公司;宾夕法尼亚州沃灵顿)的视网膜薄切片。高尔基体、线粒体间小泡和聚集在连接纤毛下方的小泡被显著标记。椭圆体下光滑内质网的标记处于背景水平。这些结果表明,细胞内囊泡膜将新合成的视蛋白从高尔基体转运到非洲爪蟾视网膜连接纤毛的基部。抗体标记外段质膜的密度比相邻的内段质膜高10倍。视蛋白的极化分布显然不仅涉及视蛋白在内段的向量运输,还涉及对视蛋白插入内段和外段质膜时随机化的限制。

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