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包被内吞小泡在人成纤维细胞摄取受体结合型低密度脂蛋白中的作用。

Role of the coated endocytic vesicle in the uptake of receptor-bound low density lipoprotein in human fibroblasts.

作者信息

Anderson R G, Brown M S, Goldstein J L

出版信息

Cell. 1977 Mar;10(3):351-64. doi: 10.1016/0092-8674(77)90022-8.

Abstract

125I-labeled and ferritin-labeled low density lipoprotein (LDL) were used as visual probes to study the surface distribution of LDL receptors and to examine the mechanism of the endocytosis of this lipoprotein in cultured human fibrobasts. Light microscopic autoradiograms of whole cells incubated with 125I-LDL at 4 degrees C showed that LDL receptors were widely but unevenly distributed over the cell surface. With the electron microscope, we determined that 60-70% of the ferritin-labeled LDL that bound to cells at 4 degrees C was localized over short coated segments of the plasma membrane that accounted for no more than 2% of the total surface area. To study the internalization process, cells were first allowed to bind ferritin-labeled LDL at 4 degrees C and were then warmed to 37 degrees C. Within 10 min, nearly all the surface-bound LDL-ferritin was incorporated into coated endocytic vesicles that were formed by the invagination and pinching-off of the coated membrane regions that contained the receptor-bound LDL. With increasing time at 37 degrees C, these coated vesicles were observed sequentially to migrate through the cytoplasm (1 min), to lose their cytoplasmic coat (2 min), and to fuse with either primary or secondary lysosomes (6 min). The current data indicate that the coated regions of plasma membrane are specialized structures of rapid turnover that function to carry receptor-bound LDL, and perhaps other receptor-bound molecules, into the cell.

摘要

用¹²⁵I标记和铁蛋白标记的低密度脂蛋白(LDL)作为可视化探针,研究LDL受体的表面分布,并检测这种脂蛋白在培养的人成纤维细胞中的内吞作用机制。在4℃下用¹²⁵I-LDL孵育的全细胞的光学显微镜放射自显影片显示,LDL受体在细胞表面广泛但不均匀地分布。通过电子显微镜,我们确定在4℃下与细胞结合的60%-70%的铁蛋白标记的LDL定位于质膜的短被覆片段上,这些片段占总表面积的不超过2%。为了研究内化过程,首先让细胞在4℃下结合铁蛋白标记的LDL,然后升温至37℃。在10分钟内,几乎所有表面结合的LDL-铁蛋白都被纳入被覆内吞小泡,这些小泡是由包含受体结合的LDL的被覆膜区域内陷和掐断形成的。随着在37℃下时间的增加,观察到这些被覆小泡依次穿过细胞质(1分钟),失去其细胞质被膜(2分钟),并与初级或次级溶酶体融合(6分钟)。目前的数据表明,质膜的被覆区域是快速周转的特殊结构,其功能是将受体结合的LDL以及可能其他受体结合的分子带入细胞。

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