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使用共聚焦显微镜对HEp2细胞中低密度脂蛋白和转铁蛋白的内吞分选进行定量分析。

Quantification of low density lipoprotein and transferrin endocytic sorting HEp2 cells using confocal microscopy.

作者信息

Ghosh R N, Gelman D L, Maxfield F R

机构信息

Department of Pathology, Columbia University College of Physicians and Surgeons, New York, NY 10032.

出版信息

J Cell Sci. 1994 Aug;107 ( Pt 8):2177-89. doi: 10.1242/jcs.107.8.2177.

Abstract

Numerous experiments on CHO cells have shown that endosomes are composed of separate vesicular and tubulovesicular compartments, such as the sorting endosome, the recycling compartment, and the late endosome. However, Hopkins et al. (Nature 346, 335-339, 1990) have reported that endosomes in HEp2 human carcinoma cells form an extensive tubular reticulum. To resolve their observations with previous results from CHO and other cells, we examined the sorting and intracellular transport of endocytosed macromolecules in HEp2 cells, using low density lipoprotein (LDL) and transferrin (Tf) to probe the lysosomally directed and recycling pathways, respectively. Fluorescent LDL and Tf were observed with laser scanning confocal microscopy to visualize simultaneously both probes' sorting and subsequent post-sorting behavior in HEp2 cells. Quantifying the 3-dimensional cellular distributions of fluorescent LDL and Tf, after a variety of pulsechase schemes, gave the ligands' trafficking rates. Initially, both ligands appear in the same punctate sorting endosomes, and fingers of Tf start extending from these sorting endosomes. Tf rapidly leaves dual-labeled sorting endosomes (t1/2 approximately 2.5 minutes) and enters a post-sorting recycling compartment from which it is recycled out of the cell (t1/2 approximately 7 minutes). We present both morphological and kinetic data supporting the existence of these two separate compartments along the recycling pathway in HEp2 cells. LDL remains in punctate sorting endosomes that eventually lose the ability to receive newly endocytosed LDL, and mature into late endosomes. The trafficking and sorting of Tf and LDL in HEp2 cells follow the same general scheme as in CHO cells, indicating that the tubular endosomes previously seen may be the tubular parts of the sorting endosomes and recycling compartments in these cells. We propose that the endosomes in the recycling pathway of HEp2 cells, as in CHO cells, are composed of short-lived sorting endosomes, accessible to both Tf and LDL, and long-lived post-sorting recycling compartments, which contain Tf and recycling receptors but not LDL.

摘要

在CHO细胞上进行的大量实验表明,内体由独立的囊泡和管状囊泡区室组成,如分拣内体、再循环区室和晚期内体。然而,霍普金斯等人(《自然》346, 335 - 339, 1990)报告称,HEp2人癌细胞中的内体形成了广泛的管状网状结构。为了将他们的观察结果与之前在CHO细胞和其他细胞上得到的结果相统一,我们利用低密度脂蛋白(LDL)和转铁蛋白(Tf)分别探测溶酶体导向途径和再循环途径,研究了HEp2细胞中内吞大分子的分拣和细胞内运输。通过激光扫描共聚焦显微镜观察荧光LDL和Tf,以同时可视化这两种探针在HEp2细胞中的分拣及分拣后的后续行为。在各种脉冲追踪方案之后,对荧光LDL和Tf的三维细胞分布进行量化,得出配体的运输速率。最初,两种配体都出现在相同的点状分拣内体中,Tf的分支开始从这些分拣内体延伸出来。Tf迅速离开双标记的分拣内体(半衰期约2.5分钟),进入分拣后再循环区室,从那里被再循环出细胞(半衰期约7分钟)。我们提供了形态学和动力学数据,支持HEp2细胞再循环途径中这两个独立区室的存在。LDL保留在点状分拣内体中,这些内体最终失去接收新内吞LDL的能力,并成熟为晚期内体。HEp2细胞中Tf和LDL的运输和分拣遵循与CHO细胞相同的总体模式,表明之前看到的管状内体可能是这些细胞中分拣内体和再循环区室的管状部分。我们提出,与CHO细胞一样,并在HEp2细胞的再循环途径中,内体由对Tf和LDL均易接近的短寿命分拣内体,以及含有Tf和再循环受体但不含LDL的长寿命分拣后再循环区室组成。

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