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利用纳米视野显微镜对活表皮样癌(A431)细胞中运铁蛋白受体的动态行为进行追踪。

Dynamic behavior of the transferrin receptor followed in living epidermoid carcinoma (A431) cells with nanovid microscopy.

作者信息

De Brabander M, Nuydens R, Geerts H, Hopkins C R

机构信息

Department of Life Sciences, Janssen Pharmaceutica Research Laboratories, Beerse, Belgium.

出版信息

Cell Motil Cytoskeleton. 1988;9(1):30-47. doi: 10.1002/cm.970090105.

Abstract

Transferrin receptors labeled with the B3/25 monoclonal antibody-gold complexes were followed in living A431 cells by using video-enhanced contrast microscopy. Initially, the antibody-gold complexes bind to receptors which are freely mobile on the upper cell surface; they then become trapped at the inner margins of the peripheral lamellae and internalize. During endocytosis discrete gold-loaded vesicular elements first appear, and then, as they fuse, a heterogenous peripheral endosomal compartment forms. The endosomes from this compartment then begin to migrate centripetally through the cytoplasm in a saltatory way so that within 15 min gold label accumulates in a juxtanuclear endosome compartment. This compartment, which consists mainly of multivesicular bodies, is thus formed by the influx and retention of peripheral endosomal elements and their continued fusion in the juxtanuclear area. Although their overall migration is inward, saltating endosomes frequently reverse their direction of movement. As label builds up in the juxtanuclear area, small vesicles containing gold label continuously pinch off from the larger elements and migrate toward the cell periphery. Experiments with nocodazole and sodium azide show that the saltatory movements, the accumulation and retention of endosomes in the juxtanuclear area, and the separation of vesicles from endosomes are driven by a microtubule-associated, ATP-dependent, motility-generating mechanism. Analysis of the movements shows that although each individual vesicle saltation can occur unpredictably toward the centre or the periphery of the cell, a net centripetal flux is observed. Moreover, it is evident that the probability of migration toward and maintenance in the juxtanuclear area is related to the diameter of the vesicles. We propose a mechanism by which bidirectional saltation along microtubules forming a radial network may be instrumental in the selective concentration of large endosomes in the juxtanuclear area while small vesicles are left free to return to the periphery. This process may be responsible for the sorting of receptors and ligands destined either for intracellular degradation in juxtanuclear lysosomes or, alternatively, for recycling to the plasma membrane.

摘要

利用视频增强相差显微镜,在活的A431细胞中追踪用B3/25单克隆抗体 - 金复合物标记的转铁蛋白受体。最初,抗体 - 金复合物与在上层细胞表面自由移动的受体结合;然后它们被困在外周片层的内边缘并内化。在胞吞作用期间,离散的载金囊泡元件首先出现,然后随着它们融合,形成一个异质的外周内体区室。来自这个区室的内体随后开始以跳跃的方式向细胞中心迁移穿过细胞质,从而在15分钟内金标记物积聚在近核内体区室中。这个主要由多泡体组成的区室是由外周内体元件的流入和保留以及它们在近核区域的持续融合形成的。尽管它们的整体迁移是向内的,但跳跃的内体经常会反转其运动方向。随着标记物在近核区域积累,含有金标记物的小泡不断从较大的元件上脱离并向细胞周边迁移。用诺考达唑和叠氮化钠进行的实验表明,跳跃运动、内体在近核区域的积累和保留以及小泡与内体的分离是由一种与微管相关的、ATP依赖的、产生运动的机制驱动的。对运动的分析表明,虽然每个单独的小泡跳跃可以不可预测地朝着细胞中心或周边发生,但观察到有一个净向心通量。此外,很明显,向近核区域迁移并在其中维持的概率与小泡的直径有关。我们提出了一种机制,通过该机制,沿着形成径向网络的微管进行的双向跳跃可能有助于将大的内体选择性地集中在近核区域,而小泡则可以自由返回周边。这个过程可能负责对注定要在近核溶酶体中进行细胞内降解或循环回到质膜的受体和配体进行分选。

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