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终末溶酶体与前溶酶体/晚期内体区室之间逆行运输的证据。

Evidence for retrograde traffic between terminal lysosomes and the prelysosomal/late endosome compartment.

作者信息

Jahraus A, Storrie B, Griffiths G, Desjardins M

机构信息

European Molecular Biology Laboratory, Cell Biology Programme, Heidelberg, Germany.

出版信息

J Cell Sci. 1994 Jan;107 ( Pt 1):145-57. doi: 10.1242/jcs.107.1.145.

Abstract

We have investigated the interactions occurring between the prelysosomal compartment, PLC/late endosome, and terminal lysosomes using an approach that allowed us to internalize and deliver specific tracers to these compartments, and look for evidence of their meeting. After internalization of sucrose, the lysosomes (sucrosomes), but not the PLC/late endosomes, became significantly swollen and visible in the light microscope. If invertase is then added to the medium it reaches the lysosomes where it cleaves sucrose into fructose and glucose. These sugars, unlike sucrose, can be transported into the cytosol, resulting in the disappearance of the sucrosomes. We previously showed that phagocytosed latex beads are delivered specifically to, and reside in, the PLC/late endosome, a stage earlier than the lysosomes in the endocytic pathway (Rabinowitz et al. (1992) J. Cell Biol. 116, 95-112). In the present study, we demonstrate that invertase conjugated to the latex beads, and thus immobilized in late endosomes, has access to the sucrose present in the more distal lysosomes. Experiments using nocodazole indicate that this retrograde fusion event requires the presence of an intact microtubule network. The simplest interpretation of our results is that the two compartments fuse, allowing for a retrograde transport of sucrose from the lysosomes to the PLC/late endosomes.

摘要

我们采用了一种方法来研究前溶酶体区室、PLC/晚期内体和终末溶酶体之间发生的相互作用,这种方法使我们能够将特定的示踪剂内化并递送至这些区室,并寻找它们相遇的证据。蔗糖内化后,溶酶体(蔗糖体)而非PLC/晚期内体显著肿胀,在光学显微镜下可见。如果随后将转化酶添加到培养基中,它会到达溶酶体,在那里将蔗糖裂解成果糖和葡萄糖。与蔗糖不同,这些糖可以转运到细胞质中,导致蔗糖体消失。我们之前表明,吞噬的乳胶珠会特异性地递送至PLC/晚期内体并驻留在其中,这是内吞途径中早于溶酶体的一个阶段(Rabinowitz等人,(1992年)《细胞生物学杂志》116卷,95 - 112页)。在本研究中,我们证明与乳胶珠偶联并因此固定在晚期内体中的转化酶能够接触到更远处溶酶体中存在的蔗糖。使用诺考达唑的实验表明,这种逆行融合事件需要完整的微管网络存在。我们结果的最简单解释是这两个区室融合,使得蔗糖能够从溶酶体逆行转运至PLC/晚期内体。

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