首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Cytoplasmic dynein-dependent vesicular transport from early to late endosomes published erratum appears in J Cell Biol 1994 Feb;124(3):397
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Cytoplasmic dynein-dependent vesicular transport from early to late endosomes published erratum appears in J Cell Biol 1994 Feb;124(3):397

机译:从早期到晚期内体的细胞质动力蛋白依赖性囊泡运输已发表的勘误出现在J Cell Biol 1994 Feb; 124(3):397

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摘要

We have used an in vitro fusion assay to study the mechanisms of transport from early to late endosomes. Our data show that the late endosomes share with the early endosomes a high capacity to undergo homotypic fusion in vitro. However, direct fusion of early with late endosomes does not occur. We have purified vesicles which are intermediates during transport from early to late endosomes in vivo, and analyzed their protein composition in two-dimensional gels. In contrast to either early or late endosomes, these vesicles do not appear to contain unique proteins. Moreover, these vesicles undergo fusion with late endosomes in vitro, but not with each other or back with early endosomes. In vitro, fusion of these endosomal vesicles with late endosomes is stimulated by polymerized microtubules, consistent with the known role of microtubules during early to late endosome transport in vivo. In contrast, homotypic fusion of early or late endosomes is microtubule-independent. Finally, this stimulation by microtubules depends on microtubule-associated proteins and requires the presence of the minus-end directed motor cytoplasmic dynein, but not the plus-end directed motor kinesin, in agreement with the microtubule organization in vivo. Our data strongly suggest that early and late endosomes are separate, highly dynamic organelles, which are connected by a microtubule-dependent vesicular transport step.
机译:我们已经使用了体外融合试验来研究从早期到晚期内体的转运机制。我们的数据表明,晚期内体与早期内体在体外具有同型融合的高能力。但是,早期和晚期内体的直接融合并未发生。我们已经纯化了囊泡,它们是体内从早期到晚期内体运输过程中的中间产物,并在二维凝胶中分析了它们的蛋白质组成。与早期或晚期内体相比,这些囊泡似乎不包含独特的蛋白质。而且,这些囊泡在体外与晚期内体融合,但彼此不融合或与早期内体融合。在体外,这些微囊泡与晚期内体的融合受到聚合微管的刺激,这与微管在体内早期至晚期内体运输过程中的已知作用相一致。相反,早期或晚期内体的同型融合是不依赖微管的。最后,微管的刺激取决于与微管相关的蛋白质,并且需要与体内的微管组织相一致的负端定向运动细胞质动力蛋白,而不是正端定向运动驱动蛋白。我们的数据强烈表明,早期和晚期内体是分开的,高度动态的细胞器,它们通过微管依赖性囊泡运输步骤连接。

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