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Isolation of Functional Golgi-derived Vesicles with a Possible Role in Retrograde Transport

机译:功能性高尔基体囊泡的分离可能在逆行运输中的作用

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摘要

Secretory proteins enter the Golgi apparatus when transport vesicles fuse with the cis-side and exit in transport vesicles budding from the trans-side. Resident Golgi enzymes that have been transported in the cis-to-trans direction with the secretory flow must be recycled constantly by retrograde transport in the opposite direction. In this study, we describe the functional characterization of Golgi-derived transport vesicles that were isolated from tissue culture cells. We found that under the steady-state conditions of a living cell, a fraction of resident Golgi enzymes was found in vesicles that could be separated from cisternal membranes. These vesicles appeared to be depleted of secretory cargo. They were capable of binding to and fusion with isolated Golgi membranes, and after fusion their enzymatic contents most efficiently processed cargo that had just entered the Golgi apparatus. Those results indicate a possible role for these structures in recycling of Golgi enzymes in the Golgi stack.
机译:当转运囊泡与顺侧融合时,分泌蛋白进入高尔基体,并从转运侧出芽的转运囊泡中流出。沿分泌方向顺-反方向转运的高尔基体必须通过逆向转运逆向不断循环。在这项研究中,我们描述了从组织培养细胞分离的高尔基体运输小泡的功能表征。我们发现,在活细胞的稳态条件下,在囊泡中发现了一部分驻留的高尔基酶,这些酶可以与脑膜分离。这些囊泡似乎耗尽了分泌的货物。它们能够与分离的高尔基体膜结合并融合,并且融合后它们的酶成分最有效地处理了刚进入高尔基体的货物。这些结果表明这些结构在高尔基体中的高尔基酶的再循环中可能发挥作用。

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