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The Golgin GCC88 Is Required for Efficient Retrograde Transport of Cargo from the Early Endosomes to the Trans-Golgi Network

机译:从早期的内体到反式高尔基网络的高效逆向运输需要高尔金GCC88

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Retrograde transport pathways from early/recycling endosomes to the trans -Golgi network (TGN) are poorly defined. We have investigated the role of TGN golgins in retrograde trafficking. Of the four TGN golgins, p230/golgin-245, golgin-97, GCC185, and GCC88, we show that GCC88 defines a retrograde transport pathway from early endosomes to the TGN. Depletion of GCC88 in HeLa cells by interference RNA resulted in a block in plasma membrane–TGN recycling of two cargo proteins, TGN38 and a CD8 mannose-6-phosphate receptor cytoplasmic tail fusion protein. In GCC88-depleted cells, cargo recycling was blocked in the early endosome. Depletion of GCC88 dramatically altered the TGN localization of the t-SNARE syntaxin 6, a syntaxin required for endosome to TGN transport. Furthermore, the transport block in GCC88-depleted cells was rescued by syntaxin 6 overexpression. Internalized Shiga toxin was efficiently transported from endosomes to the Golgi of GCC88-depleted cells, indicating that Shiga toxin and TGN38 are internalized by distinct retrograde transport pathways. These findings have identified an essential role for GCC88 in the localization of TGN fusion machinery for transport from early endosomes to the TGN, and they have allowed the identification of a retrograde pathway which differentially selects TGN38 and mannose-6-phosphate receptor from Shiga toxin.
机译:从早期/回收内体到反-高尔基体网络(TGN)的逆行运输途径定义不清。我们已经研究了TGN甘菊素在逆行贩运中的作用。在四种TGN球蛋白中,p230 / golgin-245,golgin-97,GCC185和GCC88,我们显示GCC88定义了从早期内体到TGN的逆行转运途径。干扰RNA耗尽HeLa细胞中GCC88的能力导致了两种膜蛋白TGN38和CD8甘露糖6磷酸受体细胞质尾融合蛋白的质膜-TGN再循环受阻。在GCC88耗尽的细胞中,早期的内体阻止了货物的再循环。 GCC88的耗尽极大地改变了t-SNARE语法6的TGN定位,t-SNARE语法6是内体向TGN转运所必需的语法。此外,通过语法6的过表达拯救了GCC88耗尽的细胞中的转运块。内在的志贺毒素可以有效地从内体转运到GCC88缺失细胞的高尔基体中,这表明志贺毒素和TGN38是通过独特的逆行转运途径内在的。这些发现已经确定了GCC88在从早期内体到TGN转运的TGN融合机器的定位中的重要作用,并且它们允许鉴定从志贺毒素中差异选择TGN38和甘露糖6-磷酸受体的逆行途径。

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