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Evidence that the entire Golgi apparatus cycles in interphase HeLa cells: sensitivity of Golgi matrix proteins to an ER exit block

机译:整个高尔基体在相间HeLa细胞中循环的证据:高尔基体蛋白对ER出口阻滞的敏感性

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摘要

We tested whether the entire Golgi apparatus is a dynamic structure in interphase mammalian cells by assessing the response of 12 different Golgi region proteins to an endoplasmic reticulum (ER) exit block. The proteins chosen spanned the Golgi apparatus and included both Golgi glycosyltransferases and putative matrix proteins. Protein exit from ER was blocked either by microinjection of a GTP-restricted Sar1p mutant protein in the presence of a protein synthesis inhibitor, or by plasmid-encoded expression of the same dominant negative Sar1p. All Golgi region proteins examined lost juxtanuclear Golgi apparatus–like distribution as scored by conventional and confocal fluorescence microscopy in response to an ER exit block, albeit with a differential dependence on Sar1p concentration. Redistribution of GalNAcT2 was more sensitive to low Sar1pdn concentrations than giantin or GM130. Redistribution was most rapid for p27, COPI, and p115. Giantin, GM130, and GalNAcT2 relocated with approximately equal kinetics. Distinct ER accumulation could be demonstrated for all integral membrane proteins. ER-accumulated Golgi region proteins were functional. Photobleaching experiments indicated that Golgi-to-ER protein cycling occurred in the absence of any ER exit block. We conclude that the entire Golgi apparatus is a dynamic structure and suggest that most, if not all, Golgi region–integral membrane proteins cycle through ER in interphase cells.
机译:我们通过评估12种不同的高尔基体区域蛋白对内质网(ER)出口阻滞的反应,来测试整个高尔基体在相间哺乳动物细胞中是否为动态结构。选择的蛋白质跨越高尔基体,包括高尔基糖基转移酶和推定的基质蛋白。在蛋白质合成抑制剂的存在下,通过微量注射GTP限制的Sar1p突变蛋白​​,或通过质粒编码的相同显性阴性Sar1p的表达,可以阻止ER的蛋白质流出。传统和共聚焦荧光显微镜对ER出口阻滞的反应,检查了所有高尔基体区域蛋白质丢失的近核高尔基体样分布,尽管对Sar1p浓度的依赖性不同。 GalNAcT2的重新分布对低Sar1pdn浓度的敏感度比巨型蛋白或GM130更敏感。对于p27,COPI和p115,重新分配最快。 Giantin,GM130和GalNAcT2以近似相等的动力学迁移。 ER蓄积对于所有完整的膜蛋白都可以证明。 ER积累的高尔基体区域蛋白起作用。光漂白实验表明,在没有任何ER出口阻滞的情况下发生了高尔基转ER蛋白循环。我们得出结论,整个高尔基体装置是一个动态结构,并表明,即使不是全部,大多数高尔基体-整合膜蛋白也会在相间细胞中通过ER循环。

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