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Capacity of the Golgi apparatus for biogenesis from the endoplasmic reticulum

机译:高尔基体从内质网生物发生的能力

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It is unclear whether the mammalian Golgi apparatus can form de novo from the ER or whether it requires a preassembled Golgi matrix. As a test, we assayed Golgi reassembly after forced redistribution of Golgi matrix proteins into the ER. Two conditions were used. In one, ER redistribution was achieved using a combination of brefeldin A (BFA) to cause Golgi collapse and H89 to block ER export. Unlike brefeldin A alone, which leaves matrix proteins in relatively large remnant structures outside the ER, the addition of H89 to BFA-treated cells caused ER accumulation of all Golgi markers tested. In the other, clofibrate treatment induced ER redistribution of matrix and nonmatrix proteins. Significantly, Golgi reassembly after either treatment was robust, implying that the Golgi has the capacity to form de novo from the ER. Furthermore, matrix proteins reemerged from the ER with faster ER exit rates. This, together with the sensitivity of BFA remnants to ER export blockade, suggests that presence of matrix proteins in BFA remnants is due to cycling via the ER and preferential ER export rather than their stable assembly in a matrix outside the ER. In summary, the Golgi apparatus appears capable of efficient self-assembly. [References: 42]
机译:尚不清楚哺乳动物的高尔基体是否可以从ER重新形成或是否需要预先组装的高尔基体。作为测试,我们在强迫将高尔基体蛋白重新分布到内质网后检测了高尔基体重组。使用了两个条件。在其中之一中,使用布雷菲德菌素A(BFA)导致高尔基体崩溃和H89阻止了ER的出口,从而实现了ER的重新分配。不像布雷菲德菌素A那样,其基质蛋白在ER之外的相对较大的残留结构中保留,而向BFA处理的细胞中加入H89会导致所有测试的高尔基标记物ER蓄积。另一方面,氯贝贝特治疗可诱导基质和非基质蛋白的ER重新分布。值得注意的是,任一处理后的高尔基体重组都很牢固,这表明高尔基体具有从ER重新形成的能力。此外,从ER中重新产生的基质蛋白具有更快的ER退出速率。这与BFA残余物对ER出口封锁的敏感性一起,表明BFA残余物中基质蛋白的存在是由于通过ER循环和优先的ER出口,而不是它们在ER外的基质中的稳定装配所致。总之,高尔基体装置似乎能够有效地自我组装。 [参考:42]

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