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蛋白质在高尔基体中的分选

Protein sorting in the Golgi complex.

作者信息

Füllekrug J, Nilsson T

机构信息

Cell Biology Programme, European Molecular Biology Laboratory, Meyerhofstrasse 1, D-69012 Heidelberg, Germany.

出版信息

Biochim Biophys Acta. 1998 Aug 14;1404(1-2):77-84. doi: 10.1016/s0167-4889(98)00048-2.

Abstract

Even after one hundred years, the Golgi apparatus remains a major challenge in the field of Cell Biology. This is particularly true in terms of transport and of protein sorting. For example, the question how cargo proteins are transported through this organelle is still a matter of debate. Emphasis has been put on the role of anterograde and retrograde transport vesicles. These have been proposed to carry cargo from cisterna to cisterna and to recycle components needed for further rounds of transport. Alternatively, anterograde movement of cargo takes place in cisternal membranes rather than transport vesicles. These membranes assemble and mature in a cis to trans direction. In this case, retrograde transport vesicles need to recycle all components of the Golgi apparatus and this demands a highly dynamic and efficient sorting machinery. Here we will discuss possible mechanisms for protein sorting in the context of cisternal maturation and propose that a common mechanism is sufficient to explain both transport of cargo and sorting of resident proteins.

摘要

即使在一百年后,高尔基体仍然是细胞生物学领域的一个重大挑战。在运输和蛋白质分选方面尤其如此。例如,货物蛋白如何通过这个细胞器运输的问题仍然存在争议。重点一直放在顺行和逆行运输囊泡的作用上。有人提出这些囊泡将货物从一个扁平囊运输到另一个扁平囊,并回收进一步运输轮次所需的成分。或者,货物的顺行移动发生在扁平囊膜而不是运输囊泡中。这些膜以从顺面到反面的方向组装和成熟。在这种情况下,逆行运输囊泡需要回收高尔基体的所有成分,这需要一个高度动态和高效的分选机制。在这里,我们将在扁平囊成熟的背景下讨论蛋白质分选的可能机制,并提出一个共同的机制足以解释货物的运输和驻留蛋白的分选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/65ad/7127375/b3570a287ce6/gr1.jpg

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