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细胞骨架与细胞器相互作用有哪些新进展?微管与高尔基体之间的关系。

What's new in cytoskeleton-organelle interactions? Relationship between microtubules and the Golgi-apparatus.

作者信息

Duden R, Ho W C, Allan V J, Kreis T E

机构信息

European Molecular Biology Laboratory, Heidelberg, FRG.

出版信息

Pathol Res Pract. 1990 Aug;186(4):535-41. doi: 10.1016/S0344-0338(11)80478-4.

Abstract

Several biochemical processes in animal cells are confined to distinct membrane-bounded compartments. Segregation of specialized functions into different compartments necessitates intercompartment transfer of material. This transfer is mediated by carrier vesicles which, by precise sorting and transport mechanisms, are targetted to their correct destinations. Microtubules, major constituents of the cytoskeleton, are involved both in these intracellular transport processes and in the spatial organization of cytoplasmic organelles. Accumulating evidence suggests that various classes of membranous organelles interact with microtubules. The positioning of several organelles, including the Golgi apparatus and lysosomes, depends on an intact interphase microtubule network. Furthermore, it has been shown that many of these organelles, for example Golgi elements, tubules of the endoplasmic reticulum, exocytic or secretory vesicles and lysosomes move along microtubules. In this article we will discuss the role of microtubules in the movement and positioning of elements of the Golgi complex. The first part will summarize structural and functional aspects of microtubules and the Golgi apparatus and review evidence for their interaction. In the second part, the possible physiological relevance of this interaction will be discussed and correlated with other membrane-microtubule interactions. Finally, emerging questions and perspectives in this field are outlined.

摘要

动物细胞中的几种生化过程局限于不同的膜结合区室。将特定功能分隔到不同区室需要物质在区室间转移。这种转移由载体囊泡介导,载体囊泡通过精确的分选和运输机制被靶向到其正确的目的地。微管是细胞骨架的主要成分,既参与这些细胞内运输过程,也参与细胞质细胞器的空间组织。越来越多的证据表明,各类膜性细胞器与微管相互作用。包括高尔基体和溶酶体在内的几种细胞器的定位取决于完整的间期微管网络。此外,已经表明许多这些细胞器,例如高尔基体成分、内质网管、胞吐或分泌囊泡以及溶酶体沿着微管移动。在本文中,我们将讨论微管在高尔基体复合体成分的移动和定位中的作用。第一部分将总结微管和高尔基体的结构和功能方面,并综述它们相互作用的证据。在第二部分,将讨论这种相互作用可能的生理相关性,并与其他膜 - 微管相互作用相关联。最后,概述该领域新出现的问题和前景。

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