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Microtubule-Organizing Centers
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2017-10-06 00:00:00 , DOI: 10.1146/annurev-cellbio-100616-060615
Jingchao Wu 1 , Anna Akhmanova 1
Affiliation  

The organization of microtubule networks is crucial for controlling chromosome segregation during cell division, for positioning and transport of different organelles, and for cell polarity and morphogenesis. The geometry of microtubule arrays strongly depends on the localization and activity of the sites where microtubules are nucleated and where their minus ends are anchored. Such sites are often clustered into structures known as microtubule-organizing centers, which include the centrosomes in animals and spindle pole bodies in fungi. In addition, other microtubules, as well as membrane compartments such as the cell nucleus, the Golgi apparatus, and the cell cortex, can nucleate, stabilize, and tether microtubule minus ends. These activities depend on microtubule-nucleating factors, such as γ-tubulin-containing complexes and their activators and receptors, and microtubule minus end–stabilizing proteins with their binding partners. Here, we provide an overview of the current knowledge on how such factors work together to control microtubule organization in different systems.

中文翻译:


微管组织中心

微管网络的组织对于控制细胞分裂过程中的染色体分离,不同细胞器的定位和运输以及细胞极性和形态发生至关重要。微管阵列的几何形状在很大程度上取决于微管成核和其负端锚定的部位的定位和活性。这些位点通常聚集在称为微管组织中心的结构中,其中包括动物的中心体和真菌的纺锤体。此外,其他微管以及诸如细胞核,高尔基体和细胞皮层之类的膜区室,可以使负端的微管成核,稳定并束缚。这些活动取决于微管成核因子,例如含γ-微管蛋白的复合物及其激活剂和受体,以及微管减去末端稳定蛋白及其结合伴侣。在这里,我们提供了有关这些因素如何共同控制不同系统中微管组织的最新知识的概述。

更新日期:2017-10-06
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