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首页> 外文期刊>International Journal of Cell Biology >The Role of Molecular Microtubule Motors and the Microtubule Cytoskeleton in Stress Granule Dynamics
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The Role of Molecular Microtubule Motors and the Microtubule Cytoskeleton in Stress Granule Dynamics

机译:分子微管马达和微管细胞骨架在应力颗粒动力学中的作用

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摘要

Stress granules (SGs) are cytoplasmic foci that appear in cells exposed to stress-induced translational inhibition. SGs function as a triage center, where mRNAs are sorted for storage, degradation, and translation reinitiation. The underlying mechanisms of SGs dynamics are still being characterized, although many key players have been identified. The main components of SGs are stalled 48S preinitiation complexes. To date, many other proteins have also been found to localize in SGs and are hypothesized to function in SG dynamics. Most recently, the microtubule cytoskeleton and associated motor proteins have been demonstrated to function in SG dynamics. In this paper, we will discuss current literature examining the function of microtubules and the molecular microtubule motors in SG assembly, coalescence, movement, composition, organization, and disassembly.
机译:应激颗粒(SGs​​)是细胞质灶,出现在受应激诱导的翻译抑制作用的细胞中。 SGs作为分类中心,在其中将mRNA进行分类以进行存储,降解和翻译重新初始化。尽管已经确定了许多关键参与者,但SGs动态的基本机制仍在表征中。 SG的主要组件是停滞的48S预初始化复合体。迄今为止,还发现许多其他蛋白质位于SG中,并被假定在SG动态中起作用。最近,已经证明微管细胞骨架和相关的运动蛋白在SG动力学中起作用。在本文中,我们将讨论当前文献,这些文献研究微管和分子微管马达在SG组装,合并,运动,组成,组织和拆卸中的功能。

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