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谁需要微管?尽管缺乏正常的微管轨道,但 MTOC、高尔基体复合体和内质网出口位点的成肌重排仍然存在。

Who needs microtubules? Myogenic reorganization of MTOC, Golgi complex and ER exit sites persists despite lack of normal microtubule tracks.

机构信息

Light Imaging Section, Office of Science and Technology, National Institute of Arthritis, Musculoskeletal, and Skin Disease, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

PLoS One. 2011;6(12):e29057. doi: 10.1371/journal.pone.0029057. Epub 2011 Dec 27.

Abstract

A wave of structural reorganization involving centrosomes, microtubules, Golgi complex and ER exit sites takes place early during skeletal muscle differentiation and completely remodels the secretory pathway. The mechanism of these changes and their functional implications are still poorly understood, in large part because all changes occur seemingly simultaneously. In an effort to uncouple the reorganizations, we have used taxol, nocodazole, and the specific GSK3-β inhibitor DW12, to disrupt the dynamic microtubule network of differentiating cultures of the mouse skeletal muscle cell line C2. Despite strong effects on microtubules, cell shape and cell fusion, none of the treatments prevented early differentiation. Redistribution of centrosomal proteins, conditional on differentiation, was in fact increased by taxol and nocodazole and normal in DW12. Redistributions of Golgi complex and ER exit sites were incomplete but remained tightly linked under all circumstances, and conditional on centrosomal reorganization. We were therefore able to uncouple microtubule reorganization from the other events and to determine that centrosomal proteins lead the reorganization hierarchy. In addition, we have gained new insight into structural and functional aspects of the reorganization of microtubule nucleation during myogenesis.

摘要

在骨骼肌分化的早期,涉及中心体、微管、高尔基体复合体和内质网出口位点的结构重排波发生,并完全重塑了分泌途径。这些变化的机制及其功能意义仍知之甚少,在很大程度上是因为所有变化似乎都是同时发生的。为了分离这些重排,我们使用紫杉醇、诺考达唑和特定的 GSK3-β 抑制剂 DW12 来破坏分化培养的小鼠骨骼肌细胞系 C2 的动态微管网络。尽管这些处理对微管、细胞形状和细胞融合有很强的影响,但没有一种处理能阻止早期分化。事实上,有条件的中心体蛋白的重新分布在紫杉醇和诺考达唑的作用下增加,在 DW12 中是正常的。高尔基体复合体和内质网出口位点的重排不完全,但在所有情况下仍然紧密相连,并以中心体的重排为条件。因此,我们能够将微管重排与其他事件分离,并确定中心体蛋白在重排层次中起主导作用。此外,我们还获得了关于肌发生过程中微管成核结构和功能方面的新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb2f/3246457/19dc3c7a9a0d/pone.0029057.g001.jpg

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