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通过沿细胞质中自发形成的微管进行易位,使径向微管阵列居中。

Centering of a radial microtubule array by translocation along microtubules spontaneously nucleated in the cytoplasm.

作者信息

Malikov Viacheslav, Cytrynbaum Eric N, Kashina Anna, Mogilner Alexander, Rodionov Vladimir

机构信息

Department of Cell Biology and Center for Cell Analysis and Modeling, University of Connecticut Health Center, Farmington, CT 06032-1507, USA.

出版信息

Nat Cell Biol. 2005 Dec;7(12):1213-8. doi: 10.1038/ncb1332. Epub 2005 Nov 6.

Abstract

Positioning of a radial array of microtubules (MTs) in the cell centre is crucial for cytoplasmic organization, but the mechanisms of such centering are difficult to study in intact cells that have pre-formed radial arrays. Here, we use cytoplasmic fragments of melanophores, and cytoplasts of BS-C-1 cells to study MT centering mechanisms. Using live imaging and computer modelling, we show that the MT aster finds a central location in the cytoplasm by moving along spontaneously nucleated non-astral MTs towards a point at which MT nucleation events occur equally on all sides. We hypothesize that similar mechanisms, in the presence of the centrosome, contribute to this centering mechanism and ensure the robustness of cytoplasmic organization.

摘要

微管(MTs)径向阵列在细胞中心的定位对于细胞质组织至关重要,但在具有预先形成的径向阵列的完整细胞中,这种居中机制很难研究。在这里,我们使用黑素细胞的细胞质片段以及BS-C-1细胞的胞质体来研究微管居中机制。通过实时成像和计算机建模,我们发现微管星体通过沿着自发形成的非星体微管向一个点移动,该点在各个方向上微管成核事件均等发生,从而在细胞质中找到中心位置。我们推测,在存在中心体的情况下,类似机制有助于这种居中机制,并确保细胞质组织的稳健性。

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