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丝状伪足和放射状肌动蛋白束在神经元生长锥上横向移动的机制。

Mechanism of lateral movement of filopodia and radial actin bundles across neuronal growth cones.

作者信息

Oldenbourg R, Katoh K, Danuser G

机构信息

Marine Biological Laboratory, Woods Hole, Massachusetts 02543, USA.

出版信息

Biophys J. 2000 Mar;78(3):1176-82. doi: 10.1016/S0006-3495(00)76675-6.

Abstract

We investigated the motion of filopodia and actin bundles in lamellipodia of motile cells, using time-lapse sequences of polarized light images. We measured the velocity of retrograde flow of the actin network and the lateral motion of filopodia and actin bundles of the lamellipodium. Upon noting that laterally moving filopodia and actin bundles are always tilted with respect to the direction of retrograde flow, we propose a simple geometric model for the mechanism of lateral motion. The model establishes a relationship between the speed of lateral motion of actin bundles, their tilt angle with respect to the direction of retrograde flow, and the speed of retrograde flow in the lamellipodium. Our experimental results verify the quantitative predictions of the model. Furthermore, our observations support the hypothesis that lateral movement of filopodia is caused by retrograde flow of tilted actin bundles and by their growth through actin polymerization at the tip of the bundles inside the filopodia. Therefore we conclude that the lateral motion of tilted filopodia and actin bundles does not require a separate motile mechanism but is the result of retrograde flow and the assembly of actin filaments and bundles near the leading edge of the lamellipodium.

摘要

我们使用偏振光图像的延时序列,研究了运动细胞片状伪足中丝状伪足和肌动蛋白束的运动。我们测量了肌动蛋白网络逆行流动的速度以及片状伪足中丝状伪足和肌动蛋白束的横向运动。在注意到横向移动的丝状伪足和肌动蛋白束总是相对于逆行流动方向倾斜后,我们提出了一个关于横向运动机制的简单几何模型。该模型建立了肌动蛋白束横向运动速度、它们相对于逆行流动方向的倾斜角度以及片状伪足中逆行流动速度之间的关系。我们的实验结果验证了该模型的定量预测。此外,我们的观察结果支持这样的假设,即丝状伪足的横向运动是由倾斜的肌动蛋白束的逆行流动以及它们通过丝状伪足内部束尖端的肌动蛋白聚合生长所引起的。因此,我们得出结论,倾斜的丝状伪足和肌动蛋白束的横向运动不需要单独的运动机制,而是逆行流动以及片状伪足前沿附近肌动蛋白丝和束组装的结果。

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本文引用的文献

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Birefringence of single and bundled microtubules.单根和束状微管的双折射
Biophys J. 1998 Jan;74(1):645-54. doi: 10.1016/S0006-3495(98)77824-5.
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A new view on polarization microscopy.偏光显微镜的新视角。
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Actin-based cell motility and cell locomotion.基于肌动蛋白的细胞运动和细胞迁移。
Cell. 1996 Feb 9;84(3):371-9. doi: 10.1016/s0092-8674(00)81281-7.

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