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Arrangement of radial actin bundles in the growth cone of Aplysia bag cell neurons shows the immediate past history of filopodial behavior

机译:Ap肌袋状细胞神经元生长锥中放射状肌动蛋白束的排列显示了近视行为

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摘要

Filopodia that protrude forward from the lamellipodium, located at the leading edge of a neuronal growth cone, are needed to guide the extension of a nerve cell. At the core of each filopodium an actin bundle forms and grows into the lamellipodium. By using kymographs of time-lapse polarized light images we examined the relationship between the behavior of the filopodia, the actin bundles immediately proximal to the filopodia, and the shapes and composition of actin bundles in the whole lamellipodium. We find that the shapes of actin bundles, such as tilt, fork, and fused zones, originate at the leading edge and are surprisingly well preserved during retrograde transport of the actin cytoskeleton in the whole lamellipodium. The number of filaments that make up the radial actin bundles, as displayed by their birefringence retardation, also is preserved during retrograde flow over a distance of 4–8 μm from the leading edge into the lamellipodium. Thus, the disposition of the actin bundles in the lamellipodium frozen at any time point preserves and portrays a history of the past behavior of actin bundles proximal to the filopodia and the behavior of the filopodia themselves. These findings suggest that the arrangement of actin bundles in static image records, such as electron or fluorescence micrographs of fixed and stained specimens, can in fact reveal the sequence of the past history of filopodial behavior and the generation, density, fusion, etc. of the filaments in the actin bundles.
机译:从位于神经元生长锥前缘的片状脂质体向前突出的丝足需要引导神经细胞的延伸。在每个假单胞菌的核心,肌动蛋白束形成并生长成片状脂质体。通过使用延时偏振光图像的运动记录仪,我们检查了丝状伪足的行为,紧邻丝状伪足的肌动蛋白束与整个lamellipodium中肌动蛋白束的形状和组成之间的关系。我们发现肌动蛋白束的形状,例如倾斜,叉状和融合区,起源于前缘,并且在整个lamellipodium中肌动蛋白细胞骨架的逆行运输过程中得到了令人惊讶的良好保存。从双折射阻滞可以看出,构成放射状肌动蛋白束的细丝数量在从前缘到片状脂质体的逆行流动过程中,也保持了4-8μm的距离。因此,肌动蛋白束在任何时间点冷冻的片状脂蛋白中的布置都保留并描绘了过去在丝状伪足附近的肌动蛋白束的行为以及丝状伪足本身的行为的历史。这些发现表明,肌动蛋白束在静态图像记录中的排列,例如固定和染色标本的电子或荧光显微照片,实际上可以揭示丝虫行为的历史记录,以及丝状蛋白的产生,密度,融合等。肌动蛋白束中的细丝。

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