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丝状伪足是皮质神经元轴突起始所必需的。

Filopodia are required for cortical neurite initiation.

作者信息

Dent Erik W, Kwiatkowski Adam V, Mebane Leslie M, Philippar Ulrike, Barzik Melanie, Rubinson Douglas A, Gupton Stephanie, Van Veen J Edward, Furman Craig, Zhang Jiangyang, Alberts Arthur S, Mori Susumu, Gertler Frank B

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

Nat Cell Biol. 2007 Dec;9(12):1347-59. doi: 10.1038/ncb1654. Epub 2007 Nov 18.

Abstract

Extension of neurites from a cell body is essential to form a functional nervous system; however, the mechanisms underlying neuritogenesis are poorly understood. Ena/VASP proteins regulate actin dynamics and modulate elaboration of cellular protrusions. We recently reported that cortical axon-tract formation is lost in Ena/VASP-null mice and Ena/VASP-null cortical neurons lack filopodia and fail to elaborate neurites. Here, we report that neuritogenesis in Ena/VASP-null neurons can be rescued by restoring filopodia formation through ectopic expression of the actin nucleating protein mDia2. Conversely, wild-type neurons in which filopodia formation is blocked fail to elaborate neurites. We also report that laminin, which promotes the formation of filopodia-like actin-rich protrusions, rescues neuritogenesis in Ena/VASP-deficient neurons. Therefore, filopodia formation is a key prerequisite for neuritogenesis in cortical neurons. Neurite initiation also requires microtubule extension into filopodia, suggesting that interactions between actin-filament bundles and dynamic microtubules within filopodia are crucial for neuritogenesis.

摘要

神经突从细胞体伸出对于形成功能性神经系统至关重要;然而,神经突形成的潜在机制却知之甚少。Ena/VASP蛋白调节肌动蛋白动力学并调节细胞突起的形成。我们最近报道,在Ena/VASP基因敲除小鼠中皮质轴突束形成缺失,且Ena/VASP基因敲除的皮质神经元缺乏丝状伪足且无法形成神经突。在此,我们报道通过肌动蛋白成核蛋白mDia2的异位表达恢复丝状伪足形成可挽救Ena/VASP基因敲除神经元中的神经突形成。相反,丝状伪足形成受阻的野生型神经元无法形成神经突。我们还报道,促进富含肌动蛋白的丝状伪足样突起形成的层粘连蛋白可挽救Ena/VASP缺陷神经元中的神经突形成。因此,丝状伪足形成是皮质神经元神经突形成的关键先决条件。神经突起始还需要微管延伸至丝状伪足中,这表明丝状伪足内肌动蛋白丝束与动态微管之间的相互作用对于神经突形成至关重要。

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