The Actin Nucleating Arp2/3 Complex Contributes to the Formation of Axonal Filopodia and Branches Through the Regulation of Actin Patch Precursors to Filopodia

被引:91
|
作者
Spillane, Mirela [1 ]
Ketschek, Andrea [1 ]
Jones, Steven L. [1 ]
Korobova, Farida [2 ]
Marsick, Bonnie [3 ]
Lanier, Lorene [3 ]
Svitkina, Tatyana [2 ]
Gallo, Gianluca [1 ]
机构
[1] Drexel Univ, Dept Neurobiol & Anat, Coll Med, Philadelphia, PA 19129 USA
[2] Univ Penn, Dept Biol, Philadelphia, PA 19104 USA
[3] Univ Minnesota, Dept Neurosci, Minneapolis, MN 55455 USA
关键词
WAVE1; cortactin; Arp2; spinal cord; growth cone; NERVE GROWTH-FACTOR; SENSORY NEURONS; MESSENGER-RNAS; RHOA-KINASE; MYOSIN-II; DYNAMICS; CYTOSKELETAL; MECHANISMS; GUIDANCE; 3-KINASE;
D O I
10.1002/dneu.20907
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The emergence of axonal filopodia is the first step in the formation of axon collateral branches. In vitro, axonal filopodia emerge from precursor cytoskeletal structures termed actin patches. However, nothing is known about the cytoskeletal dynamics of the axon leading to the formation of filopodia in the relevant tissue environment. In this study we investigated the role of the actin nucleating Arp2/3 complex in the formation of sensory axon actin patches, filopodia, and branches. By combining in ovo chicken embryo electroporation mediated gene delivery with a novel acute ex vivo spinal cord preparation, we demonstrate that actin patches form along sensory axons and give rise to filopodia in situ. Inhibition of Arp2/3 complex function in vitro and in vivo decreases the number of axonal filopodia. In vitro, Arp2/3 complex subunits and upstream regulators localize to actin patches. Analysis of the organization of actin filaments in actin patches using platinum replica electron microscopy reveals that patches consist of networks of actin filaments, and filaments in axonal filopodia exhibit an organization consistent with the Arp2/3-based convergent elongation mechanism. Nerve growth factor (NGF) promotes formation of axonal filopodia and branches through phosphoinositide 3-kinase (PI3K). Inhibition of the Arp2/3 complex impairs NGF/PI3K-induced formation of axonal actin patches, filopodia, and the formation of collateral branches. Collectively, these data reveal that the Arp2/3 complex contributes to the formation of axon collateral branches through its involvement in the formation of actin patches leading to the emergence of axonal filopodia. (C) 2011 Wiley Periodicals, Inc. Develop Neurobiol 71: 747-758, 2011
引用
收藏
页码:747 / 758
页数:12
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