Developmental mechanism of the periodic membrane skeleton in axons.

Abstract:

:Actin, spectrin, and associated molecules form a periodic sub-membrane lattice structure in axons. How this membrane skeleton is developed and why it preferentially forms in axons are unknown. Here, we studied the developmental mechanism of this lattice structure. We found that this structure emerged early during axon development and propagated from proximal regions to distal ends of axons. Components of the axon initial segment were recruited to the lattice late during development. Formation of the lattice was regulated by the local concentration of βII spectrin, which is higher in axons than in dendrites. Increasing the dendritic concentration of βII spectrin by overexpression or by knocking out ankyrin B induced the formation of the periodic structure in dendrites, demonstrating that the spectrin concentration is a key determinant in the preferential development of this structure in axons and that ankyrin B is critical for the polarized distribution of βII spectrin in neurites.

journal_name

Elife

journal_title

eLife

authors

Zhong G,He J,Zhou R,Lorenzo D,Babcock HP,Bennett V,Zhuang X

doi

10.7554/eLife.04581

subject

Has Abstract

pub_date

2014-12-23 00:00:00

issn

2050-084X

journal_volume

3

pub_type

杂志文章

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