Subcortical cytoskeleton periodicity throughout the nervous system

2016 | journal article; research paper. A publication with affiliation to the University of Göttingen.

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​Subcortical cytoskeleton periodicity throughout the nervous system​
d'Este, E. ; Kamin, D.; Velte, C.; Göttfert, F. ; Simons, M.   & Hell, S. ​ (2016) 
Scientific Reports6 art. 22741​.​ DOI: https://doi.org/10.1038/srep22741 

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Authors
d'Este, Elisa ; Kamin, Dirk; Velte, Caroline; Göttfert, Fabian ; Simons, Mikael ; Hell, Stefan 
Abstract
Superresolution fluorescence microscopy recently revealed a similar to 190 nm periodic cytoskeleton lattice consisting of actin, spectrin, and other proteins underneath the membrane of cultured hippocampal neurons. Whether the periodic cytoskeleton lattice is a structural feature of all neurons and how it is modified when axons are ensheathed by myelin forming glial cells is not known. Here, STED nanoscopy is used to demonstrate that this structure is a commonplace of virtually all neuron types in vitro. To check how the subcortical meshwork is modified during myelination, we studied sciatic nerve fibers from adult mice. Periodicity of both actin and spectrin was uncovered at the internodes, indicating no substantial differences between unmyelinated and myelinated axons. Remarkably, the actin/spectrin pattern was also detected in glial cells such as cultured oligodendrocyte precursor cells. Altogether our work shows that the periodic subcortical cytoskeletal meshwork is a fundamental characteristic of cells in the nervous system and is not a distinctive feature of neurons, as previously thought.
Issue Date
2016
Journal
Scientific Reports 
ISSN
2045-2322
Language
English

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