Presenilin/γ-secretase-dependent EphA3 processing mediates axon elongation through non-muscle myosin IIA

Presenilin/gamma-secretase-dependent EphA3 processing mediates axon elongation through non-muscle myosin IIA

Autor/a

Javier-Torrent, Míriam

Marco, Sergio

Rocandio Durán, Daniel

Pons-Vizcarra, Maria

Janes, Peter W

Lackmann, Martin

Egea Navarro, Joaquim

Saura, Carlos A

Data de publicació

2020-03-12T12:34:54Z

2020-03-12T12:34:54Z

2019



Resum

EphA/ephrin signaling regulates axon growth and guidance of neurons, but whether this process occurs also independently of ephrins is unclear. We show that presenilin-1 (PS1)/γ-secretase is required for axon growth in the developing mouse brain. PS1/γ-secretase mediates axon growth by inhibiting RhoA signaling and cleaving EphA3 independently of ligand to generate an intracellular domain (ICD) fragment that reverses axon defects in PS1/γ-secretase- and EphA3-deficient hippocampal neurons. Proteomic analysis revealed that EphA3 ICD binds to non-muscle myosin IIA (NMIIA) and increases its phosphorylation (Ser1943), which promotes NMIIA filament disassembly and cytoskeleton rearrangement. PS1/γ-secretase-deficient neurons show decreased phosphorylated NMIIA and NMIIA/actin colocalization. Moreover, pharmacological NMII inhibition reverses axon retraction in PS-deficient neurons suggesting that NMIIA mediates PS/EphA3-dependent axon elongation. In conclusion, PS/γ-secretase-dependent EphA3 cleavage mediates axon growth by regulating filament assembly through RhoA signaling and NMIIA, suggesting opposite roles of EphA3 on inhibiting (ligand-dependent) and promoting (receptor processing) axon growth in developing neurons.


Ministerio de Economia y Competitividad SAF2013-43900-R Carlos A Saura, Ministerio de Economia y Competitividad SAF2016-80027-R Carlos A Saura, Ministerio de Economia y Competitividad CIBERNED CB06/05/0042 Carlos A Saura Generalitat de Catalunya ICREA Academia Carlos A Saura, Generalitat de Catalunya 2017 SGR749 Carlos A Saura.

Tipus de document

Article

Llengua

Anglès

Matèries i paraules clau

Neurociències; Neurones; Axons

Publicat per

eLife Sciences Publications

Documents relacionats

MINECO/PN2013-2016/SAF2013-43900-R

MINECO/PN2013-2016/SAF2016-80027-R

Reproducció del document publicat a https://doi.org/10.7554/eLife.43646

eLife, 2019, vol. 8

Drets

cc-by, (c) Javier-Torrent et al., 2019

http://creativecommons.org/licenses/by/4.0/

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