axon retraction
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2020 ◽  
Vol 30 (11) ◽  
pp. 5702-5716
Author(s):  
Masaki Ueno ◽  
Yuka Nakamura ◽  
Hiroshi Nakagawa ◽  
Jesse K Niehaus ◽  
Mari Maezawa ◽  
...  

Abstract Axon regeneration is limited in the central nervous system, which hinders the reconstruction of functional circuits following spinal cord injury (SCI). Although various extrinsic molecules to repel axons following SCI have been identified, the role of semaphorins, a major class of axon guidance molecules, has not been thoroughly explored. Here we show that expression of semaphorins, including Sema5a and Sema6d, is elevated after SCI, and genetic deletion of either molecule or their receptors (neuropilin1 and plexinA1, respectively) suppresses axon retraction or dieback in injured corticospinal neurons. We further show that Olig2+ cells are essential for SCI-induced semaphorin expression, and that Olig2 binds to putative enhancer regions of the semaphorin genes. Finally, conditional deletion of Olig2 in the spinal cord reduces the expression of semaphorins, alleviating the axon retraction. These results demonstrate that semaphorins function as axon repellents following SCI, and reveal a novel transcriptional mechanism for controlling semaphorin levels around injured neurons to create zones hostile to axon regrowth.


eLife ◽  
2019 ◽  
Vol 8 ◽  
Author(s):  
Míriam Javier-Torrent ◽  
Sergi Marco ◽  
Daniel Rocandio ◽  
Maria Pons-Vizcarra ◽  
Peter W Janes ◽  
...  

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.


2019 ◽  
Author(s):  
Jakub Ziak ◽  
Romana Weissova ◽  
Kateřina Jeřábková ◽  
Martina Janikova ◽  
Roy Maimon ◽  
...  

ABSTRACTRegulation of axon guidance and pruning of inappropriate synapses by class 3 semaphorins is key to development of neural circuits. Collapsin response mediator protein 2 (CRMP2) has been shown to regulate axon guidance by mediating Semaphorin 3A (Sema3A) signaling and its dysfunction has been linked to schizophrenia, however, nothing is known about its role in the synapse pruning. Here, using newly generated crmp2−/− mice we demonstrate that while CRMP2 has only a moderate effect on Sema3A-dependent axon guidance in vivo, it is essential for Sema3F-dependent axon pruning and dendritic spine remodeling. We first demonstrate that CRMP2 deficiency interferes with Sema3A signaling in compartmentalized neuron cultures and leads to a mild defect in axon guidance in peripheral nerves and corpus callosum. Strikingly, we show that crmp2−/− mice display more prominent defects in dendritic spine pruning and stereotyped axon pruning in hippocampus and visual cortex consistent with impaired Sema3F signaling and with autism spectrum disorder (ASD)-rather than schizophrenia-like phenotype. Indeed, we demonstrate that CRMP2 mediates Sema3F-induced axon retraction in primary neurons and that crmp2−/− mice display early postnatal behavioral changes linked to ASD. In conclusion, we demonstrate that CRMP2 is an essential mediator of Sema3F-dependent synapse pruning and its dysfunction in early postnatal stages shares histological and behavioral features of ASD.


2013 ◽  
pp. n/a-n/a
Author(s):  
Yosuke Toyoda ◽  
Ryota Shinohara ◽  
Dean Thumkeo ◽  
Hiroshi Kamijo ◽  
Hiroshi Nishimaru ◽  
...  
Keyword(s):  

PLoS ONE ◽  
2013 ◽  
Vol 8 (1) ◽  
pp. e54105 ◽  
Author(s):  
Kim N. Pielarski ◽  
Bernd van Stegen ◽  
Aksana Andreyeva ◽  
Katja Nieweg ◽  
Kay Jüngling ◽  
...  

2012 ◽  
Vol 23 (10) ◽  
pp. 2423-2428
Author(s):  
Y. Morishima ◽  
M. Toigawa ◽  
N. Ohmura ◽  
T. Yoneda ◽  
Y. Tagane ◽  
...  

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